38 results on '"Rosińska, Joanna"'
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2. Changes in submerged macrophyte diversity, coverage and biomass in a biosphere reserve site after 20 years: A plea for conservation efforts
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Puche, Eric, Cruz, Daniel, Delgado, Pilar, Rosińska, Joanna, and Rodrigo, Maria A.
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- 2024
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3. Harmful blooms across a longitudinal gradient in central Europe during heatwave: Cyanobacteria biomass, cyanotoxins, and nutrients
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Wilk-Woźniak, Elżbieta, Krztoń, Wojciech, Budziak, Martyna, Walusiak, Edward, Žutinič, Petar, Udovič, Marija Gligora, Koreivienė, Judita, Karosienė, Jūratė, Kasperovičienė, Jūratė, Kobos, Justyna, Toporowska, Magdalena, Bańkowska-Sobczak, Agnieszka, Budzyńska, Agnieszka, Domek, Piotr, Dunalska, Julita, Frąk, Magdalena, Gołdyn, Ryszard, Grabowska, Magdalena, Jakubowska-Krepska, Natalia, Jasser, Iwona, Karpowicz, Maciej, Kokociński, Mikołaj, Kozak, Anna, Mazur-Marzec, Hanna, Mądrecka-Witkowska, Beata, Messyasz, Beata, Napiórkowska-Krzebietke, Agnieszka, Niedźwiecki, Michał, Pawlik-Skowrońska, Barbara, Pasztaleniec, Agnieszka, Pełechata, Aleksandra, Pełechaty, Mariusz, Pęczuła, Wojciech, Rosińska, Joanna, Szeląg-Wasielewska, Elżbieta, Mankiewicz-Boczek, Joanna, Wasilewicz, Michał, Stević, Filip, Maronić, Dubravka Špoljarić, and Pfeiffer, Tanja Žuna
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- 2024
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4. Spatio-temporal variations in water quality of a river–lake system during restoration treatments
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Rosińska, Joanna, Rybak, Michał, Kowalczewska-Madura, Katarzyna, Dondajewska-Pielka, Renata, Kozak, Anna, and Gołdyn, Ryszard
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- 2022
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5. Hypertrophic Lakes and the Results of Their Restoration in Western Poland
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Dondajewska, Renata, Gołdyn, Ryszard, Kowalczewska-Madura, Katarzyna, Kozak, Anna, Romanowicz-Brzozowska, Wanda, Rosińska, Joanna, Budzyńska, Agnieszka, Podsiadłowski, Stanisław, Barceló, Damià, Series Editor, Kostianoy, Andrey G., Series Editor, Hutzinger, Otto, Founding Editor, Korzeniewska, Ewa, editor, and Harnisz, Monika, editor
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- 2020
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6. Were there any changes in zooplankton communities due to the limitation of restoration treatments?
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Rosińska Joanna, Kowalczewska-Madura Katarzyna, Kozak Anna, Romanowicz-Brzozowska Wanda, and Goldyn Ryszard
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zooplankton ,sustainable lake restoration ,biomanipulation ,limited restoration ,deep water aeration ,Physical geography ,GB3-5030 ,Environmental engineering ,TA170-171 ,Technology - Abstract
Zooplankton is a good indicator of water quality state. Analysing the species composition and abundance, it is possible to assess the condition of the water body and predict the direction of changes. The aim of the study was to analyse the zooplankton in a shallow urban lake, in which restoration was limited to one method, i.e. wind-aeration. The results were compared with the earlier data obtained during sustainable restoration (three methods: wind-aeration, phosphorus inactivation, biomanipulation) and before the restoration period. The zooplankton was sampled monthly in 2015 and 2016 in the deepest place of the lake from the surface to the bottom. The trophic state was determined based on rotifer trophic state index for lakes (TSIROT). Although the species composition of zooplankton communities varied very little among the restoration periods (Keratella cochlearis f. tecta mainly dominated), significant changes in the abundance of zooplankton were found in the analysed lake. The maximum of total abundance was noted in 2015, almost 5500 ind. L−1, and in the next year its decrease was almost 3-fold, to ca. 1800 ind. L-1. Based on TSIROT, the water was still eutrophic. Leaving only one method of restoration (namely, oxygenation of the bottom waters) proved insufficient to support the development of crucial organisms as cladocerans. The changes in the abundance could have resulted more from seasonal changes than from the effects of aeration. A reduction in species number and maintaining a high proportion of rotifers typical for a high trophic state indicated a return of the ecosystem to its pre-restoration state. High variability in the rotifer abundance indicated a continuous imbalance of the ecosystem. Previous restoration treatments using several methods simultaneously showed better effectiveness. The change of strategy of restoration before obtaining a stable improvement of water quality destroyed previously achieved effects.
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- 2021
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7. Sustainable lake restoration: From challenges to solutions
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Tammeorg, Olga, Chorus, Ingrid, Spears, Bryan, Nõges, Peeter, Nürnberg, Gertrud K., Tammeorg, Priit, Søndergaard, Martin, Jeppesen, Erik, Paerl, Hans, Huser, Brian, Horppila, Jukka, Jilbert, Tom, Budzyńska, Agnieszka, Dondajewska‐Pielka, Renata, Gołdyn, Ryszard, Haasler, Sina, Hellsten, Seppo, Härkönen, Laura H., Kiani, Mina, Kozak, Anna, Kotamäki, Niina, Kowalczewska‐Madura, Katarzyna, Newell, Silvia, Nurminen, Leena, Nõges, Tiina, Reitzel, Kasper, Rosińska, Joanna, Ruuhijärvi, Jukka, Silvonen, Soila, Skov, Christian, Važić, Tamara, Ventelä, Anne‐Mari, Waajen, Guido, Lürling, Miquel, Tammeorg, Olga, Chorus, Ingrid, Spears, Bryan, Nõges, Peeter, Nürnberg, Gertrud K., Tammeorg, Priit, Søndergaard, Martin, Jeppesen, Erik, Paerl, Hans, Huser, Brian, Horppila, Jukka, Jilbert, Tom, Budzyńska, Agnieszka, Dondajewska‐Pielka, Renata, Gołdyn, Ryszard, Haasler, Sina, Hellsten, Seppo, Härkönen, Laura H., Kiani, Mina, Kozak, Anna, Kotamäki, Niina, Kowalczewska‐Madura, Katarzyna, Newell, Silvia, Nurminen, Leena, Nõges, Tiina, Reitzel, Kasper, Rosińska, Joanna, Ruuhijärvi, Jukka, Silvonen, Soila, Skov, Christian, Važić, Tamara, Ventelä, Anne‐Mari, Waajen, Guido, and Lürling, Miquel
- Abstract
Sustainable management of lakes requires us to overcome ecological, economic, and social challenges. These challenges can be addressed by focusing on achieving ecological improvement within a multifaceted, co‐beneficial context. In‐lake restoration measures may promote more rapid ecosystem responses than is feasible with catchment measures alone, even if multiple interventions are needed. In particular, we identify restoration methods that support the overarching societal target of a circular economy through the use of nutrients, sediments, or biomass that are removed from a lake, in agriculture, as food, or for biogas production. In this emerging field of sustainable restoration techniques, we show examples, discuss benefits and pitfalls, and flag areas for further research and development. Each lake should be assessed individually to ensure that restoration approaches will effectively address lake‐specific problems, do not harm the target lake or downstream ecosystems, are cost‐effective, promote delivery of valuable ecosystem services, minimize conflicts in public interests, and eliminate the necessity for repeated interventions. Achieving optimal, sustainable results from lake restoration relies on multidisciplinary research and close interactions between environmental, social, political, and economic sectors.
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- 2024
8. Submerged macrophyte self-recovery potential behind restoration treatments: sources of failure.
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Rybak, Michał, Rosińska, Joanna, Wejnerowski, Łukasz, Rodrigo, Maria A., and Joniak, Tomasz
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LAKE restoration ,ECOSYSTEM dynamics ,AQUATIC plants ,PLANT communities ,TREATMENT failure - Abstract
When exploring the challenges of restoring degraded lakes, we often do not observe the expected results despite executing all planned activities. Our study elucidates the reasons that impede the recovery of submerged macrophytes despite ameliorated light conditions. When prolonged lake degradation occurs, subsequent efforts to increase light availability often prove insufficient, resulting in a persistent turbid water state. In this study, we attempted to determine the reasons for these failures through a germination test and propagule bank analysis conducted in bottom sediments from a severely degraded lake, which underwent restoration. Although the bottom sediments indicate relative potential in the number of oospores and seeds, their germination efficacy remained dismally low. Based on the germination test results and factors affecting the development of submergedmacrophytes (physical and chemical parameters, lakemorphology), we stated that improvement of light conditions in the lake could be insufficient to recover the vegetation, especially when the potential to renew diverse plant communities from sediments naturally is low. Our findings advocate for a paradigmatic shift in lake restoration strategies. A holistic approach that includes propagule bank assessments before embarking on restoration initiatives and enabling the identification of macrophyte resurgence potentials is recommended. We also advocate for a multifaceted restoration framework, emphasizing the indispensability of augmenting natural recovery mechanisms with targeted interventions. Consequently, in some cases, macrophyte reintroduction could be the only solution. By reintroducing autochthonic species to site-specific ecological dynamics, we anticipate an increased success rate in restituting submerged vegetation, thus catalyzing ecological regeneration within degraded lake ecosystems. [ABSTRACT FROM AUTHOR]
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- 2024
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9. Zooplankton changes during bottom-up and top-down control due to sustainable restoration in a shallow urban lake
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Rosińska, Joanna, Romanowicz-Brzozowska, Wanda, Kozak, Anna, and Gołdyn, Ryszard
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- 2019
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10. Sustainable lake restoration: From challenges to solutions
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Tammeorg, Olga, primary, Chorus, Ingrid, additional, Spears, Bryan, additional, Nõges, Peeter, additional, Nürnberg, Gertrud K., additional, Tammeorg, Priit, additional, Søndergaard, Martin, additional, Jeppesen, Erik, additional, Paerl, Hans, additional, Huser, Brian, additional, Horppila, Jukka, additional, Jilbert, Tom, additional, Budzyńska, Agnieszka, additional, Dondajewska‐Pielka, Renata, additional, Gołdyn, Ryszard, additional, Haasler, Sina, additional, Hellsten, Seppo, additional, Härkönen, Laura H., additional, Kiani, Mina, additional, Kozak, Anna, additional, Kotamäki, Niina, additional, Kowalczewska‐Madura, Katarzyna, additional, Newell, Silvia, additional, Nurminen, Leena, additional, Nõges, Tiina, additional, Reitzel, Kasper, additional, Rosińska, Joanna, additional, Ruuhijärvi, Jukka, additional, Silvonen, Soila, additional, Skov, Christian, additional, Važić, Tamara, additional, Ventelä, Anne‐Mari, additional, Waajen, Guido, additional, and Lürling, Miquel, additional
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- 2023
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11. Cyanobacteria blooms before and during the restoration process of a shallow urban lake
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Rosińska, Joanna, Kozak, Anna, Dondajewska, Renata, and Gołdyn, Ryszard
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- 2017
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12. Hypertrophic Lakes and the Results of Their Restoration in Western Poland
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Dondajewska, Renata, primary, Gołdyn, Ryszard, additional, Kowalczewska-Madura, Katarzyna, additional, Kozak, Anna, additional, Romanowicz-Brzozowska, Wanda, additional, Rosińska, Joanna, additional, Budzyńska, Agnieszka, additional, and Podsiadłowski, Stanisław, additional
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- 2019
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13. Changes in macrophyte communities in Lake Swarzędzkie after the first year of restoration
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Rosińska Joanna and Gołdyn Ryszard
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lake restoration ,macrophyte response ,chlorophyll-a ,transparency ,Aquaculture. Fisheries. Angling ,SH1-691 - Abstract
Lake Swarzędzkie, near Poznań, was a hypertrophic lake because of its high nutrient content, cyanobacteria blooms, and disruptive recreational use, especially swimming, which was popular there. This is why protection measures have been in place since 1991, and a restoration program has been ongoing since fall 2011. The evaluation of the presence and distribution of macrophytes as an important element of lake ecosystem was conducted in August 2012. Nine plant communities were observed: Phragmitetum communis; Typhetum angustifoliae; Nupharo-Nymphaeetum albae; Hydrocharitetum morsus-ranae; Thelypteridi-Phragmitetum; Cicuto-Caricetum pseudocyperi; Acoretum calami; Ceratophylletum demersi; Potametum lucentis. The first three were dominating associations. The presence of submerged vegetation appears to verify the positive impact of the applied conservation and restoration measures. Improvement is confirmed by the significant decrease in concentrations of chlorophyll-a and total nitrogen, as well as the gradual decrease in total suspended solids and increased transparency.
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- 2015
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14. The association of airborne particulate matter and benzo[a]pyrene with the clinical course of COVID-19 in patients hospitalized in Poland
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Rzymski, Piotr, primary, Poniedziałek, Barbara, additional, Rosińska, Joanna, additional, Rogalska, Magdalena, additional, Zarębska-Michaluk, Dorota, additional, Rorat, Marta, additional, Moniuszko-Malinowska, Anna, additional, Lorenc, Beata, additional, Kozielewicz, Dorota, additional, Piekarska, Anna, additional, Sikorska, Katarzyna, additional, Dworzańska, Anna, additional, Bolewska, Beata, additional, Angielski, Grzegorz, additional, Kowalska, Justyna, additional, Podlasin, Regina, additional, Oczko-Grzesik, Barbara, additional, Mazur, Włodzimierz, additional, Szymczak, Aleksandra, additional, and Flisiak, Robert, additional
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- 2022
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15. Polysaccharide-protein complex from coelomic fluid of Dendrobaena veneta earthworm exerts a multi-pathway antiplatelet effect without coagulopathy and cytotoxicity
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Poniedziałek, Barbara, primary, Rosińska, Joanna, additional, Rzymski, Piotr, additional, and Fiołka, Marta, additional
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- 2022
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16. Air pollution might affect the clinical course of COVID-19 in pediatric patients
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Rzymski, Piotr, primary, Poniedziałek, Barbara, additional, Rosińska, Joanna, additional, Ciechanowski, Przemysław, additional, Peregrym, Michał, additional, Pokorska-Śpiewak, Maria, additional, Talarek, Ewa, additional, Zaleska, Izabela, additional, Frańczak-Chmura, Paulina, additional, Pilarczyk, Małgorzata, additional, Figlerowicz, Magdalena, additional, Kucharek, Izabela, additional, and Flisiak, Robert, additional
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- 2022
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17. Response of vegetation to growing recreational pressure in the shallow Raczyńskie Lake
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Rosińska Joanna and Gołdyn Ryszard
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macrophyte community ,submerged macrophyte ,human impact ,recreation ,WFD ,Aquaculture. Fisheries. Angling ,SH1-691 - Abstract
Strong human impact accelerates eutrophication which deteriorates water quality and consequently prevents recreational use. Increasing trophy and low transparency induce macrophyte rebuilding. A gradual transformation of the land use of the direct catchment area of Raczyńskie Lake from agricultural to recreational has been observed over the last 45 years. In built-up areas sewage facilities were inadequate and septic tanks did not work properly and as a consequence most wastewater was able to infiltrate through the ground into the lake. The lake ecosystem became unstable and water blooms intensified. The aim of the study was to assess the changes in the composition of the lake vegetation over the last 45 years, during which the use of the direct catchment has changed and recreational pressure increased. A reduction of the number of plant communities from 24 to 15 and the disappearance of almost all the submerged vegetation was observed. The dominant reed beds (Phragmitetum communis, Typhetum angustifoliae) were unable to provide a sufficient barrier to the flow of pollution from the catchment because of the numerous gaps made for angling piers, bathing sites, jetties, etc. The macrophyte index indicated a bad ecological status. To improve the ecological status of Raczyńskie Lake it is necessary to introduce intensive protection and restoration treatments.
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- 2018
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18. Stratification strength and light climate explain variation in chlorophyll a at the continental scale in a European multilake survey in a heatwave summer
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Donis, Daphne, primary, Mantzouki, Evanthia, additional, McGinnis, Daniel F., additional, Vachon, Dominic, additional, Gallego, Irene, additional, Grossart, Hans‐Peter, additional, de Senerpont Domis, Lisette N., additional, Teurlincx, Sven, additional, Seelen, Laura, additional, Lürling, Miquel, additional, Verstijnen, Yvon, additional, Maliaka, Valentini, additional, Fonvielle, Jeremy, additional, Visser, Petra M., additional, Verspagen, Jolanda, additional, van Herk, Maria, additional, Antoniou, Maria G., additional, Tsiarta, Nikoletta, additional, McCarthy, Valerie, additional, Perello, Victor C., additional, Machado‐Vieira, Danielle, additional, de Oliveira, Alinne Gurjão, additional, Maronić, Dubravka Špoljarić, additional, Stević, Filip, additional, Pfeiffer, Tanja Žuna, additional, Vucelić, Itana Bokan, additional, Žutinić, Petar, additional, Udovič, Marija Gligora, additional, Plenković‐Moraj, Anđelka, additional, Bláha, Luděk, additional, Geriš, Rodan, additional, Fránková, Markéta, additional, Christoffersen, Kirsten Seestern, additional, Warming, Trine Perlt, additional, Feldmann, Tõnu, additional, Laas, Alo, additional, Panksep, Kristel, additional, Tuvikene, Lea, additional, Kangro, Kersti, additional, Koreivienė, Judita, additional, Karosienė, Jūratė, additional, Kasperovičienė, Jūratė, additional, Savadova‐Ratkus, Ksenija, additional, Vitonytė, Irma, additional, Häggqvist, Kerstin, additional, Salmi, Pauliina, additional, Arvola, Lauri, additional, Rothhaupt, Karl, additional, Avagianos, Christos, additional, Kaloudis, Triantafyllos, additional, Gkelis, Spyros, additional, Panou, Manthos, additional, Triantis, Theodoros, additional, Zervou, Sevasti‐Kiriaki, additional, Hiskia, Anastasia, additional, Obertegger, Ulrike, additional, Boscaini, Adriano, additional, Flaim, Giovanna, additional, Salmaso, Nico, additional, Cerasino, Leonardo, additional, Haande, Sigrid, additional, Skjelbred, Birger, additional, Grabowska, Magdalena, additional, Karpowicz, Maciej, additional, Chmura, Damian, additional, Nawrocka, Lidia, additional, Kobos, Justyna, additional, Mazur‐Marzec, Hanna, additional, Alcaraz‐Párraga, Pablo, additional, Wilk‐Woźniak, Elżbieta, additional, Krztoń, Wojciech, additional, Walusiak, Edward, additional, Gagala‐Borowska, Ilona, additional, Mankiewicz‐Boczek, Joana, additional, Toporowska, Magdalena, additional, Pawlik‐Skowronska, Barbara, additional, Niedźwiecki, Michał, additional, Pęczuła, Wojciech, additional, Napiórkowska‐Krzebietke, Agnieszka, additional, Dunalska, Julita, additional, Sieńska, Justyna, additional, Szymański, Daniel, additional, Kruk, Marek, additional, Budzyńska, Agnieszka, additional, Goldyn, Ryszard, additional, Kozak, Anna, additional, Rosińska, Joanna, additional, Szeląg‐Wasielewska, Elżbieta, additional, Domek, Piotr, additional, Jakubowska‐Krepska, Natalia, additional, Kwasizur, Kinga, additional, Messyasz, Beata, additional, Pełechata, Aleksandra, additional, Pełechaty, Mariusz, additional, Kokocinski, Mikolaj, additional, Madrecka‐Witkowska, Beata, additional, Kostrzewska‐Szlakowska, Iwona, additional, Frąk, Magdalena, additional, Bańkowska‐Sobczak, Agnieszka, additional, Wasilewicz, Michał, additional, Ochocka, Agnieszka, additional, Pasztaleniec, Agnieszka, additional, Jasser, Iwona, additional, Antão‐Geraldes, Ana M., additional, Leira, Manel, additional, Vasconcelos, Vitor, additional, Morais, Joao, additional, Vale, Micaela, additional, Raposeiro, Pedro M., additional, Gonçalves, Vítor, additional, Aleksovski, Boris, additional, Krstić, Svetislav, additional, Nemova, Hana, additional, Drastichova, Iveta, additional, Chomova, Lucia, additional, Remec‐Rekar, Spela, additional, Elersek, Tina, additional, Hansson, Lars‐Anders, additional, Urrutia‐Cordero, Pablo, additional, Bravo, Andrea G., additional, Buck, Moritz, additional, Colom‐Montero, William, additional, Mustonen, Kristiina, additional, Pierson, Don, additional, Yang, Yang, additional, Richardson, Jessica, additional, Edwards, Christine, additional, Cromie, Hannah, additional, Delgado‐Martín, Jordi, additional, García, David, additional, Cereijo, Jose Luís, additional, Gomà, Joan, additional, Trapote, Mari Carmen, additional, Vegas‐Vilarrúbia, Teresa, additional, Obrador, Biel, additional, García‐Murcia, Ana, additional, Real, Monserrat, additional, Romans, Elvira, additional, Noguero‐Ribes, Jordi, additional, Duque, David Parreño, additional, Fernández‐Morán, Elísabeth, additional, Úbeda, Bárbara, additional, Gálvez, José Ángel, additional, Catalán, Núria, additional, Pérez‐Martínez, Carmen, additional, Ramos‐Rodríguez, Eloísa, additional, Cillero‐Castro, Carmen, additional, Moreno‐Ostos, Enrique, additional, Blanco, José María, additional, Rodríguez, Valeriano, additional, Montes‐Pérez, Jorge Juan, additional, Palomino, Roberto L., additional, Rodríguez‐Pérez, Estela, additional, Hernández, Armand, additional, Carballeira, Rafael, additional, Camacho, Antonio, additional, Picazo, Antonio, additional, Rochera, Carlos, additional, Santamans, Anna C., additional, Ferriol, Carmen, additional, Romo, Susana, additional, Soria, Juan Miguel, additional, Özen, Arda, additional, Karan, Tünay, additional, Demir, Nilsun, additional, Beklioğlu, Meryem, additional, Filiz, Nur, additional, Levi, Eti, additional, Iskin, Uğur, additional, Bezirci, Gizem, additional, Tavşanoğlu, Ülkü Nihan, additional, Çelik, Kemal, additional, Ozhan, Koray, additional, Karakaya, Nusret, additional, Koçer, Mehmet Ali Turan, additional, Yilmaz, Mete, additional, Maraşlıoğlu, Faruk, additional, Fakioglu, Özden, additional, Soylu, Elif Neyran, additional, Yağcı, Meral Apaydın, additional, Çınar, Şakir, additional, Çapkın, Kadir, additional, Yağcı, Abdulkadir, additional, Cesur, Mehmet, additional, Bilgin, Fuat, additional, Bulut, Cafer, additional, Uysal, Rahmi, additional, Latife, Köker, additional, Akçaalan, Reyhan, additional, Albay, Meriç, additional, Alp, Mehmet Tahir, additional, Özkan, Korhan, additional, Sevindik, Tuğba Ongun, additional, Tunca, Hatice, additional, Önem, Burçin, additional, Paerl, Hans, additional, Carey, Cayelan C., additional, and Ibelings, Bastiaan W., additional
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- 2021
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19. Temperature effects explain continental scale distribution of cyanobacterial toxins
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Mantzouki, Evanthia, Lürling, Miquel, Fastner, Jutta, Domis, Lisette de Senerpont, Wilk-Woźniak, Elżbieta, Koreiviene, Judita, Seelen, Laura, Teurlincx, Sven, Verstijnen, Yvon, Krztoń, Wojciech, Walusiak, Edward, Karosienė, Jūratė, Kasperovičienė, Jūratė, Savadova, Ksenija, Vitonytė, Irma, Cillero-Castro, Carmen, Budzyńska, Agnieszka, Goldyn, Ryszard, Kozak, Anna, Rosińska, Joanna, Szeląg-Wasielewska, Elżbieta, Domek, Piotr, Jakubowska-Krepska, Natalia, Kwasizur, Kinga, Messyasz, Beata, Pełechata, Aleksandra, Pełechaty, Mariusz, Kokocinski, Mikolaj, García-Murcia, Ana, Real, Monserrat, Romans, Elvira, Noguero-Ribes, Jordi, Duque, David Parreño, Fernández-Morán, Elísabeth, Karakaya, Nusret, Häggqvist, Kerstin, Beklioğlu, Meryem, Filiz, Nur, Levi, Eti E., Iskin, Uğur, Bezirci, Gizem, Tavşanoğlu, Ülkü Nihan, Özhan, Koray, Gkelis, Spyros, Panou, Manthos, Fakioglu, Özden, Avagianos, Christos, Kaloudis, Triantafyllos, Çelik, Kemal, Yilmaz, Mete, Marcé, Rafael, Catalán, Nuria, Bravo, Andrea G., Buck, Moritz, Colom-Montero, William, Mustonen, Kristiina, Pierson, Don, Yang, Yang, Raposeiro, Pedro M., Gonçalves, Vítor, Antoniou, Maria G., Tsiarta, Nikoletta, McCarthy, Valerie, Perello, Victor C., Feldmann, Tõnu, Laas, Alo, Panksep, Kristel, Tuvikene, Lea, Gagala, Ilona, Mankiewicz-Boczek, Joana, Yağcı, Meral Apaydın, Çınar, Şakir, Çapkın, Kadir, Yağcı, Abdulkadir, Cesur, Mehmet, Bilgin, Fuat, Bulut, Cafer, Uysal, Rahmi, Obertegger, Ulrike, Boscaini, Adriano, Flaim, Giovanna, Salmaso, Nico, Cerasino, Leonardo, Richardson, Jessica, Visser, Petra M., Verspagen, Jolanda M. H., Karan, Tünay, Soylu, Elif Neyran, Maraşlıoğlu, Faruk, Napiórkowska-Krzebietke, Agnieszka, Ochocka, Agnieszka, Pasztaleniec, Agnieszka, Antão-Geraldes, Ana M., Vasconcelos, Vitor, Morais, João, Vale, Micaela, Köker, Latife, Akçaalan, Reyhan, Albay, Meriç, Maronić, Dubravka Špoljarić, Stević, Filip, Pfeiffer, Tanja Žuna, Fonvielle, Jeremy, Straile, Dietmar, Rothhaupt, Karl-Otto, Hansson, Lars-Anders, Urrutia-Cordero, Pablo, Bláha, Luděk, Geriš, Rodan, Fránková, Markéta, Koçer, Mehmet Ali Turan, Alp, Mehmet Tahir, Remec-Rekar, Spela, Elersek, Tina, Triantis, Theodoros, Zervou, Sevasti-Kiriaki, Hiskia, Anastasia, Haande, Sigrid, Skjelbred, Birger, Madrecka, Beata, Nemova, Hana, Drastichova, Iveta, Chomova, Lucia, Edwards, Christine, Sevindik, Tuğba Ongun, Tunca, Hatice, Önem, Burçin, Aleksovski, Boris, Krstić, Svetislav, Vucelić, Itana Bokan, Nawrocka, Lidia, Salmi, Pauliina, Machado-Vieira, Danielle, Oliveira, Alinne Gurjão De, Delgado-Martín, Jordi, García, David, Cereijo, Jose Luís, Gomà, Joan, Trapote, Mari Carmen, Vegas-Vilarrúbia, Teresa, Obrador, Biel, Grabowska, Magdalena, Karpowicz, Maciej, Chmura, Damian, Úbeda, Bárbara, Gálvez, José Ángel, Özen, Arda, Christoffersen, Kirsten Seestern, Warming, Trine Perlt, Kobos, Justyna, Mazur-Marzec, Hanna, Pérez-Martínez, Carmen, Ramos-Rodríguez, Eloísa, Arvola, Lauri, Alcaraz-Párraga, Pablo, Toporowska, Magdalena, Pawlik-Skowronska, Barbara, Niedźwiecki, Michał, Pęczuła, Wojciech, Leira, Manel, Hernández, Armand, Moreno-Ostos, Enrique, Blanco, José María, Rodríguez, Valeriano, Montes-Pérez, Jorge Juan, Palomino, Roberto L., Rodríguez-Pérez, Estela, Carballeira, Rafael, Camacho, Antonio, Picazo, Antonio, Rochera, Carlos, Santamans, Anna C., Ferriol, Carmen, Romo, Susana, Soria, Juan Miguel, Dunalska, Julita, Sieńska, Justyna, Szymański, Daniel, Kruk, Marek, Kostrzewska-Szlakowska, Iwona, Jasser, Iwona, Žutinić, Petar, Udovič, Marija Gligora, Plenković-Moraj, Anđelka, Frąk, Magdalena, Bańkowska-Sobczak, Agnieszka, Wasilewicz, Michał, Özkan, Korhan, Maliaka, Valentini, Kangro, Kersti, Grossart, Hans-Peter, Paerl, Hans W., Carey, Cayelan C., and Ibelings, Bas W.
- Subjects
ddc:610 ,610 Medizin und Gesundheit ,Institut für Biochemie und Biologie - Abstract
Insight into how environmental change determines the production and distribution of cyanobacterial toxins is necessary for risk assessment. Management guidelines currently focus on hepatotoxins (microcystins). Increasing attention is given to other classes, such as neurotoxins (e.g., anatoxin-a) and cytotoxins (e.g., cylindrospermopsin) due to their potency. Most studies examine the relationship between individual toxin variants and environmental factors, such as nutrients, temperature and light. In summer 2015, we collected samples across Europe to investigate the effect of nutrient and temperature gradients on the variability of toxin production at a continental scale. Direct and indirect effects of temperature were the main drivers of the spatial distribution in the toxins produced by the cyanobacterial community, the toxin concentrations and toxin quota. Generalized linear models showed that a Toxin Diversity Index (TDI) increased with latitude, while it decreased with water stability. Increases in TDI were explained through a significant increase in toxin variants such as MC-YR, anatoxin and cylindrospermopsin, accompanied by a decreasing presence of MC-LR. While global warming continues, the direct and indirect effects of increased lake temperatures will drive changes in the distribution of cyanobacterial toxins in Europe, potentially promoting selection of a few highly toxic species or strains., Postprints der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe; 1105
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- 2021
- Full Text
- View/download PDF
20. Stratification strength and light climate explain variation in chlorophyll a at the continental scale in a European multilake survey in a heatwave summer
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Donis, Daphne, Mantzouki, Evanthia, McGinnis, Daniel F., Vachon, Dominic, Gallego, Irene, Grossart, Hans-Peter, de Senerpont Domis, Lisette N., Teurlincx, Sven, Seelen, Laura, Lürling, Miquel, Verstijnen, Yvon, Maliaka, Valentini, Fonvielle, Jeremy, Visser, Petra M., Verspagen, Jolanda, van Herk, Maria, Antoniou, Maria G., Tsiarta, Nikoletta, McCarthy, Valerie, Perello, Victor C., Machado-Vieira, Danielle, de Oliveira, Alinne Gurjão, Maronić, Dubravka Špoljarić, Stević, Filip, Pfeiffer, Tanja Žuna, Vucelić, Itana Bokan, Žutinić, Petar, Udovič, Marija Gligora, Plenković-Moraj, Anđelka, Bláha, Luděk, Geriš, Rodan, Fránková, Markéta, Christoffersen, Kirsten Seestern, Warming, Trine Perlt, Feldmann, Tõnu, Laas, Alo, Panksep, Kristel, Tuvikene, Lea, Kangro, Kersti, Koreivienė, Judita, Karosienė, Jūratė, Kasperovičienė, Jūratė, Savadova-Ratkus, Ksenija, Vitonytė, Irma, Häggqvist, Kerstin, Salmi, Pauliina, Arvola, Lauri, Rothhaupt, Karl, Avagianos, Christos, Kaloudis, Triantafyllos, Gkelis, Spyros, Panou, Manthos, Triantis, Theodoros, Zervou, Sevasti-Kiriaki, Hiskia, Anastasia, Obertegger, Ulrike, Boscaini, Adriano, Flaim, Giovanna, Salmaso, Nico, Cerasino, Leonardo, Haande, Sigrid, Skjelbred, Birger, Grabowska, Magdalena, Karpowicz, Maciej, Chmura, Damian, Nawrocka, Lidia, Kobos, Justyna, Mazur-Marzec, Hanna, Alcaraz-Párraga, Pablo, Wilk-Woźniak, Elżbieta, Krztoń, Wojciech, Walusiak, Edward, Gagala-Borowska, Ilona, Mankiewicz-Boczek, Joana, Toporowska, Magdalena, Pawlik-Skowronska, Barbara, Niedźwiecki, Michał, Pęczuła, Wojciech, Napiórkowska-Krzebietke, Agnieszka, Dunalska, Julita, Sieńska, Justyna, Szymański, Daniel, Kruk, Marek, Budzyńska, Agnieszka, Goldyn, Ryszard, Kozak, Anna, Rosińska, Joanna, Szeląg-Wasielewska, Elżbieta, Domek, Piotr, Jakubowska-Krepska, Natalia, Kwasizur, Kinga, Messyasz, Beata, Pełechata, Aleksandra, Pełechaty, Mariusz, Kokocinski, Mikolaj, Madrecka-Witkowska, Beata, Kostrzewska-Szlakowska, Iwona, Frąk, Magdalena, Bańkowska-Sobczak, Agnieszka, Wasilewicz, Michał, Ochocka, Agnieszka, Pasztaleniec, Agnieszka, Jasser, Iwona, Antão-Geraldes, Ana M., Leira, Manel, Vasconcelos, Vitor, Morais, Joao, Vale, Micaela, Raposeiro, Pedro M., Gonçalves, Vítor, Aleksovski, Boris, Krstić, Svetislav, Nemova, Hana, Drastichova, Iveta, Chomova, Lucia, Remec-Rekar, Spela, Elersek, Tina, Hansson, Lars-Anders, Urrutia-Cordero, Pablo, Bravo, Andrea G., Buck, Moritz, Colom-Montero, William, Mustonen, Kristiina, Pierson, Don, Yang, Yang, Richardson, Jessica, Edwards, Christine, Cromie, Hannah, Delgado-Martín, Jordi, García, David, Cereijo, Jose Luís, Gomà, Joan, Trapote, Mari Carmen, Vegas-Vilarrúbia, Teresa, Obrador, Biel, García-Murcia, Ana, Real, Monserrat, Romans, Elvira, Noguero-Ribes, Jordi, Duque, David Parreño, Fernández-Morán, Elísabeth, Úbeda, Bárbara, Gálvez, José Ángel, Catalán, Núria, Pérez-Martínez, Carmen, Ramos-Rodríguez, Eloísa, Cillero-Castro, Carmen, Moreno-Ostos, Enrique, Blanco, José María, Rodríguez, Valeriano, Montes-Pérez, Jorge Juan, Palomino, Roberto L., Rodríguez-Pérez, Estela, Hernández, Armand, Carballeira, Rafael, Camacho, Antonio, Picazo, Antonio, Rochera, Carlos, Santamans, Anna C., Ferriol, Carmen, Romo, Susana, Soria, Juan Miguel, Özen, Arda, Karan, Tünay, Demir, Nilsun, Beklioğlu, Meryem, Filiz, Nur, Levi, Eti, Iskin, Uğur, Bezirci, Gizem, Tavşanoğlu, Ülkü Nihan, Çelik, Kemal, Ozhan, Koray, Karakaya, Nusret, Koçer, Mehmet Ali Turan, Yilmaz, Mete, Maraşlıoğlu, Faruk, Fakioglu, Özden, Soylu, Elif Neyran, Yağcı, Meral Apaydın, Çınar, Şakir, Çapkın, Kadir, Yağcı, Abdulkadir, Cesur, Mehmet, Bilgin, Fuat, Bulut, Cafer, Uysal, Rahmi, Latife, Köker, Akçaalan, Reyhan, Albay, Meriç, Alp, Mehmet Tahir, Özkan, Korhan, Sevindik, Tuğba Ongun, Tunca, Hatice, Önem, Burçin, Paerl, Hans, Carey, Cayelan C., Ibelings, Bastiaan W., Donis, Daphne, Mantzouki, Evanthia, McGinnis, Daniel F., Vachon, Dominic, Gallego, Irene, Grossart, Hans-Peter, de Senerpont Domis, Lisette N., Teurlincx, Sven, Seelen, Laura, Lürling, Miquel, Verstijnen, Yvon, Maliaka, Valentini, Fonvielle, Jeremy, Visser, Petra M., Verspagen, Jolanda, van Herk, Maria, Antoniou, Maria G., Tsiarta, Nikoletta, McCarthy, Valerie, Perello, Victor C., Machado-Vieira, Danielle, de Oliveira, Alinne Gurjão, Maronić, Dubravka Špoljarić, Stević, Filip, Pfeiffer, Tanja Žuna, Vucelić, Itana Bokan, Žutinić, Petar, Udovič, Marija Gligora, Plenković-Moraj, Anđelka, Bláha, Luděk, Geriš, Rodan, Fránková, Markéta, Christoffersen, Kirsten Seestern, Warming, Trine Perlt, Feldmann, Tõnu, Laas, Alo, Panksep, Kristel, Tuvikene, Lea, Kangro, Kersti, Koreivienė, Judita, Karosienė, Jūratė, Kasperovičienė, Jūratė, Savadova-Ratkus, Ksenija, Vitonytė, Irma, Häggqvist, Kerstin, Salmi, Pauliina, Arvola, Lauri, Rothhaupt, Karl, Avagianos, Christos, Kaloudis, Triantafyllos, Gkelis, Spyros, Panou, Manthos, Triantis, Theodoros, Zervou, Sevasti-Kiriaki, Hiskia, Anastasia, Obertegger, Ulrike, Boscaini, Adriano, Flaim, Giovanna, Salmaso, Nico, Cerasino, Leonardo, Haande, Sigrid, Skjelbred, Birger, Grabowska, Magdalena, Karpowicz, Maciej, Chmura, Damian, Nawrocka, Lidia, Kobos, Justyna, Mazur-Marzec, Hanna, Alcaraz-Párraga, Pablo, Wilk-Woźniak, Elżbieta, Krztoń, Wojciech, Walusiak, Edward, Gagala-Borowska, Ilona, Mankiewicz-Boczek, Joana, Toporowska, Magdalena, Pawlik-Skowronska, Barbara, Niedźwiecki, Michał, Pęczuła, Wojciech, Napiórkowska-Krzebietke, Agnieszka, Dunalska, Julita, Sieńska, Justyna, Szymański, Daniel, Kruk, Marek, Budzyńska, Agnieszka, Goldyn, Ryszard, Kozak, Anna, Rosińska, Joanna, Szeląg-Wasielewska, Elżbieta, Domek, Piotr, Jakubowska-Krepska, Natalia, Kwasizur, Kinga, Messyasz, Beata, Pełechata, Aleksandra, Pełechaty, Mariusz, Kokocinski, Mikolaj, Madrecka-Witkowska, Beata, Kostrzewska-Szlakowska, Iwona, Frąk, Magdalena, Bańkowska-Sobczak, Agnieszka, Wasilewicz, Michał, Ochocka, Agnieszka, Pasztaleniec, Agnieszka, Jasser, Iwona, Antão-Geraldes, Ana M., Leira, Manel, Vasconcelos, Vitor, Morais, Joao, Vale, Micaela, Raposeiro, Pedro M., Gonçalves, Vítor, Aleksovski, Boris, Krstić, Svetislav, Nemova, Hana, Drastichova, Iveta, Chomova, Lucia, Remec-Rekar, Spela, Elersek, Tina, Hansson, Lars-Anders, Urrutia-Cordero, Pablo, Bravo, Andrea G., Buck, Moritz, Colom-Montero, William, Mustonen, Kristiina, Pierson, Don, Yang, Yang, Richardson, Jessica, Edwards, Christine, Cromie, Hannah, Delgado-Martín, Jordi, García, David, Cereijo, Jose Luís, Gomà, Joan, Trapote, Mari Carmen, Vegas-Vilarrúbia, Teresa, Obrador, Biel, García-Murcia, Ana, Real, Monserrat, Romans, Elvira, Noguero-Ribes, Jordi, Duque, David Parreño, Fernández-Morán, Elísabeth, Úbeda, Bárbara, Gálvez, José Ángel, Catalán, Núria, Pérez-Martínez, Carmen, Ramos-Rodríguez, Eloísa, Cillero-Castro, Carmen, Moreno-Ostos, Enrique, Blanco, José María, Rodríguez, Valeriano, Montes-Pérez, Jorge Juan, Palomino, Roberto L., Rodríguez-Pérez, Estela, Hernández, Armand, Carballeira, Rafael, Camacho, Antonio, Picazo, Antonio, Rochera, Carlos, Santamans, Anna C., Ferriol, Carmen, Romo, Susana, Soria, Juan Miguel, Özen, Arda, Karan, Tünay, Demir, Nilsun, Beklioğlu, Meryem, Filiz, Nur, Levi, Eti, Iskin, Uğur, Bezirci, Gizem, Tavşanoğlu, Ülkü Nihan, Çelik, Kemal, Ozhan, Koray, Karakaya, Nusret, Koçer, Mehmet Ali Turan, Yilmaz, Mete, Maraşlıoğlu, Faruk, Fakioglu, Özden, Soylu, Elif Neyran, Yağcı, Meral Apaydın, Çınar, Şakir, Çapkın, Kadir, Yağcı, Abdulkadir, Cesur, Mehmet, Bilgin, Fuat, Bulut, Cafer, Uysal, Rahmi, Latife, Köker, Akçaalan, Reyhan, Albay, Meriç, Alp, Mehmet Tahir, Özkan, Korhan, Sevindik, Tuğba Ongun, Tunca, Hatice, Önem, Burçin, Paerl, Hans, Carey, Cayelan C., and Ibelings, Bastiaan W.
- Abstract
To determine the drivers of phytoplankton biomass, we collected standardized morphometric, physical, and biological data in 230 lakes across the Mediterranean, Continental, and Boreal climatic zones of the European continent. Multilinear regression models tested on this snapshot of mostly eutrophic lakes (median total phosphorus [TP] = 0.06 and total nitrogen [TN] = 0.7 mg L−1), and its subsets (2 depth types and 3 climatic zones), show that light climate and stratification strength were the most significant explanatory variables for chlorophyll a (Chl a) variance. TN was a significant predictor for phytoplankton biomass for shallow and continental lakes, while TP never appeared as an explanatory variable, suggesting that under high TP, light, which partially controls stratification strength, becomes limiting for phytoplankton development. Mediterranean lakes were the warmest yet most weakly stratified and had significantly less Chl a than Boreal lakes, where the temperature anomaly from the long-term average, during a summer heatwave was the highest (+4°C) and showed a significant, exponential relationship with stratification strength. This European survey represents a summer snapshot of phytoplankton biomass and its drivers, and lends support that light and stratification metrics, which are both affected by climate change, are better predictors for phytoplankton biomass in nutrient-rich lakes than nutrient concentrations and surface temperature.
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- 2021
21. The Effects of Limiting Restoration Treatments in a Shallow Urban Lake
- Author
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Kowalczewska-Madura, Katarzyna, primary, Rosińska, Joanna, additional, Dondajewska-Pielka, Renata, additional, Gołdyn, Ryszard, additional, and Kaczmarek, Lech, additional
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- 2020
- Full Text
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22. The Effect of Human Impact on the Water Quality and Biocoenoses of the Soft Water Lake with Isoetids: Lake Jeleń, NW Poland
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Klimaszyk, Piotr, primary, Borowiak, Dariusz, additional, Piotrowicz, Ryszard, additional, Rosińska, Joanna, additional, Szeląg-Wasielewska, Elżbieta, additional, and Kraska, Marek, additional
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- 2020
- Full Text
- View/download PDF
23. Temperature Effects Explain Continental Scale Distribution of Cyanobacterial Toxins: Data descriptor
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Mantzouki, Evanthia, Lürling, Miquel, Fastner, Jutta, de Senerpont Domis, Lisette, Wilk-Woźniak, Elżbieta, Koreivienė, Judita, Seelen, Laura, Teurlincx, Sven, Verstijnen, Yvon, Krztoń, Wojciech, Walusiak, Edward, Karosienė, Jūratė, Kasperovičienė, Jūratė, Savadova, Ksenija, Vitonytė, Irma, Cillero-Castro, Carmen, Budzyńska, Agnieszka, Goldyn, Ryszard, Kozak, Anna, Rosińska, Joanna, Szeląg-Wasielewska, Elżbieta, Domek, Piotr, Jakubowska-Krepska, Natalia, Kwasizur, Kinga, Messyasz, Beata, Pełechaty, Aleksandra, Pełechaty, Mariusz, Kokocinski, Mikolaj, García-Murcia, Ana, Real, Monserrat, Romans, Elvira, Noguero-Ribes, Jordi, Duque, David Parreño, Fernández-Morán, Elísabeth, Karakaya, Nusret, Häggqvist, Kerstin, Demir, Nilsun, Beklioğlu, Meryem, Filiz, Nur, Levi, Eti E., Iskin, Uğur, Bezirci, Gizem, Tavşanoğlu, Ülkü Nihan, Özhan, Koray, Gkelis, Spyros, Panou, Manthos, Fakioglu, Özden, Avagianos, Christos, Kaloudis, Triantafyllos, Çelik, Kemal, Yilmaz, Mete, Marcé, Rafael, Catalán, Nuria, Bravo, Andrea G., Buck, Moritz, Colom-Montero, William, Mustonen, Kristiina, Pierson, Don, Yang, Yang, Raposeiro, Pedro M., Gonçalves, Vítor, Antoniou, Maria G., Tsiarta, Nikoletta, McCarthy, Valerie, Perello, Victor C., Feldmann, Tõnu, Laas, Alo, Panksep, Kristel, Tuvikene, Lea, Gagala, Ilona, Mankiewicz-Boczek, Joana, Yağcı, Meral Apaydın, Çınar, Şakir, Çapkın, Kadir, Yağcı, Abdulkadir, Cesur, Mehmet, Bilgin, Fuat, Bulut, Cafer, Uysal, Rahmi, Obertegger, Ulrike, Boscaini, Adriano, Flaim, Giovanna, Salmaso, Nico, Cerasino, Leonardo, Richardson, Jessica, Visser, Petra M, Verspagen, Jolanda M. H., Karan, Tünay, Soylu, Elif Neyran, Maraşlıoğlu, Faruk, Napiórkowska-Krzebietke, Agnieszka, Ochocka, Agnieszka, Pasztaleniec, Agnieszka, Antão-Geraldes, Ana M., Vasconcelos, Vitor, Morais, João, Vale, Micaela, Köker, Latife, Akçaalan, Reyhan, Albay, Meriç, Špoljarić Maronić, Dubravka, Stević, Filip, Žuna Pfeiffer, Tanja, Fonvielle, Jeremy, Straile, Dietmar, Rothhaupt, Karl-Otto, Hansson, Lars-Anders, Urrutia-Cordero, Pablo, Bláha, Luděk, Geriš, Rodan, Fránková, Markéta, Koçer, Mehmet Ali Turan, Alp, Mehmet Tahir, Remec-Rekar, Spela, Elersek, Tina, Triantis, Theodoros, Zervou, Sevasti-Kiriaki, Hiskia, Anastasia, Haande, Sigrid, Skjelbred, Birger, Madrecka, Beata, Nemova, Hana, Drastichova, Iveta, Chomova, Lucia, Edwards, Christine, Sevindik, Tuğba Ongun, Tunca, Hatice, Önem, Burçin, Aleksovski, Boris, Krstić, Svetislav, Vucelić, Itana Bokan, Nawrocka, Lidia, Salmi, Pauliina, Machado-Vieira, Danielle, de Oliveira, Alinne Gurjão, Delgado-Martín, Jordi, García-García, David, Cereijo, Jose Luís, Gomà, Joan, Trapote, Mari Carmen, Vegas-Vilarrúbia, Teresa, Obrador, Biel, Grabowska, Magdalena, Karpowicz, Maciej, Chmura, Damian, Úbeda, Bárbara, Gálvez, José Ángel, Özen, Arda, Christoffersen, Kirsten Seestern, Warming, Trine Perlt, Kobos, Justyna, Mazur-Marzec, Hanna, Pérez-Martínez, Carmen, Ramos-Rodríguez, Eloísa, Arvola, Lauri, Alcaraz-Párraga, Pablo, Toporowska, Magdalena, Pawlik-Skowronska, Barbara, Niedźwiecki, Michał, Pęczuła, Wojciech, Leira, Manel, Hernández, Armand, Moreno-Ostos, Enrique, Blanco, José María, Rodríguez, Valeriano, Montes-Pérez, Jorge Juan, Palomino, Roberto L., Rodríguez-Pérez, Estela, Carballeira, Rafael, Camacho, Antonio, Picazo, Antonio, Rochera, Carlos, Santamans, Anna C., Ferriol, Carmen, Romo, Susana, Soria, Juan Miguel, Dunalska, Julita, Sieńska, Justyna, Szymański, Daniel, Kruk, Marek, Kostrzewska-Szlakowska, Iwona, Jasser, Iwona, Žutinić, Petar, Gligora Udovič, Marija, Plenković-Moraj, Anđelka, Frąk, Magdalena, Bańkowska-Sobczak, Agnieszka, Wasilewicz, Michał, Özkan, Korhan, Maliaka, Valentini, Kangro, Kersti, Grossart, Hans-Peter, Paerl, Hans W., Carey, Cayelan C., Ibelings, Bas W., Aquatic Ecology (AqE), and AKWA
- Subjects
international ,Journal Article - Abstract
situ Insight into how environmental change determines the production and distribution of cyanobacterial toxins is necessary for risk assessment. Management guidelines currently focus on hepatotoxins (microcystins). Increasing attention is given to other classes, such as neurotoxins (e.g., anatoxin-a) and cytotoxins (e.g., cylindrospermopsin) due to their potency. Most studies examine the relationship between individual toxin variants and environmental factors, such as nutrients, temperature and light. In summer 2015, we collected samples across Europe to investigate the effect of nutrient and temperature gradients on the variability of toxin production at a continental scale. Direct and indirect effects of temperature were the main drivers of the spatial distribution in the toxins produced by the cyanobacterial community, the toxin concentrations and toxin quota. Generalized linear models showed that a Toxin Diversity Index (TDI) increased with latitude, while it decreased with water stability. Increases in TDI were explained through a significant increase in toxin variants such as MC-YR, anatoxin and cylindrospermopsin, accompanied by a decreasing presence of MC-LR. While global warming continues, the direct and indirect effects of increased lake temperatures will drive changes in the distribution of cyanobacterial toxins in Europe, potentially promoting selection of a few highly toxic species or strains.
- Published
- 2018
24. Data Descriptor : A European Multi Lake Survey dataset of environmental variables, phytoplankton pigments and cyanotoxins
- Author
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Mantzouki, Evanthia, Campbell, James, Loon, Emiel van, Visser, Petra, Konstantinou, Iosif, Antoniou, Maria G., Giuliani, Grégory, Machado-Vieira, Danielle, Oliveira, Alinne Gurjão de, Maronić, Dubravka Špoljarić, Stević, Filip, Fakioglu, Özden, Soylu, Elif Neyran, Yağcı, Meral Apaydın, Çınar, Şakir, Çapkın, Kadir, Yağcı, Abdulkadir, Cesur, Mehmet, Bilgin, Fuat, Bulut, Cafer, Fránková, Markéta, Vasconcelos, Vitor, Uysal, Rahmi, Köker, Latife, Akçaalan, Reyhan, Albay, Meriç, Alp, Mehmet Tahir, Özkan, Korhan, Sevindik, Tuğba Ongun, Tunca, Hatice, Önem, Burçin, Richardson, Jessica, Morais, João, Christoffersen, Kirsten Seestern, Edwards, Christine, Bergkemper, Victoria, O'Leary, Sarah, Beirne, Eilish, Cromie, Hannah, Ibelings, Bastiaan W., Warming, Trine Perlt, Feldmann, Tõnu, Laas, Alo, Vale, Micaela, Panksep, Kristel, Tuvikene, Lea, Kangro, Kersti, Häggqvist, Kerstin, Salmi, Pauliina, Arvola, Lauri, Fastner, Jutta, Straile, Dietmar, Rothhaupt, Karl-Otto, Fonvielle, Jeremy, Raposeiro, Pedro M., Grossart, Hans-Peter, Avagianos, Christos, Kaloudis, Triantafyllos, Triantis, Theodoros, Zervou, Sevasti-Kiriaki, Hiskia, Anastasia, Gkelis, Spyros, Panou, Manthos, McCarthy, Valerie, Perello, Victor C., Gonçalves, Vítor Manuel da Costa, Obertegger, Ulrike, Boscaini, Adriano, Flaim, Giovanna, Salmaso, Nico, Cerasino, Leonardo, Koreivienė, Judita, Karosienė, Jūratė, Kasperovičienė, Jūratė, Savadova, Ksenija, Vitonytė, Irma, Aleksovski, Boris, Haande, Sigrid, Skjelbred, Birger, Grabowska, Magdalena, Karpowicz, Maciej, Chmura, Damian, Nawrocka, Lidia, Kobos, Justyna, Mazur-Marzec, Hanna, Alcaraz-Párraga, Pablo, Wilk-Woźniak, Elżbieta, Krstić, Svetislav, Krztoń, Wojciech, Walusiak, Edward, Gagala, Ilona, Mankiewicz-Boczek, Joana, Toporowska, Magdalena, Pawlik-Skowronska, Barbara, Niedźwiecki, Michał, Pęczuła, Wojciech, Napiórkowska-Krzebietke, Agnieszka, Dunalska, Julita, Nemova, Hana, Sieńska, Justyna, Szymański, Daniel, Kruk, Marek, Budzyńska, Agnieszka, Goldyn, Ryszard, Kozak, Anna, Rosińska, Joanna, Szeląg-Wasielewska, Elżbieta, Domek, Piotr, Jakubowska-Krepska, Natalia, Drastichova, Iveta, Kwasizur, Kinga, Messyasz, Beata, Pełechata, Aleksandra, Pełechaty, Mariusz, Kokocinski, Mikolaj, Madrecka, Beata, Kostrzewska-Szlakowska, Iwona, Frąk, Magdalena, Bańkowska-Sobczak, Agnieszka, Wasilewicz, Michał, Chomova, Lucia, Ochocka, Agnieszka, Pasztaleniec, Agnieszka, Jasser, Iwona, Geraldes, Ana Maria, Leira, Manel, Hernández, Armand, Pfeiffer, Tanja Žuna, Remec-Rekar, Spela, Elersek, Tina, Delgado-Martín, Jordi, García, David, Cereijo, Jose Luís, Gomà, Joan, Trapote, Mari Carmen, Vegas-Vilarrúbia, Teresa, Obrador, Biel, García-Murcia, Ana, Vucelić, Itana Bokan, Real, Monserrat, Romans, Elvira, Noguero-Ribes, Jordi, Duque, David Parreño, Fernández-Morán, Elísabeth, Úbeda, Bárbara, Gálvez, José Ángel, Marcé, Rafael, Catalán, Núria, Pérez-Martínez, Carmen, Žutinić, Petar, Ramos-Rodríguez, Eloísa, Cillero-Castro, Carmen, Moreno-Ostos, Enrique, Blanco, José María, Rodríguez, Valeriano, Montes-Pérez, Jorge Juan, Palomino, Roberto L., Rodríguez-Pérez, Estela, Carballeira, Rafael, Camacho, Antonio, Udovič, Marija Gligora, Picazo, Antonio, Rochera, Carlos, Santamans, Anna C., Ferriol, Carmen, Romo, Susana, Soria, Juan Miguel, Hansson, Lars-Anders, Urrutia-Cordero, Pablo, Özen, Arda, Bravo, Andrea G., Plenković-Moraj, Anđelka, Buck, Moritz, Colom-Montero, William, Mustonen, Kristiina, Pierson, Don, Yang, Yang, Verspagen, Jolanda M.H., Domis, Lisette N. de Senerpont, Seelen, Laura, Teurlincx, Sven, Verstijnen, Yvon, Tsiarta, Nikoletta, Lürling, Miquel, Maliaka, Valentini, Faassen, Elisabeth J., Latour, Delphine, Carey, Cayelan C., Paerl, Hans W., Torokne, Andrea, Karan, Tünay, Demir, Nilsun, Beklioğlu, Meryem, Bláha, Luděk, Filiz, Nur, Levi, Eti E., Iskin, Uğur, Bezirci, Gizem, Tavşanoğlu, Ülkü Nihan, Çelik, Kemal, Özhan, Koray, Karakaya, Nusret, Koçer, Mehmet Ali Turan, Yilmaz, Mete, Geriš, Rodan, Maraşlıoğlu, Faruk, and Institute of Agricultural and Environmental Sciences
- Subjects
Europe ,ddc:570 ,Settore BIO/07 - ECOLOGIA ,datasets ,lakes ,articles ,Phytoplankton pigments ,Institut für Biochemie und Biologie ,Dataset - Abstract
Under ongoing climate change and increasing anthropogenic activity, which continuously challenge ecosystem resilience, an in-depth understanding of ecological processes is urgently needed. Lakes, as providers of numerous ecosystem services, face multiple stressors that threaten their functioning. Harmful cyanobacterial blooms are a persistent problem resulting from nutrient pollution and climate-change induced stressors, like poor transparency, increased water temperature and enhanced stratification. Consistency in data collection and analysis methods is necessary to achieve fully comparable datasets and for statistical validity, avoiding issues linked to disparate data sources. The European Multi Lake Survey (EMLS) in summer 2015 was an initiative among scientists from 27 countries to collect and analyse lake physical, chemical and biological variables in a fully standardized manner. This database includes in-situ lake variables along with nutrient, pigment and cyanotoxin data of 369 lakes in Europe, which were centrally analysed in dedicated laboratories. Publishing the EMLS methods and dataset might inspire similar initiatives to study across large geographic areas that will contribute to better understanding lake responses in a changing environment. The authors acknowledge COST Action ES 1105 “CYANOCOST – Cyanobacterial blooms and toxins in water resources: Occurrence impacts and management” and COST Action ES 1201 “NETLAKE – Networking Lake Observatories in Europe” for contributing to this study through networking and knowledge sharing with European experts in the field. Evanthia Mantzouki was supported by a grant from the Swiss State Secretariat for Education, Research and Innovation (SERI) to Bas Ibelings and by supplementary funding from University of Geneva. We thank Wendy Beekman for the nutrient analysis and the University of Wageningen for covering the costs of this analysis from the personal funding of dr. Miquel Lürling. We thank Pieter Slot for assisting with the pigment analysis and the University of Amsterdam for covering the costs of the analysis through funding from the group of Prof. Jef Huisman and dr. Petra Visser (IBED). We would like to thank the Environmental Data Initiative for covering the cost of archiving the EMLS dataset. We would like to thank the Leibniz Institute of Freshwater Ecology and Inland Fisheries, Dept. of Experimental Limnology and the Aquatic Microbial Ecology Group for logistic and technical support of J. Fonvielle and H.-P. Grossart; and the Leibniz Association for financial support. The collection of data for Lough Erne and Lough Neagh were funded by the Department of Agriculture, Environment and Rural Affairs, Northern Ireland. The authors acknowledge COST Action ES 1105 “CYANOCOST – Cyanobacterial blooms and toxins in water resources: Occurrence impacts and management” and COST Action ES 1201 “NETLAKE – Networking Lake Observatories in Europe” for contributing to this study through networking and knowledge sharing with European experts in the field. Evanthia Mantzouki was supported by a grant from the Swiss State Secretariat for Education, Research and Innovation (SERI) to Bas Ibelings and by supplementary funding from University of Geneva. We thank Wendy Beekman for the nutrient analysis and the University of Wageningen for covering the costs of this analysis from the personal funding of dr. Miquel Lürling. We thank Pieter Slot for assisting with the pigment analysis and the University of Amsterdam for covering the costs of the analysis through funding from the group of Prof. Jef Huisman and dr. Petra Visser (IBED). We would like to thank the Environmental Data Initiative for covering the cost of archiving the EMLS dataset. We would like to thank the Leibniz Institute of Freshwater Ecology and Inland Fisheries, Dept. of Experimental Limnology and the Aquatic Microbial Ecology Group for logistic and technical support of J. Fonvielle and H.-P. Grossart; and the Leibniz Association for financial support. The collection of data for Lough Erne and Lough Neagh were funded by the Department of Agriculture, Environment and Rural Affairs, Northern Ireland.
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- 2018
25. The Reappearance of An Extremely Rare and Critically Endangered Nitella translucens (Charophyceae) in Poland
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Rosińska, Joanna, primary, Piotrowicz, Ryszard, additional, Celiński, Konrad, additional, Dabert, Mirosława, additional, Rzymski, Piotr, additional, and Klimaszyk, Piotr, additional
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- 2019
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26. Water quality and phytoplankton structure changes under the influence of effective microorganisms (EM) and barley straw – Lake restoration case study
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Dondajewska, Renata, primary, Kozak, Anna, additional, Rosińska, Joanna, additional, and Gołdyn, Ryszard, additional
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- 2019
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27. Internal phosphorus loading as the response to complete and then limited sustainable restoration of a shallow lake
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Kowalczewska-Madura, Katarzyna, primary, Dondajewska, Renata, additional, Gołdyn, Ryszard, additional, Rosińska, Joanna, additional, and Podsiadłowski, Stanisław, additional
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- 2019
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28. Stratification strength and light climate explain variation in chlorophyll aat the continental scale in a European multilake survey in a heatwave summer
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Donis, Daphne, Mantzouki, Evanthia, McGinnis, Daniel F., Vachon, Dominic, Gallego, Irene, Grossart, Hans‐Peter, Senerpont Domis, Lisette N., Teurlincx, Sven, Seelen, Laura, Lürling, Miquel, Verstijnen, Yvon, Maliaka, Valentini, Fonvielle, Jeremy, Visser, Petra M., Verspagen, Jolanda, Herk, Maria, Antoniou, Maria G., Tsiarta, Nikoletta, McCarthy, Valerie, Perello, Victor C., Machado‐Vieira, Danielle, Oliveira, Alinne Gurjão, Maronić, Dubravka Špoljarić, Stević, Filip, Pfeiffer, Tanja Žuna, Vucelić, Itana Bokan, Žutinić, Petar, Udovič, Marija Gligora, Plenković‐Moraj, Anđelka, Bláha, Luděk, Geriš, Rodan, Fránková, Markéta, Christoffersen, Kirsten Seestern, Warming, Trine Perlt, Feldmann, Tõnu, Laas, Alo, Panksep, Kristel, Tuvikene, Lea, Kangro, Kersti, Koreivienė, Judita, Karosienė, Jūratė, Kasperovičienė, Jūratė, Savadova‐Ratkus, Ksenija, Vitonytė, Irma, Häggqvist, Kerstin, Salmi, Pauliina, Arvola, Lauri, Rothhaupt, Karl, Avagianos, Christos, Kaloudis, Triantafyllos, Gkelis, Spyros, Panou, Manthos, Triantis, Theodoros, Zervou, Sevasti‐Kiriaki, Hiskia, Anastasia, Obertegger, Ulrike, Boscaini, Adriano, Flaim, Giovanna, Salmaso, Nico, Cerasino, Leonardo, Haande, Sigrid, Skjelbred, Birger, Grabowska, Magdalena, Karpowicz, Maciej, Chmura, Damian, Nawrocka, Lidia, Kobos, Justyna, Mazur‐Marzec, Hanna, Alcaraz‐Párraga, Pablo, Wilk‐Woźniak, Elżbieta, Krztoń, Wojciech, Walusiak, Edward, Gagala‐Borowska, Ilona, Mankiewicz‐Boczek, Joana, Toporowska, Magdalena, Pawlik‐Skowronska, Barbara, Niedźwiecki, Michał, Pęczuła, Wojciech, Napiórkowska‐Krzebietke, Agnieszka, Dunalska, Julita, Sieńska, Justyna, Szymański, Daniel, Kruk, Marek, Budzyńska, Agnieszka, Goldyn, Ryszard, Kozak, Anna, Rosińska, Joanna, Szeląg‐Wasielewska, Elżbieta, Domek, Piotr, Jakubowska‐Krepska, Natalia, Kwasizur, Kinga, Messyasz, Beata, Pełechata, Aleksandra, Pełechaty, Mariusz, Kokocinski, Mikolaj, Madrecka‐Witkowska, Beata, Kostrzewska‐Szlakowska, Iwona, Frąk, Magdalena, Bańkowska‐Sobczak, Agnieszka, Wasilewicz, Michał, Ochocka, Agnieszka, Pasztaleniec, Agnieszka, Jasser, Iwona, Antão‐Geraldes, Ana M., Leira, Manel, Vasconcelos, Vitor, Morais, Joao, Vale, Micaela, Raposeiro, Pedro M., Gonçalves, Vítor, Aleksovski, Boris, Krstić, Svetislav, Nemova, Hana, Drastichova, Iveta, Chomova, Lucia, Remec‐Rekar, Spela, Elersek, Tina, Hansson, Lars‐Anders, Urrutia‐Cordero, Pablo, Bravo, Andrea G., Buck, Moritz, Colom‐Montero, William, Mustonen, Kristiina, Pierson, Don, Yang, Yang, Richardson, Jessica, Edwards, Christine, Cromie, Hannah, Delgado‐Martín, Jordi, García, David, Cereijo, Jose Luís, Gomà, Joan, Trapote, Mari Carmen, Vegas‐Vilarrúbia, Teresa, Obrador, Biel, García‐Murcia, Ana, Real, Monserrat, Romans, Elvira, Noguero‐Ribes, Jordi, Duque, David Parreño, Fernández‐Morán, Elísabeth, Úbeda, Bárbara, Gálvez, José Ángel, Catalán, Núria, Pérez‐Martínez, Carmen, Ramos‐Rodríguez, Eloísa, Cillero‐Castro, Carmen, Moreno‐Ostos, Enrique, Blanco, José María, Rodríguez, Valeriano, Montes‐Pérez, Jorge Juan, Palomino, Roberto L., Rodríguez‐Pérez, Estela, Hernández, Armand, Carballeira, Rafael, Camacho, Antonio, Picazo, Antonio, Rochera, Carlos, Santamans, Anna C., Ferriol, Carmen, Romo, Susana, Soria, Juan Miguel, Özen, Arda, Karan, Tünay, Demir, Nilsun, Beklioğlu, Meryem, Filiz, Nur, Levi, Eti, Iskin, Uğur, Bezirci, Gizem, Tavşanoğlu, Ülkü Nihan, Çelik, Kemal, Ozhan, Koray, Karakaya, Nusret, Koçer, Mehmet Ali Turan, Yilmaz, Mete, Maraşlıoğlu, Faruk, Fakioglu, Özden, Soylu, Elif Neyran, Yağcı, Meral Apaydın, Çınar, Şakir, Çapkın, Kadir, Yağcı, Abdulkadir, Cesur, Mehmet, Bilgin, Fuat, Bulut, Cafer, Uysal, Rahmi, Latife, Köker, Akçaalan, Reyhan, Albay, Meriç, Alp, Mehmet Tahir, Özkan, Korhan, Sevindik, Tuğba Ongun, Tunca, Hatice, Önem, Burçin, Paerl, Hans, Carey, Cayelan C., and Ibelings, Bastiaan W.
- Abstract
To determine the drivers of phytoplankton biomass, we collected standardized morphometric, physical, and biological data in 230 lakes across the Mediterranean, Continental, and Boreal climatic zones of the European continent. Multilinear regression models tested on this snapshot of mostly eutrophic lakes (median total phosphorus [TP] = 0.06 and total nitrogen [TN] = 0.7 mg L−1), and its subsets (2 depth types and 3 climatic zones), show that light climate and stratification strength were the most significant explanatory variables for chlorophyll a(Chl a) variance. TN was a significant predictor for phytoplankton biomass for shallow and continental lakes, while TP never appeared as an explanatory variable, suggesting that under high TP, light, which partially controls stratification strength, becomes limiting for phytoplankton development. Mediterranean lakes were the warmest yet most weakly stratified and had significantly less Chl athan Boreal lakes, where the temperature anomaly from the long‐term average, during a summer heatwave was the highest (+4°C) and showed a significant, exponential relationship with stratification strength. This European survey represents a summer snapshot of phytoplankton biomass and its drivers, and lends support that light and stratification metrics, which are both affected by climate change, are better predictors for phytoplankton biomass in nutrient‐rich lakes than nutrient concentrations and surface temperature.
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- 2021
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29. Temperature Effects Explain Continental Scale Distribution of Cyanobacterial Toxins
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Mantzouki, Evanthia, Lürling, Miquel, Fastner, Jutta, de Senerpont Domis, Lisette, Wilk-Woźniak, Elżbieta, Koreivienė, Judita, Seelen, Laura, Teurlincx, Sven, Verstijnen, Yvon, Krztoń, Wojciech, Walusiak, Edward, Karosienė, Jūratė, Kasperovičienė, Jūratė, Savadova, Ksenija, Vitonytė, Irma, Cillero-Castro, Carmen, Budzyńska, Agnieszka, Goldyn, Ryszard, Kozak, Anna, Rosińska, Joanna, Szeląg-Wasielewska, Elżbieta, Domek, Piotr, Jakubowska-Krepska, Natalia, Kwasizur, Kinga, Messyasz, Beata, Pełechata, Aleksandra, Pełechaty, Mariusz, Kokocinski, Mikolaj, García-Murcia, Ana, Real, Monserrat, Romans, Elvira, Noguero-Ribes, Jordi, Duque, David Parreño, Fernández-Morán, Elísabeth, Karakaya, Nusret, Häggqvist, Kerstin, Demir, Nilsun, Beklioğlu, Meryem, Filiz, Nur, Levi, Eti E., Iskin, Uğur, Bezirci, Gizem, Tavşanoğlu, Ülkü Nihan, Özhan, Koray, Gkelis, Spyros, Panou, Manthos, Fakioglu, Özden, Avagianos, Christos, Kaloudis, Triantafyllos, Çelik, Kemal, Yilmaz, Mete, Marcé, Rafael, Catalán, Nuria, Bravo, Andrea G., Buck, Moritz, Colom-Montero, William, Mustonen, Kristiina, Pierson, Don, Yang, Yang, Raposeiro, Pedro M., Gonçalves, Vítor, Antoniou, Maria G., Tsiarta, Nikoletta, McCarthy, Valerie, Perello, Victor C., Feldmann, Tõnu, Laas, Alo, Panksep, Kristel, Tuvikene, Lea, Gagala, Ilona, Mankiewicz-Boczek, Joana, Yağcı, Meral Apaydın, Çınar, Şakir, Çapkın, Kadir, Yağcı, Abdulkadir, Cesur, Mehmet, Bilgin, Fuat, Bulut, Cafer, Uysal, Rahmi, Obertegger, Ulrike, Boscaini, Adriano, Flaim, Giovanna, Salmaso, Nico, Cerasino, Leonardo, Richardson, Jessica, Visser, Petra M., Verspagen, Jolanda M. H., Karan, Tünay, Soylu, Elif Neyran, Maraşlıoğlu, Faruk, Napiórkowska-Krzebietke, Agnieszka, Ochocka, Agnieszka, Pasztaleniec, Agnieszka, Antão-Geraldes, Ana M., Vasconcelos, Vitor, Morais, João, Vale, Micaela, Köker, Latife, Akçaalan, Reyhan, Albay, Meriç, Špoljarić Maronić, Dubravka, Stević, Filip, Žuna Pfeiffer, Tanja, Fonvielle, Jeremy, Straile, Dietmar, Rothhaupt, Karl-Otto, Hansson, Lars-Anders, Urrutia-Cordero, Pablo, Bláha, Luděk, Geriš, Rodan, Fránková, Markéta, Koçer, Mehmet Ali Turan, Alp, Mehmet Tahir, Remec-Rekar, Spela, Elersek, Tina, Triantis, Theodoros, Zervou, Sevasti-Kiriaki, Hiskia, Anastasia, Haande, Sigrid, Skjelbred, Birger, Madrecka, Beata, Nemova, Hana, Drastichova, Iveta, Chomova, Lucia, Edwards, Christine, Sevindik, Tuğba Ongun, Tunca, Hatice, Önem, Burçin, Aleksovski, Boris, Krstić, Svetislav, Vucelić, Itana Bokan, Nawrocka, Lidia, Salmi, Pauliina, Machado-Vieira, Danielle, de Oliveira, Alinne Gurjão, Delgado-Martín, Jordi, García, David, Cereijo, Jose Luís, Gomà, Joan, Trapote, Mari Carmen, Vegas-Vilarrúbia, Teresa, Obrador, Biel, Grabowska, Magdalena, Karpowicz, Maciej, Chmura, Damian, Úbeda, Bárbara, Gálvez, José Ángel, Özen, Arda, Christoffersen, Kirsten Seestern, Warming, Trine Perlt, Kobos, Justyna, Mazur-Marzec, Hanna, Pérez-Martínez, Carmen, Ramos-Rodríguez, Eloísa, Arvola, Lauri, Alcaraz-Párraga, Pablo, Toporowska, Magdalena, Pawlik-Skowronska, Barbara, Niedźwiecki, Michał, Pęczuła, Wojciech, Leira, Manel, Hernández, Armand, Moreno-Ostos, Enrique, Blanco, José María, Rodríguez, Valeriano, Montes-Pérez, Jorge Juan, Palomino, Roberto L., Rodríguez-Pérez, Estela, Carballeira, Rafael, Camacho, Antonio, Picazo, Antonio, Rochera, Carlos, Santamans, Anna C., Ferriol, Carmen, Romo, Susana, Soria, Juan Miguel, Dunalska, Julita, Sieńska, Justyna, Szymański, Daniel, Kruk, Marek, Kostrzewska-Szlakowska, Iwona, Jasser, Iwona, Žutinić, Petar, Gligora Udovič, Marija, Plenković-Moraj, Anđelka, Frąk, Magdalena, Bańkowska-Sobczak, Agnieszka, Wasilewicz, Michał, Özkan, Korhan, Maliaka, Valentini, Kangro, Kersti, Grossart, Hans-Peter, Paerl, Hans W., Carey, Cayelan C., Ibelings, Bas W., Mantzouki, Evanthia, Lürling, Miquel, Fastner, Jutta, de Senerpont Domis, Lisette, Wilk-Woźniak, Elżbieta, Koreivienė, Judita, Seelen, Laura, Teurlincx, Sven, Verstijnen, Yvon, Krztoń, Wojciech, Walusiak, Edward, Karosienė, Jūratė, Kasperovičienė, Jūratė, Savadova, Ksenija, Vitonytė, Irma, Cillero-Castro, Carmen, Budzyńska, Agnieszka, Goldyn, Ryszard, Kozak, Anna, Rosińska, Joanna, Szeląg-Wasielewska, Elżbieta, Domek, Piotr, Jakubowska-Krepska, Natalia, Kwasizur, Kinga, Messyasz, Beata, Pełechata, Aleksandra, Pełechaty, Mariusz, Kokocinski, Mikolaj, García-Murcia, Ana, Real, Monserrat, Romans, Elvira, Noguero-Ribes, Jordi, Duque, David Parreño, Fernández-Morán, Elísabeth, Karakaya, Nusret, Häggqvist, Kerstin, Demir, Nilsun, Beklioğlu, Meryem, Filiz, Nur, Levi, Eti E., Iskin, Uğur, Bezirci, Gizem, Tavşanoğlu, Ülkü Nihan, Özhan, Koray, Gkelis, Spyros, Panou, Manthos, Fakioglu, Özden, Avagianos, Christos, Kaloudis, Triantafyllos, Çelik, Kemal, Yilmaz, Mete, Marcé, Rafael, Catalán, Nuria, Bravo, Andrea G., Buck, Moritz, Colom-Montero, William, Mustonen, Kristiina, Pierson, Don, Yang, Yang, Raposeiro, Pedro M., Gonçalves, Vítor, Antoniou, Maria G., Tsiarta, Nikoletta, McCarthy, Valerie, Perello, Victor C., Feldmann, Tõnu, Laas, Alo, Panksep, Kristel, Tuvikene, Lea, Gagala, Ilona, Mankiewicz-Boczek, Joana, Yağcı, Meral Apaydın, Çınar, Şakir, Çapkın, Kadir, Yağcı, Abdulkadir, Cesur, Mehmet, Bilgin, Fuat, Bulut, Cafer, Uysal, Rahmi, Obertegger, Ulrike, Boscaini, Adriano, Flaim, Giovanna, Salmaso, Nico, Cerasino, Leonardo, Richardson, Jessica, Visser, Petra M., Verspagen, Jolanda M. H., Karan, Tünay, Soylu, Elif Neyran, Maraşlıoğlu, Faruk, Napiórkowska-Krzebietke, Agnieszka, Ochocka, Agnieszka, Pasztaleniec, Agnieszka, Antão-Geraldes, Ana M., Vasconcelos, Vitor, Morais, João, Vale, Micaela, Köker, Latife, Akçaalan, Reyhan, Albay, Meriç, Špoljarić Maronić, Dubravka, Stević, Filip, Žuna Pfeiffer, Tanja, Fonvielle, Jeremy, Straile, Dietmar, Rothhaupt, Karl-Otto, Hansson, Lars-Anders, Urrutia-Cordero, Pablo, Bláha, Luděk, Geriš, Rodan, Fránková, Markéta, Koçer, Mehmet Ali Turan, Alp, Mehmet Tahir, Remec-Rekar, Spela, Elersek, Tina, Triantis, Theodoros, Zervou, Sevasti-Kiriaki, Hiskia, Anastasia, Haande, Sigrid, Skjelbred, Birger, Madrecka, Beata, Nemova, Hana, Drastichova, Iveta, Chomova, Lucia, Edwards, Christine, Sevindik, Tuğba Ongun, Tunca, Hatice, Önem, Burçin, Aleksovski, Boris, Krstić, Svetislav, Vucelić, Itana Bokan, Nawrocka, Lidia, Salmi, Pauliina, Machado-Vieira, Danielle, de Oliveira, Alinne Gurjão, Delgado-Martín, Jordi, García, David, Cereijo, Jose Luís, Gomà, Joan, Trapote, Mari Carmen, Vegas-Vilarrúbia, Teresa, Obrador, Biel, Grabowska, Magdalena, Karpowicz, Maciej, Chmura, Damian, Úbeda, Bárbara, Gálvez, José Ángel, Özen, Arda, Christoffersen, Kirsten Seestern, Warming, Trine Perlt, Kobos, Justyna, Mazur-Marzec, Hanna, Pérez-Martínez, Carmen, Ramos-Rodríguez, Eloísa, Arvola, Lauri, Alcaraz-Párraga, Pablo, Toporowska, Magdalena, Pawlik-Skowronska, Barbara, Niedźwiecki, Michał, Pęczuła, Wojciech, Leira, Manel, Hernández, Armand, Moreno-Ostos, Enrique, Blanco, José María, Rodríguez, Valeriano, Montes-Pérez, Jorge Juan, Palomino, Roberto L., Rodríguez-Pérez, Estela, Carballeira, Rafael, Camacho, Antonio, Picazo, Antonio, Rochera, Carlos, Santamans, Anna C., Ferriol, Carmen, Romo, Susana, Soria, Juan Miguel, Dunalska, Julita, Sieńska, Justyna, Szymański, Daniel, Kruk, Marek, Kostrzewska-Szlakowska, Iwona, Jasser, Iwona, Žutinić, Petar, Gligora Udovič, Marija, Plenković-Moraj, Anđelka, Frąk, Magdalena, Bańkowska-Sobczak, Agnieszka, Wasilewicz, Michał, Özkan, Korhan, Maliaka, Valentini, Kangro, Kersti, Grossart, Hans-Peter, Paerl, Hans W., Carey, Cayelan C., and Ibelings, Bas W.
- Abstract
Insight into how environmental change determines the production and distribution of cyanobacterial toxins is necessary for risk assessment. Management guidelines currently focus on hepatotoxins (microcystins). Increasing attention is given to other classes, such as neurotoxins (e.g., anatoxin-a) and cytotoxins (e.g., cylindrospermopsin) due to their potency. Most studies examine the relationship between individual toxin variants and environmental factors, such as nutrients, temperature and light. In summer 2015, we collected samples across Europe to investigate the effect of nutrient and temperature gradients on the variability of toxin production at a continental scale. Direct and indirect effects of temperature were the main drivers of the spatial distribution in the toxins produced by the cyanobacterial community, the toxin concentrations and toxin quota. Generalized linear models showed that a Toxin Diversity Index (TDI) increased with latitude, while it decreased with water stability. Increases in TDI were explained through a significant increase in toxin variants such as MC-YR, anatoxin and cylindrospermopsin, accompanied by a decreasing presence of MC-LR. While global warming continues, the direct and indirect effects of increased lake temperatures will drive changes in the distribution of cyanobacterial toxins in Europe, potentially promoting selection of a few highly toxic species or strains.
- Published
- 2018
- Full Text
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30. A European Multi Lake Survey dataset of environmental variables, phytoplankton pigments and cyanotoxins
- Author
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Mantzouki, Evanthia, Campbell, James, van Loon, Emiel, Visser, Petra, Konstantinou, Iosif, Antoniou, Maria, Giuliani, Grégory, Machado-Vieira, Danielle, Gurjão de Oliveira, Alinne, Maronić, Dubravka Špoljarić, Stević, Filip, Pfeiffer, Tanja Žuna, Vucelić, Itana Bokan, Žutinić, Petar, Udovič, Marija Gligora, Plenković-Moraj, Anđelka, Tsiarta, Nikoletta, Bláha, Luděk, Geriš, Rodan, Fránková, Markéta, Christoffersen, Kirsten Seestern, Warming, Trine Perlt, Feldmann, Tõnu, Laas, Alo, Panksep, Kristel, Tuvikene, Lea, Kangro, Kersti, Häggqvist, Kerstin, Salmi, Pauliina, Arvola, Lauri, Fastner, Jutta, Straile, Dietmar, Rothhaupt, Karl-Otto, Fonvielle, Jeremy, Grossart, Hans-Peter, Avagianos, Christos, Kaloudis, Triantafyllos, Triantis, Theodoros, Zervou, Sevasti-Kiriaki, Hiskia, Anastasia, Gkelis, Spyros, Panou, Manthos, McCarthy, Valerie, Perello, Victor C, Obertegger, Ulrike, Boscaini, Adriano, Flaim, Giovanna, Salmaso, Nico, Cerasino, Leonardo, Koreivienė, Judita, Karosienė, Jūratė, Kasperovičienė, Jūratė, Savadova, Ksenija, Vitonytė, Irma, Haande, Sigrid, Skjelbred, Birger, Grabowska, Magdalena, Karpowicz, Maciej, Chmura, Damian, Nawrocka, Lidia, Kobos, Justyna, Mazur-Marzec, Hanna, Alcaraz-Párraga, Pablo, Wilk-Woźniak, Elżbieta, Krztoń, Wojciech, Walusiak, Edward, Gagala, Ilona, Mankiewicz-Boczek, Joana, Toporowska, Magdalena, Pawlik-Skowronska, Barbara, Niedźwiecki, Michał, Pęczuła, Wojciech, Napiórkowska-Krzebietke, Agnieszka, Dunalska, Julita, Sieńska, Justyna, Szymański, Daniel, Kruk, Marek, Budzyńska, Agnieszka, Goldyn, Ryszard, Kozak, Anna, Rosińska, Joanna, Szeląg-Wasielewska, Elżbieta, Domek, Piotr, Jakubowska-Krepska, Natalia, Kwasizur, Kinga, Messyasz, Beata, Pełechata, Aleksandra, Pełechaty, Mariusz, Kokocinski, Mikolaj, Madrecka, Beata, Kostrzewska-Szlakowska, Iwona, Frąk, Magdalena, Bańkowska-Sobczak, Agnieszka, Wasilewicz, Michał, Ochocka, Agnieszka, Pasztaleniec, Agnieszka, Jasser, Iwona, Antão-Geraldes, Ana M, Leira, Manel, Hernández, Armand, Vasconcelos, Vitor, Morais, João, Vale, Micaela, Raposeiro, Pedro M, Gonçalves, Vítor, Aleksovski, Boris, Krstić, Svetislav, Nemova, Hana, Drastichova, Iveta, Chomova, Lucia, Remec-Rekar, Spela, Elersek, Tina, Delgado-Martín, Jordi, García, David, Cereijo, Jose Luís, Gomà, Joan, Trapote, Mari Carmen, Vegas-Vilarrúbia, Teresa, Obrador, Biel, García-Murcia, Ana, Real, Monserrat, Romans, Elvira, Noguero-Ribes, Jordi, Duque, David Parreño, Fernández-Morán, Elísabeth, Úbeda, Bárbara, Gálvez, José Ángel, Marcé, Rafael, Catalán, Núria, Pérez-Martínez, Carmen, Ramos-Rodríguez, Eloísa, Cillero-Castro, Carmen, Moreno-Ostos, Enrique, Blanco, José María, Rodríguez, Valeriano, Montes-Pérez, Jorge Juan, Palomino, Roberto L, Rodríguez-Pérez, Estela, Carballeira, Rafael, Camacho, Antonio, Picazo, Antonio, Rochera, Carlos, Santamans, Anna C, Ferriol, Carmen, Romo, Susana, Soria, Juan Miguel, Hansson, Lars-Anders, Urrutia-Cordero, Pablo, Özen, Arda, Bravo, Andrea G, Buck, Moritz, Colom-Montero, William, Mustonen, Kristiina, Pierson, Don, Yang, Yang, M H Verspagen, Jolanda, de Senerpont Domis, Lisette N, Seelen, Laura, Verstijnen, Yvon, Lürling, Miquel, Maliaka, Valentini, Faassen, Elisabeth J, Latour, Delphine, Carey, Cayelan C, W Paerl, Hans, Torokne, Andrea, Karan, Tünay, Demir, Nilsun, Beklioğlu, Meryem, Filiz, Nur, E Levi, Eti, Iskin, Uğur, Bezirci, Gizem, Tavşanoğlu, Ülkü Nihan, Çelik, Kemal, Özhan, Koray, Karakaya, Nusret, Koçer, Mehmet Ali Turan, Yilmaz, Mete, Maraşlıoğlu, Faruk, Fakioglu, Özden, Soylu, Elif Neyran, Yağcı, Meral Apaydın, Çınar, Şakir, Çapkın, Kadir, Yağcı, Abdulkadir, Cesur, Mehmet, Bilgin, Fuat, Bulut, Cafer, Uysal, Rahmi, Köker, Latife, Akçaalan, Reyhan, Albay, Meriç, Alp, Mehmet Tahir, Özkan, Korhan, Sevindik, Tuğba Ongun, Tunca, Hatice, Önem, Burçin, Richardson, Jessica, Edwards, Christine, Bergkemper, Victoria, O'Leary, Sarah, Beirne, Eilish, Cromie, Hannah, Ibelings, Bastiaan W, Mantzouki, Evanthia, Campbell, James, van Loon, Emiel, Visser, Petra, Konstantinou, Iosif, Antoniou, Maria, Giuliani, Grégory, Machado-Vieira, Danielle, Gurjão de Oliveira, Alinne, Maronić, Dubravka Špoljarić, Stević, Filip, Pfeiffer, Tanja Žuna, Vucelić, Itana Bokan, Žutinić, Petar, Udovič, Marija Gligora, Plenković-Moraj, Anđelka, Tsiarta, Nikoletta, Bláha, Luděk, Geriš, Rodan, Fránková, Markéta, Christoffersen, Kirsten Seestern, Warming, Trine Perlt, Feldmann, Tõnu, Laas, Alo, Panksep, Kristel, Tuvikene, Lea, Kangro, Kersti, Häggqvist, Kerstin, Salmi, Pauliina, Arvola, Lauri, Fastner, Jutta, Straile, Dietmar, Rothhaupt, Karl-Otto, Fonvielle, Jeremy, Grossart, Hans-Peter, Avagianos, Christos, Kaloudis, Triantafyllos, Triantis, Theodoros, Zervou, Sevasti-Kiriaki, Hiskia, Anastasia, Gkelis, Spyros, Panou, Manthos, McCarthy, Valerie, Perello, Victor C, Obertegger, Ulrike, Boscaini, Adriano, Flaim, Giovanna, Salmaso, Nico, Cerasino, Leonardo, Koreivienė, Judita, Karosienė, Jūratė, Kasperovičienė, Jūratė, Savadova, Ksenija, Vitonytė, Irma, Haande, Sigrid, Skjelbred, Birger, Grabowska, Magdalena, Karpowicz, Maciej, Chmura, Damian, Nawrocka, Lidia, Kobos, Justyna, Mazur-Marzec, Hanna, Alcaraz-Párraga, Pablo, Wilk-Woźniak, Elżbieta, Krztoń, Wojciech, Walusiak, Edward, Gagala, Ilona, Mankiewicz-Boczek, Joana, Toporowska, Magdalena, Pawlik-Skowronska, Barbara, Niedźwiecki, Michał, Pęczuła, Wojciech, Napiórkowska-Krzebietke, Agnieszka, Dunalska, Julita, Sieńska, Justyna, Szymański, Daniel, Kruk, Marek, Budzyńska, Agnieszka, Goldyn, Ryszard, Kozak, Anna, Rosińska, Joanna, Szeląg-Wasielewska, Elżbieta, Domek, Piotr, Jakubowska-Krepska, Natalia, Kwasizur, Kinga, Messyasz, Beata, Pełechata, Aleksandra, Pełechaty, Mariusz, Kokocinski, Mikolaj, Madrecka, Beata, Kostrzewska-Szlakowska, Iwona, Frąk, Magdalena, Bańkowska-Sobczak, Agnieszka, Wasilewicz, Michał, Ochocka, Agnieszka, Pasztaleniec, Agnieszka, Jasser, Iwona, Antão-Geraldes, Ana M, Leira, Manel, Hernández, Armand, Vasconcelos, Vitor, Morais, João, Vale, Micaela, Raposeiro, Pedro M, Gonçalves, Vítor, Aleksovski, Boris, Krstić, Svetislav, Nemova, Hana, Drastichova, Iveta, Chomova, Lucia, Remec-Rekar, Spela, Elersek, Tina, Delgado-Martín, Jordi, García, David, Cereijo, Jose Luís, Gomà, Joan, Trapote, Mari Carmen, Vegas-Vilarrúbia, Teresa, Obrador, Biel, García-Murcia, Ana, Real, Monserrat, Romans, Elvira, Noguero-Ribes, Jordi, Duque, David Parreño, Fernández-Morán, Elísabeth, Úbeda, Bárbara, Gálvez, José Ángel, Marcé, Rafael, Catalán, Núria, Pérez-Martínez, Carmen, Ramos-Rodríguez, Eloísa, Cillero-Castro, Carmen, Moreno-Ostos, Enrique, Blanco, José María, Rodríguez, Valeriano, Montes-Pérez, Jorge Juan, Palomino, Roberto L, Rodríguez-Pérez, Estela, Carballeira, Rafael, Camacho, Antonio, Picazo, Antonio, Rochera, Carlos, Santamans, Anna C, Ferriol, Carmen, Romo, Susana, Soria, Juan Miguel, Hansson, Lars-Anders, Urrutia-Cordero, Pablo, Özen, Arda, Bravo, Andrea G, Buck, Moritz, Colom-Montero, William, Mustonen, Kristiina, Pierson, Don, Yang, Yang, M H Verspagen, Jolanda, de Senerpont Domis, Lisette N, Seelen, Laura, Verstijnen, Yvon, Lürling, Miquel, Maliaka, Valentini, Faassen, Elisabeth J, Latour, Delphine, Carey, Cayelan C, W Paerl, Hans, Torokne, Andrea, Karan, Tünay, Demir, Nilsun, Beklioğlu, Meryem, Filiz, Nur, E Levi, Eti, Iskin, Uğur, Bezirci, Gizem, Tavşanoğlu, Ülkü Nihan, Çelik, Kemal, Özhan, Koray, Karakaya, Nusret, Koçer, Mehmet Ali Turan, Yilmaz, Mete, Maraşlıoğlu, Faruk, Fakioglu, Özden, Soylu, Elif Neyran, Yağcı, Meral Apaydın, Çınar, Şakir, Çapkın, Kadir, Yağcı, Abdulkadir, Cesur, Mehmet, Bilgin, Fuat, Bulut, Cafer, Uysal, Rahmi, Köker, Latife, Akçaalan, Reyhan, Albay, Meriç, Alp, Mehmet Tahir, Özkan, Korhan, Sevindik, Tuğba Ongun, Tunca, Hatice, Önem, Burçin, Richardson, Jessica, Edwards, Christine, Bergkemper, Victoria, O'Leary, Sarah, Beirne, Eilish, Cromie, Hannah, and Ibelings, Bastiaan W
- Abstract
Under ongoing climate change and increasing anthropogenic activity, which continuously challenge ecosystem resilience, an in-depth understanding of ecological processes is urgently needed. Lakes, as providers of numerous ecosystem services, face multiple stressors that threaten their functioning. Harmful cyanobacterial blooms are a persistent problem resulting from nutrient pollution and climate-change induced stressors, like poor transparency, increased water temperature and enhanced stratification. Consistency in data collection and analysis methods is necessary to achieve fully comparable datasets and for statistical validity, avoiding issues linked to disparate data sources. The European Multi Lake Survey (EMLS) in summer 2015 was an initiative among scientists from 27 countries to collect and analyse lake physical, chemical and biological variables in a fully standardized manner. This database includes in-situ lake variables along with nutrient, pigment and cyanotoxin data of 369 lakes in Europe, which were centrally analysed in dedicated laboratories. Publishing the EMLS methods and dataset might inspire similar initiatives to study across large geographic areas that will contribute to better understanding lake responses in a changing environment.
- Published
- 2018
31. A European Multi Lake Survey dataset of environmental variables, phytoplankton pigments and cyanotoxins
- Author
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Mantzouki, Evanthia, primary, Campbell, James, additional, van Loon, Emiel, additional, Visser, Petra, additional, Konstantinou, Iosif, additional, Antoniou, Maria, additional, Giuliani, Grégory, additional, Machado-Vieira, Danielle, additional, Gurjão de Oliveira, Alinne, additional, Maronić, Dubravka Špoljarić, additional, Stević, Filip, additional, Pfeiffer, Tanja Žuna, additional, Vucelić, Itana Bokan, additional, Žutinić, Petar, additional, Udovič, Marija Gligora, additional, Plenković-Moraj, Anđelka, additional, Tsiarta, Nikoletta, additional, Bláha, Luděk, additional, Geriš, Rodan, additional, Fránková, Markéta, additional, Christoffersen, Kirsten Seestern, additional, Warming, Trine Perlt, additional, Feldmann, Tõnu, additional, Laas, Alo, additional, Panksep, Kristel, additional, Tuvikene, Lea, additional, Kangro, Kersti, additional, Häggqvist, Kerstin, additional, Salmi, Pauliina, additional, Arvola, Lauri, additional, Fastner, Jutta, additional, Straile, Dietmar, additional, Rothhaupt, Karl-Otto, additional, Fonvielle, Jeremy, additional, Grossart, Hans-Peter, additional, Avagianos, Christos, additional, Kaloudis, Triantafyllos, additional, Triantis, Theodoros, additional, Zervou, Sevasti-Kiriaki, additional, Hiskia, Anastasia, additional, Gkelis, Spyros, additional, Panou, Manthos, additional, McCarthy, Valerie, additional, Perello, Victor C., additional, Obertegger, Ulrike, additional, Boscaini, Adriano, additional, Flaim, Giovanna, additional, Salmaso, Nico, additional, Cerasino, Leonardo, additional, Koreivienė, Judita, additional, Karosienė, Jūratė, additional, Kasperovičienė, Jūratė, additional, Savadova, Ksenija, additional, Vitonytė, Irma, additional, Haande, Sigrid, additional, Skjelbred, Birger, additional, Grabowska, Magdalena, additional, Karpowicz, Maciej, additional, Chmura, Damian, additional, Nawrocka, Lidia, additional, Kobos, Justyna, additional, Mazur-Marzec, Hanna, additional, Alcaraz-Párraga, Pablo, additional, Wilk-Woźniak, Elżbieta, additional, Krztoń, Wojciech, additional, Walusiak, Edward, additional, Gagala, Ilona, additional, Mankiewicz-Boczek, Joana, additional, Toporowska, Magdalena, additional, Pawlik-Skowronska, Barbara, additional, Niedźwiecki, Michał, additional, Pęczuła, Wojciech, additional, Napiórkowska-Krzebietke, Agnieszka, additional, Dunalska, Julita, additional, Sieńska, Justyna, additional, Szymański, Daniel, additional, Kruk, Marek, additional, Budzyńska, Agnieszka, additional, Goldyn, Ryszard, additional, Kozak, Anna, additional, Rosińska, Joanna, additional, Szeląg-Wasielewska, Elżbieta, additional, Domek, Piotr, additional, Jakubowska-Krepska, Natalia, additional, Kwasizur, Kinga, additional, Messyasz, Beata, additional, Pełechata, Aleksandra, additional, Pełechaty, Mariusz, additional, Kokocinski, Mikolaj, additional, Madrecka, Beata, additional, Kostrzewska-Szlakowska, Iwona, additional, Frąk, Magdalena, additional, Bańkowska-Sobczak, Agnieszka, additional, Wasilewicz, Michał, additional, Ochocka, Agnieszka, additional, Pasztaleniec, Agnieszka, additional, Jasser, Iwona, additional, Antão-Geraldes, Ana M., additional, Leira, Manel, additional, Hernández, Armand, additional, Vasconcelos, Vitor, additional, Morais, João, additional, Vale, Micaela, additional, Raposeiro, Pedro M., additional, Gonçalves, Vítor, additional, Aleksovski, Boris, additional, Krstić, Svetislav, additional, Nemova, Hana, additional, Drastichova, Iveta, additional, Chomova, Lucia, additional, Remec-Rekar, Spela, additional, Elersek, Tina, additional, Delgado-Martín, Jordi, additional, García, David, additional, Cereijo, Jose Luís, additional, Gomà, Joan, additional, Trapote, Mari Carmen, additional, Vegas-Vilarrúbia, Teresa, additional, Obrador, Biel, additional, García-Murcia, Ana, additional, Real, Monserrat, additional, Romans, Elvira, additional, Noguero-Ribes, Jordi, additional, Duque, David Parreño, additional, Fernández-Morán, Elísabeth, additional, Úbeda, Bárbara, additional, Gálvez, José Ángel, additional, Marcé, Rafael, additional, Catalán, Núria, additional, Pérez-Martínez, Carmen, additional, Ramos-Rodríguez, Eloísa, additional, Cillero-Castro, Carmen, additional, Moreno-Ostos, Enrique, additional, Blanco, José María, additional, Rodríguez, Valeriano, additional, Montes-Pérez, Jorge Juan, additional, Palomino, Roberto L., additional, Rodríguez-Pérez, Estela, additional, Carballeira, Rafael, additional, Camacho, Antonio, additional, Picazo, Antonio, additional, Rochera, Carlos, additional, Santamans, Anna C., additional, Ferriol, Carmen, additional, Romo, Susana, additional, Soria, Juan Miguel, additional, Hansson, Lars-Anders, additional, Urrutia-Cordero, Pablo, additional, Özen, Arda, additional, Bravo, Andrea G., additional, Buck, Moritz, additional, Colom-Montero, William, additional, Mustonen, Kristiina, additional, Pierson, Don, additional, Yang, Yang, additional, M. H. Verspagen, Jolanda, additional, de Senerpont Domis, Lisette N., additional, Seelen, Laura, additional, Teurlincx, Sven, additional, Verstijnen, Yvon, additional, Lürling, Miquel, additional, Maliaka, Valentini, additional, Faassen, Elisabeth J., additional, Latour, Delphine, additional, Carey, Cayelan C., additional, W. Paerl, Hans, additional, Torokne, Andrea, additional, Karan, Tünay, additional, Demir, Nilsun, additional, Beklioğlu, Meryem, additional, Filiz, Nur, additional, E. Levi, Eti, additional, Iskin, Uğur, additional, Bezirci, Gizem, additional, Tavşanoğlu, Ülkü Nihan, additional, Çelik, Kemal, additional, Özhan, Koray, additional, Karakaya, Nusret, additional, Koçer, Mehmet Ali Turan, additional, Yilmaz, Mete, additional, Maraşlıoğlu, Faruk, additional, Fakioglu, Özden, additional, Soylu, Elif Neyran, additional, Yağcı, Meral Apaydın, additional, Çınar, Şakir, additional, Çapkın, Kadir, additional, Yağcı, Abdulkadir, additional, Cesur, Mehmet, additional, Bilgin, Fuat, additional, Bulut, Cafer, additional, Uysal, Rahmi, additional, Köker, Latife, additional, Akçaalan, Reyhan, additional, Albay, Meriç, additional, Alp, Mehmet Tahir, additional, Özkan, Korhan, additional, Sevindik, Tuğba Ongun, additional, Tunca, Hatice, additional, Önem, Burçin, additional, Richardson, Jessica, additional, Edwards, Christine, additional, Bergkemper, Victoria, additional, O'Leary, Sarah, additional, Beirne, Eilish, additional, Cromie, Hannah, additional, and Ibelings, Bastiaan W., additional
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- 2018
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32. Changes in Phytoplankton Structure due to Prematurely Limited Restoration Treatments
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Kozak, Anna, primary, Rosińska, Joanna, additional, and Gołdyn, Ryszard, additional
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- 2018
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33. Water quality response to sustainable restoration measures – Case study of urban Swarzędzkie Lake
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Rosińska, Joanna, primary, Kozak, Anna, additional, Dondajewska, Renata, additional, Kowalczewska-Madura, Katarzyna, additional, and Gołdyn, Ryszard, additional
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- 2018
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34. The biodegradation of microcystins in temperate freshwater bodies with previous cyanobacterial history
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Dziga, Dariusz, primary, Maksylewicz, Anna, additional, Maroszek, Magdalena, additional, Budzyńska, Agnieszka, additional, Napiorkowska-Krzebietke, Agnieszka, additional, Toporowska, Magdalena, additional, Grabowska, Magdalena, additional, Kozak, Anna, additional, Rosińska, Joanna, additional, and Meriluoto, Jussi, additional
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- 2017
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35. Patterns of macrophyte community recovery as a result of the restoration of a shallow urban lake
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Rosińska, Joanna, primary, Rybak, Michał, additional, and Gołdyn, Ryszard, additional
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- 2017
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36. Freud i nowoczesność
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Zofia Rosińska, Joanna Michalik, Przemysław Bursztyka and Zofia Rosińska, Joanna Michalik, Przemysław Bursztyka
- Abstract
'Być nowoczesnym to żyć życiem pełnym paradoksów i sprzeczności'- jest dobrym mottem dla antologii tekstów poświęconych interpretacjom psychoanalizy. Po pierwsze dlatego, że psychoanaliza pokazuje, że paradoksy i sprzeczności stanowią istotę psychiki człowieka i kultury. Po drugie dlatego, że sama w paradoksy i sprzeczności się wikła. Psychoanalizę charakteryzuje bowiem specyficzna pozycja na mapie myśli współczesnej. Pozycja wynikająca z rodowodu teorii Freuda - z jej aspiracji do modelu nauk przyrodniczych od początku splecionych z aspiracjami natury metafizycznej. Te drugie również nie są jednoznaczne. Wydają się dawać podstawy do traktowania Freuda jako naturalisty bądź antynaturalisty, jako dłużnika tradycyjnej metafizyki bądź jej burzyciela. Paradoksalność nie stanowi jednak stanu chorobowego, z którego teorię psychoanalityczną należałoby wyleczy? Przeciwnie, wskazuje na jej pojemność. Na jej zdolność do opisywania problemów i napić charakterystycznych dla nowoczesności i ponowoczesności, analizowanych również przez inne nurty równolegle do psychoanalizy bądź w nawiązaniach do niej. Paralele i nawiązania, jakie czytelnik odnajdzie w tej książce, krążą między innymi wokół tematów podmiotowości, cielesności, seksualności, ekonomii rodzinnej, zwierzęcości, urzeczowienia, fetyszyzacji i estetyzacji. W ich ujmowaniu psychoanaliza podąża często w parze z marksizmem, hermeneutyką, fenomenologią, dekonstrukcją, feminizmem.
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- 2009
37. EKOSYSTEMY WODNE: funkcjonowanie, znaczenie, ochrona i rekultywacja
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Budzyńska, Agnieszka, Dondajewska-Pielka, Renata, Rosińska, Joanna, Kozak, Anna, and Kowalczewska-Madura, Katarzyna
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zooplankton ,interfaza osad–woda ,makroglony ,drobne zbiorniki wodne ,zrównoważona rekultywacja ,staw ,ochrona i rekultywacja jezior ,jeziora lobeliowe ,toksyczne zakwity sinic ,makrofity ,inaktywacja fosforu ,fitoplankton - Abstract
W monografii zebrano jedenaście artykułów dotyczących zagadnień hydrobiologicznych, m.in. badań prowadzonych na jeziorach lobeliowych, nadmiernej eutrofizacji jezior oraz ich rekultywacji i odpowiedzi ekosystemu na prowadzone zabiegi. Odniesiono się do problemu toksycznych zakwitów sinicowych, skłaniających do podejmowania działań rekultywacyjnych. Omówione zostały założenia teoretyczne inaktywacji fosforu w jeziorach wraz z praktycznymi wskazówkami bezpiecznego dla ekosystemu stosowania takiej metody poprawy jakości wód. Szczególną uwagę zwrócono na zbiorowiska organizmów planktonowych (fitoplankton i zooplankton) oraz makrofity i makroglony. Ważnym aspektem monografii jest także funkcjonowanie drobnych zbiorników wodnych oraz ich wykorzystanie jako obiektów dydaktycznych. Wydanie monografii zostało sfinansowane ze środków Dziekana Wydziału Biologii Uniwersytetu im. Adama Mickiewicza w Poznaniu oraz Rektora Uniwersytetu im. Adama Mickiewicza w Poznaniu.
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- 2019
38. Temperature Effects Explain Continental Scale Distribution of Cyanobacterial Toxins.
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Mantzouki E, Lürling M, Fastner J, de Senerpont Domis L, Wilk-Woźniak E, Koreivienė J, Seelen L, Teurlincx S, Verstijnen Y, Krztoń W, Walusiak E, Karosienė J, Kasperovičienė J, Savadova K, Vitonytė I, Cillero-Castro C, Budzyńska A, Goldyn R, Kozak A, Rosińska J, Szeląg-Wasielewska E, Domek P, Jakubowska-Krepska N, Kwasizur K, Messyasz B, Pełechaty A, Pełechaty M, Kokocinski M, García-Murcia A, Real M, Romans E, Noguero-Ribes J, Duque DP, Fernández-Morán E, Karakaya N, Häggqvist K, Demir N, Beklioğlu M, Filiz N, Levi EE, Iskin U, Bezirci G, Tavşanoğlu ÜN, Özhan K, Gkelis S, Panou M, Fakioglu Ö, Avagianos C, Kaloudis T, Çelik K, Yilmaz M, Marcé R, Catalán N, Bravo AG, Buck M, Colom-Montero W, Mustonen K, Pierson D, Yang Y, Raposeiro PM, Gonçalves V, Antoniou MG, Tsiarta N, McCarthy V, Perello VC, Feldmann T, Laas A, Panksep K, Tuvikene L, Gagala I, Mankiewicz-Boczek J, Yağcı MA, Çınar Ş, Çapkın K, Yağcı A, Cesur M, Bilgin F, Bulut C, Uysal R, Obertegger U, Boscaini A, Flaim G, Salmaso N, Cerasino L, Richardson J, Visser PM, Verspagen JMH, Karan T, Soylu EN, Maraşlıoğlu F, Napiórkowska-Krzebietke A, Ochocka A, Pasztaleniec A, Antão-Geraldes AM, Vasconcelos V, Morais J, Vale M, Köker L, Akçaalan R, Albay M, Špoljarić Maronić D, Stević F, Žuna Pfeiffer T, Fonvielle J, Straile D, Rothhaupt KO, Hansson LA, Urrutia-Cordero P, Bláha L, Geriš R, Fránková M, Koçer MAT, Alp MT, Remec-Rekar S, Elersek T, Triantis T, Zervou SK, Hiskia A, Haande S, Skjelbred B, Madrecka B, Nemova H, Drastichova I, Chomova L, Edwards C, Sevindik TO, Tunca H, Önem B, Aleksovski B, Krstić S, Vucelić IB, Nawrocka L, Salmi P, Machado-Vieira D, de Oliveira AG, Delgado-Martín J, García D, Cereijo JL, Gomà J, Trapote MC, Vegas-Vilarrúbia T, Obrador B, Grabowska M, Karpowicz M, Chmura D, Úbeda B, Gálvez JÁ, Özen A, Christoffersen KS, Warming TP, Kobos J, Mazur-Marzec H, Pérez-Martínez C, Ramos-Rodríguez E, Arvola L, Alcaraz-Párraga P, Toporowska M, Pawlik-Skowronska B, Niedźwiecki M, Pęczuła W, Leira M, Hernández A, Moreno-Ostos E, Blanco JM, Rodríguez V, Montes-Pérez JJ, Palomino RL, Rodríguez-Pérez E, Carballeira R, Camacho A, Picazo A, Rochera C, Santamans AC, Ferriol C, Romo S, Soria JM, Dunalska J, Sieńska J, Szymański D, Kruk M, Kostrzewska-Szlakowska I, Jasser I, Žutinić P, Gligora Udovič M, Plenković-Moraj A, Frąk M, Bańkowska-Sobczak A, Wasilewicz M, Özkan K, Maliaka V, Kangro K, Grossart HP, Paerl HW, Carey CC, and Ibelings BW
- Subjects
- Alkaloids, Climate Change, Cyanobacteria Toxins, Environmental Monitoring, Europe, Temperature, Uracil analysis, Bacterial Toxins analysis, Cyanobacteria, Lakes microbiology, Microcystins analysis, Tropanes analysis, Uracil analogs & derivatives, Water Pollutants analysis
- Abstract
Insight into how environmental change determines the production and distribution of cyanobacterial toxins is necessary for risk assessment. Management guidelines currently focus on hepatotoxins (microcystins). Increasing attention is given to other classes, such as neurotoxins (e.g., anatoxin-a) and cytotoxins (e.g., cylindrospermopsin) due to their potency. Most studies examine the relationship between individual toxin variants and environmental factors, such as nutrients, temperature and light. In summer 2015, we collected samples across Europe to investigate the effect of nutrient and temperature gradients on the variability of toxin production at a continental scale. Direct and indirect effects of temperature were the main drivers of the spatial distribution in the toxins produced by the cyanobacterial community, the toxin concentrations and toxin quota. Generalized linear models showed that a Toxin Diversity Index (TDI) increased with latitude, while it decreased with water stability. Increases in TDI were explained through a significant increase in toxin variants such as MC-YR, anatoxin and cylindrospermopsin, accompanied by a decreasing presence of MC-LR. While global warming continues, the direct and indirect effects of increased lake temperatures will drive changes in the distribution of cyanobacterial toxins in Europe, potentially promoting selection of a few highly toxic species or strains., Competing Interests: The authors declare no conflict of interest.
- Published
- 2018
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