347 results on '"Wincker P"'
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2. Author Correction: The European Reference Genome Atlas: piloting a decentralised approach to equitable biodiversity genomics
- Author
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Mc Cartney, Ann M., Formenti, Giulio, Mouton, Alice, De Panis, Diego, Marins, Luísa S., Leitão, Henrique G., Diedericks, Genevieve, Kirangwa, Joseph, Morselli, Marco, Salces-Ortiz, Judit, Escudero, Nuria, Iannucci, Alessio, Natali, Chiara, Svardal, Hannes, Fernández, Rosa, De Pooter, Tim, Joris, Geert, Strazisar, Mojca, Wood, Jonathan M. D., Herron, Katie E., Seehausen, Ole, Watts, Phillip C., Shaw, Felix, Davey, Robert P., Minotto, Alice, Fernández, José M., Böhne, Astrid, Alegria, Carla, Alioto, Tyler, Alves, Paulo C., Amorim, Isabel R., Aury, Jean-Marc, Backstrom, Niclas, Baldrian, Petr, Baltrunaite, Laima, Barta, Endre, BedHom, Bertrand, Belser, Caroline, Bergsten, Johannes, Bertrand, Laurie, Bilandija, Helena, Binzer-Panchal, Mahesh, Bista, Iliana, Blaxter, Mark, Borges, Paulo A. V., Dias, Guilherme Borges, Bosse, Mirte, Brown, Tom, Bruggmann, Rémy, Buena-Atienza, Elena, Burgin, Josephine, Buzan, Elena, Cariani, Alessia, Casadei, Nicolas, Chiara, Matteo, Chozas, Sergio, Čiampor, Jr., Fedor, Crottini, Angelica, Cruaud, Corinne, Cruz, Fernando, Dalen, Love, De Biase, Alessio, del Campo, Javier, Delic, Teo, Dennis, Alice B., Derks, Martijn F. L., Diroma, Maria Angela, Djan, Mihajla, Duprat, Simone, Eleftheriadi, Klara, Feulner, Philine G. D., Flot, Jean-François, Forni, Giobbe, Fosso, Bruno, Fournier, Pascal, Fournier-Chambrillon, Christine, Gabaldon, Toni, Garg, Shilpa, Gissi, Carmela, Giupponi, Luca, Gomez-Garrido, Jessica, González, Josefa, Grilo, Miguel L., Grüning, Björn, Guerin, Thomas, Guiglielmoni, Nadege, Gut, Marta, Haesler, Marcel P., Hahn, Christoph, Halpern, Balint, Harrison, Peter W., Heintz, Julia, Hindrikson, Maris, Höglund, Jacob, Howe, Kerstin, Hughes, Graham M., Istace, Benjamin, Cock, Mark J., Janžekovič, Franc, Jonsson, Zophonias O., Joye-Dind, Sagane, Koskimäki, Janne J., Krystufek, Boris, Kubacka, Justyna, Kuhl, Heiner, Kusza, Szilvia, Labadie, Karine, Lähteenaro, Meri, Lantz, Henrik, Lavrinienko, Anton, Leclère, Lucas, Lopes, Ricardo Jorge, Madsen, Ole, Magdelenat, Ghislaine, Magoga, Giulia, Manousaki, Tereza, Mappes, Tapio, Marques, Joao Pedro, Redondo, Gemma I. Martinez, Maumus, Florian, McCarthy, Shane A., Megens, Hendrik-Jan, Melo-Ferreira, Jose, Mendes, Sofia L., Montagna, Matteo, Moreno, Joao, Mosbech, Mai-Britt, Moura, Mónica, Musilova, Zuzana, Myers, Eugene, Nash, Will J., Nater, Alexander, Nicholson, Pamela, Niell, Manuel, Nijland, Reindert, Noel, Benjamin, Noren, Karin, Oliveira, Pedro H., Olsen, Remi-Andre, Ometto, Lino, Oomen, Rebekah A., Ossowski, Stephan, Palinauskas, Vaidas, Palsson, Snaebjorn, Panibe, Jerome P., Pauperio, Joana, Pavlek, Martina, Payen, Emilie, Pawlowska, Julia, Pellicer, Jaume, Pesole, Graziano, Pimenta, Joao, Pippel, Martin, Pirttilä, Anna Maria, Poulakakis, Nikos, Rajan, Jeena, M.C. Rego, Rúben, Resendes, Roberto, Resl, Philipp, Riesgo, Ana, Rodin-Morch, Patrik, Soares, Andre E. R., Fernandes, Carlos Rodriguez, Romeiras, Maria M., Roxo, Guilherme, Rüber, Lukas, Ruiz-Lopez, Maria Jose, Saarma, Urmas, da Silva, Luis P., Sim-Sim, Manuela, Soler, Lucile, Sousa, Vitor C., Santos, Carla Sousa, Spada, Alberto, Stefanovic, Milomir, Steger, Viktor, Stiller, Josefin, Stöck, Matthias, Struck, Torsten H., Sudasinghe, Hiranya, Tapanainen, Riikka, Tellgren-Roth, Christian, Trindade, Helena, Tukalenko, Yevhen, Urso, Ilenia, Vacherie, Benoit, Van Belleghem, Steven M., Van Oers, Kees, Vargas-Chavez, Carlos, Velickovic, Nevena, Vella, Noel, Vella, Adriana, Vernesi, Cristiano, Vicente, Sara, Villa, Sara, Pettersson, Olga Vinnere, Volckaert, Filip A. M., Voros, Judit, Wincker, Patrick, Winkler, Sylke, Ciofi, Claudio, Waterhouse, Robert M., and Mazzoni, Camila J.
- Published
- 2024
- Full Text
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3. The European Reference Genome Atlas: piloting a decentralised approach to equitable biodiversity genomics
- Author
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Mc Cartney, Ann M., Formenti, Giulio, Mouton, Alice, De Panis, Diego, Marins, Luísa S., Leitão, Henrique G., Diedericks, Genevieve, Kirangwa, Joseph, Morselli, Marco, Salces-Ortiz, Judit, Escudero, Nuria, Iannucci, Alessio, Natali, Chiara, Svardal, Hannes, Fernández, Rosa, De Pooter, Tim, Joris, Geert, Strazisar, Mojca, Wood, Jonathan M. D., Herron, Katie E., Seehausen, Ole, Watts, Phillip C., Shaw, Felix, Davey, Robert P., Minotto, Alice, Fernández, José M., Böhne, Astrid, Alegria, Carla, Alioto, Tyler, Alves, Paulo C., Amorim, Isabel R., Aury, Jean-Marc, Backstrom, Niclas, Baldrian, Petr, Baltrunaite, Laima, Barta, Endre, BedHom, Bertrand, Belser, Caroline, Bergsten, Johannes, Bertrand, Laurie, Bilandija, Helena, Binzer-Panchal, Mahesh, Bista, Iliana, Blaxter, Mark, Borges, Paulo A. V., Dias, Guilherme Borges, Bosse, Mirte, Brown, Tom, Bruggmann, Rémy, Buena-Atienza, Elena, Burgin, Josephine, Buzan, Elena, Cariani, Alessia, Casadei, Nicolas, Chiara, Matteo, Chozas, Sergio, Čiampor, Jr., Fedor, Crottini, Angelica, Cruaud, Corinne, Cruz, Fernando, Dalen, Love, De Biase, Alessio, del Campo, Javier, Delic, Teo, Dennis, Alice B., Derks, Martijn F. L., Diroma, Maria Angela, Djan, Mihajla, Duprat, Simone, Eleftheriadi, Klara, Feulner, Philine G. D., Flot, Jean-François, Forni, Giobbe, Fosso, Bruno, Fournier, Pascal, Fournier-Chambrillon, Christine, Gabaldon, Toni, Garg, Shilpa, Gissi, Carmela, Giupponi, Luca, Gomez-Garrido, Jessica, González, Josefa, Grilo, Miguel L., Grüning, Björn, Guerin, Thomas, Guiglielmoni, Nadege, Gut, Marta, Haesler, Marcel P., Hahn, Christoph, Halpern, Balint, Harrison, Peter W., Heintz, Julia, Hindrikson, Maris, Höglund, Jacob, Howe, Kerstin, Hughes, Graham M., Istace, Benjamin, Cock, Mark J., Janžekovič, Franc, Jonsson, Zophonias O., Joye-Dind, Sagane, Koskimäki, Janne J., Krystufek, Boris, Kubacka, Justyna, Kuhl, Heiner, Kusza, Szilvia, Labadie, Karine, Lähteenaro, Meri, Lantz, Henrik, Lavrinienko, Anton, Leclère, Lucas, Lopes, Ricardo Jorge, Madsen, Ole, Magdelenat, Ghislaine, Magoga, Giulia, Manousaki, Tereza, Mappes, Tapio, Marques, Joao Pedro, Redondo, Gemma I. Martinez, Maumus, Florian, McCarthy, Shane A., Megens, Hendrik-Jan, Melo-Ferreira, Jose, Mendes, Sofia L., Montagna, Matteo, Moreno, Joao, Mosbech, Mai-Britt, Moura, Mónica, Musilova, Zuzana, Myers, Eugene, Nash, Will J., Nater, Alexander, Nicholson, Pamela, Niell, Manuel, Nijland, Reindert, Noel, Benjamin, Noren, Karin, Oliveira, Pedro H., Olsen, Remi-Andre, Ometto, Lino, Oomen, Rebekah A., Ossowski, Stephan, Palinauskas, Vaidas, Palsson, Snaebjorn, Panibe, Jerome P., Pauperio, Joana, Pavlek, Martina, Payen, Emilie, Pawlowska, Julia, Pellicer, Jaume, Pesole, Graziano, Pimenta, Joao, Pippel, Martin, Pirttilä, Anna Maria, Poulakakis, Nikos, Rajan, Jeena, M.C. Rego, Rúben, Resendes, Roberto, Resl, Philipp, Riesgo, Ana, Rodin-Morch, Patrik, Soares, Andre E. R., Fernandes, Carlos Rodriguez, Romeiras, Maria M., Roxo, Guilherme, Rüber, Lukas, Ruiz-Lopez, Maria Jose, Saarma, Urmas, da Silva, Luis P., Sim-Sim, Manuela, Soler, Lucile, Sousa, Vitor C., Santos, Carla Sousa, Spada, Alberto, Stefanovic, Milomir, Steger, Viktor, Stiller, Josefin, Stöck, Matthias, Struck, Torsten H., Sudasinghe, Hiranya, Tapanainen, Riikka, Tellgren-Roth, Christian, Trindade, Helena, Tukalenko, Yevhen, Urso, Ilenia, Vacherie, Benoit, Van Belleghem, Steven M., Van Oers, Kees, Vargas-Chavez, Carlos, Velickovic, Nevena, Vella, Noel, Vella, Adriana, Vernesi, Cristiano, Vicente, Sara, Villa, Sara, Pettersson, Olga Vinnere, Volckaert, Filip A. M., Voros, Judit, Wincker, Patrick, Winkler, Sylke, Ciofi, Claudio, Waterhouse, Robert M., and Mazzoni, Camila J.
- Published
- 2024
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4. The NEREA Augmented Observatory: an integrative approach to marine coastal ecology
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Campese, Lucia, Russo, Luca, Abagnale, Maria, Alberti, Adriana, Bachi, Giancarlo, Balestra, Cecilia, Bellardini, Daniele, Buondonno, Angela, Cardini, Ulisse, Carotenuto, Ylenia, Checcucci, Giovanni, Chiusano, Maria Luisa, D’Ambra, Isabella, d’Ippolito, Giuliana, Di Capua, Iole, Donnarumma, Vincenzo, Fontana, Angelo, Furia, Marta, Galarza-Verkovitch, Denisse, Gallia, Roberto, Labadie, Karine, Leone, Serena, Licandro, Priscilla, Longo, Antonio, Maselli, Maira, Merquiol, Louise, Murano, Carola, Oliveira, Pedro H., Passarelli, Augusto, Percopo, Isabella, Perdereau, Aude, Piredda, Roberta, Raffini, Francesca, Roncalli, Vittoria, Ruscheweyh, Hans-Joachim, Russo, Ennio, Saggiomo, Maria, Santinelli, Chiara, Sarno, Diana, Sunagawa, Shinichi, Tramontano, Ferdinando, Trano, Anna Chiara, Uttieri, Marco, Wincker, Patrick, Zampicinini, Gianpaolo, Casotti, Raffaella, Conversano, Fabio, D’Alelio, Domenico, Iudicone, Daniele, Margiotta, Francesca, and Montresor, Marina
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- 2024
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5. Widespread horse-based mobility arose around 2200 bce in Eurasia
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Librado, Pablo, Tressières, Gaetan, Chauvey, Lorelei, Fages, Antoine, Khan, Naveed, Schiavinato, Stéphanie, Calvière-Tonasso, Laure, Kusliy, Mariya A., Gaunitz, Charleen, Liu, Xuexue, Wagner, Stefanie, Der Sarkissian, Clio, Seguin-Orlando, Andaine, Perdereau, Aude, Aury, Jean-Marc, Southon, John, Shapiro, Beth, Bouchez, Olivier, Donnadieu, Cécile, Collin, Yvette Running Horse, Gregersen, Kristian M., Jessen, Mads Dengsø, Christensen, Kirsten, Claudi-Hansen, Lone, Pruvost, Mélanie, Pucher, Erich, Vulic, Hrvoje, Novak, Mario, Rimpf, Andrea, Turk, Peter, Reiter, Simone, Brem, Gottfried, Schwall, Christoph, Barrey, Éric, Robert, Céline, Degueurce, Christophe, Horwitz, Liora Kolska, Klassen, Lutz, Rasmussen, Uffe, Kveiborg, Jacob, Johannsen, Niels Nørkjær, Makowiecki, Daniel, Makarowicz, Przemysław, Szeliga, Marcin, Ilchyshyn, Vasyl, Rud, Vitalii, Romaniszyn, Jan, Mullin, Victoria E., Verdugo, Marta, Bradley, Daniel G., Cardoso, João L., Valente, Maria J., Telles Antunes, Miguel, Ameen, Carly, Thomas, Richard, Ludwig, Arne, Marzullo, Matilde, Prato, Ornella, Bagnasco Gianni, Giovanna, Tecchiati, Umberto, Granado, José, Schlumbaum, Angela, Deschler-Erb, Sabine, Mráz, Monika Schernig, Boulbes, Nicolas, Gardeisen, Armelle, Mayer, Christian, Döhle, Hans-Jürgen, Vicze, Magdolna, Kosintsev, Pavel A., Kyselý, René, Peške, Lubomír, O’Connor, Terry, Ananyevskaya, Elina, Shevnina, Irina, Logvin, Andrey, Kovalev, Alexey A., Iderkhangai, Tumur-Ochir, Sablin, Mikhail V., Dashkovskiy, Petr K., Graphodatsky, Alexander S., Merts, Ilia, Merts, Viktor, Kasparov, Aleksei K., Pitulko, Vladimir V., Onar, Vedat, Öztan, Aliye, Arbuckle, Benjamin S., McColl, Hugh, Renaud, Gabriel, Khaskhanov, Ruslan, Demidenko, Sergey, Kadieva, Anna, Atabiev, Biyaslan, Sundqvist, Marie, Lindgren, Gabriella, López-Cachero, F. Javier, Albizuri, Silvia, Trbojević Vukičević, Tajana, Rapan Papeša, Anita, Burić, Marcel, Rajić Šikanjić, Petra, Weinstock, Jaco, Asensio Vilaró, David, Codina, Ferran, García Dalmau, Cristina, Morer de Llorens, Jordi, Pou, Josep, de Prado, Gabriel, Sanmartí, Joan, Kallala, Nabil, Torres, Joan Ramon, Maraoui-Telmini, Bouthéina, Belarte Franco, Maria-Carme, Valenzuela-Lamas, Silvia, Zazzo, Antoine, Lepetz, Sébastien, Duchesne, Sylvie, Alexeev, Anatoly, Bayarsaikhan, Jamsranjav, Houle, Jean-Luc, Bayarkhuu, Noost, Turbat, Tsagaan, Crubézy, Éric, Shingiray, Irina, Mashkour, Marjan, Berezina, Natalia Ya., Korobov, Dmitriy S., Belinskiy, Andrey, Kalmykov, Alexey, Demoule, Jean-Paul, Reinhold, Sabine, Hansen, Svend, Wallner, Barbara, Roslyakova, Natalia, Kuznetsov, Pavel F., Tishkin, Alexey A., Wincker, Patrick, Kanne, Katherine, Outram, Alan, and Orlando, Ludovic
- Published
- 2024
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6. Convergent evolution and horizontal gene transfer in Arctic Ocean microalgae
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Dorrell, Richard G, Kuo, Alan, Füssy, Zoltan, Richardson, Elisabeth H, Salamov, Asaf, Zarevski, Nikola, Freyria, Nastasia J, Ibarbalz, Federico M, Jenkins, Jerry, Karlusich, Juan Jose Pierella, Steindorff, Andrei Stecca, Edgar, Robyn E, Handley, Lori, Lail, Kathleen, Lipzen, Anna, Lombard, Vincent, McFarlane, John, Nef, Charlotte, Vanclová, Anna MG Novák, Peng, Yi, Plott, Chris, Potvin, Marianne, Vieira, Fabio Rocha Jimenez, Barry, Kerrie, de Vargas, Colomban, Henrissat, Bernard, Pelletier, Eric, Schmutz, Jeremy, Wincker, Patrick, Dacks, Joel B, Bowler, Chris, Grigoriev, Igor V, and Lovejoy, Connie
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Life Below Water ,Gene Transfer ,Horizontal ,Microalgae ,Arctic Regions ,Oceans and Seas ,Ice Cover ,Bacteria - Abstract
Microbial communities in the world ocean are affected strongly by oceanic circulation, creating characteristic marine biomes. The high connectivity of most of the ocean makes it difficult to disentangle selective retention of colonizing genotypes (with traits suited to biome specific conditions) from evolutionary selection, which would act on founder genotypes over time. The Arctic Ocean is exceptional with limited exchange with other oceans and ice covered since the last ice age. To test whether Arctic microalgal lineages evolved apart from algae in the global ocean, we sequenced four lineages of microalgae isolated from Arctic waters and sea ice. Here we show convergent evolution and highlight geographically limited HGT as an ecological adaptive force in the form of PFAM complements and horizontal acquisition of key adaptive genes. Notably, ice-binding proteins were acquired and horizontally transferred among Arctic strains. A comparison with Tara Oceans metagenomes and metatranscriptomes confirmed mostly Arctic distributions of these IBPs. The phylogeny of Arctic-specific genes indicated that these events were independent of bacterial-sourced HGTs in Antarctic Southern Ocean microalgae.
- Published
- 2023
7. Integrative omics framework for characterization of coral reef ecosystems from the Tara Pacific expedition
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Belser, Caroline, Poulain, Julie, Labadie, Karine, Gavory, Frederick, Alberti, Adriana, Guy, Julie, Carradec, Quentin, Cruaud, Corinne, da Silva, Corinne, Engelen, Stefan, Mielle, Paul, Perdereau, Aude, Samson, Gaelle, Gaz, Shahinaz, Team, Genoscope Technical, Voolstra, Christian R, Galand, Pierre E, Flores, J. Michel, Hume, Benjamin Cc, Perna, Gabriela, Ziegler, Maren, Ruscheweyh, Hans-Joachim, Boissin, Emilie, Romac, Sarah, Bourdin, Guillaume, Iwankow, Guillaume, Moulin, Clémentine, García, David A Paz, Coordinators, Tara Pacific Consortium, Scarpelli, Claude, Jacoby, E Krame, Oliveira, Pedro H, Aury, Jean-Marc, Allemand, Denis, Planes, Serge, and Wincker, Patrick
- Subjects
Quantitative Biology - Quantitative Methods - Abstract
Coral reef science is a fast-growing field propelled by the need to better understand coral health and resilience to devise strategies to slow reef loss resulting from environmental stresses. Key to coral resilience are the symbiotic interactions established within a complex holobiont, i.e. the multipartite assemblages comprising the host coral organism, endosymbiotic dinoflagellates, bacteria, archaea, fungi, and viruses. Tara Pacific is an ambitious project built upon the experience of previous Tara Oceans expeditions, and leveraging state-of-the-art sequencing technologies and analyses to dissect the biodiversity and biocomplexity of the coral holobiont screened across most archipelagos spread throughout the entire Pacific Ocean. Here we detail the Tara Pacific workflow for multi-omics data generation, from sample handling to nucleotide sequence data generation and deposition. This unique multidimensional framework also includes a large amount of concomitant metadata collected side-by-side that provide new assessments of coral reef biodiversity including micro-biodiversity and shape future investigations of coral reef dynamics and their fate in the Anthropocene.
- Published
- 2022
8. Differential global distribution of marine picocyanobacteria gene clusters reveals distinct niche-related adaptive strategies
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Doré, Hugo, Guyet, Ulysse, Leconte, Jade, Farrant, Gregory K., Alric, Benjamin, Ratin, Morgane, Ostrowski, Martin, Ferrieux, Mathilde, Brillet-Guéguen, Loraine, Hoebeke, Mark, Siltanen, Jukka, Le Corguillé, Gildas, Corre, Erwan, Wincker, Patrick, Scanlan, David J., Eveillard, Damien, Partensky, Frédéric, and Garczarek, Laurence
- Published
- 2023
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9. Distribution and genomic variation of ammonia-oxidizing archaea in abyssal and hadal surface sediments
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Trouche, Blandine, Schauberger, Clemens, Bouderka, Feriel, Auguet, Jean-Christophe, Belser, Caroline, Poulain, Julie, Thamdrup, Bo, Wincker, Patrick, Arnaud-Haond, Sophie, Glud, Ronnie N., and Maignien, Loïs
- Published
- 2023
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10. Ocean-wide comparisons of mesopelagic planktonic community structures
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Rigonato, Janaina, Budinich, Marko, Murillo, Alejandro A., Brandão, Manoela C., Pierella Karlusich, Juan J., Soviadan, Yawouvi Dodji, Gregory, Ann C., Endo, Hisashi, Kokoszka, Florian, Vik, Dean, Henry, Nicolas, Frémont, Paul, Labadie, Karine, Zayed, Ahmed A., Dimier, Céline, Picheral, Marc, Searson, Sarah, Poulain, Julie, Kandels, Stefanie, Pesant, Stéphane, Karsenti, Eric, Bork, Peer, Bowler, Chris, de Vargas, Colomban, Eveillard, Damien, Gehlen, Marion, Iudicone, Daniele, Lombard, Fabien, Ogata, Hiroyuki, Stemmann, Lars, Sullivan, Matthew B., Sunagawa, Shinichi, Wincker, Patrick, Chaffron, Samuel, and Jaillon, Olivier
- Published
- 2023
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11. Multi-omics determination of metabolome diversity in natural coral populations in the Pacific Ocean
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Reddy, Maggie M., Goossens, Corentine, Zhou, Yuxiang, Chaib, Slimane, Raviglione, Delphine, Nicolè, Florence, Hume, Benjamin C. C., Forcioli, Didier, Agostini, Sylvain, Boissin, Emilie, Boss, Emmanuel, Bowler, Chris, de Vargas, Colomban, Douville, Eric, Flores, Michel, Furla, Paola, Galand, Pierre E., Gilson, Eric, Lombard, Fabien, Pesant, Stéphane, Reynaud, Stéphanie, Sullivan, Matthew B., Sunagawa, Shinichi, Troublé, Romain, Thurber, Rebecca Vega, Wincker, Patrick, Zoccola, Didier, Voolstra, Christian R., Allemand, Denis, Planes, Serge, Thomas, Olivier P., and Banaigs, Bernard
- Published
- 2023
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12. Predicting global distributions of eukaryotic plankton communities from satellite data
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Kaneko, Hiroto, Endo, Hisashi, Henry, Nicolas, Berney, Cédric, Mahé, Frédéric, Poulain, Julie, Labadie, Karine, Beluche, Odette, El Hourany, Roy, Chaffron, Samuel, Wincker, Patrick, Nakamura, Ryosuke, Karp-Boss, Lee, Boss, Emmanuel, Bowler, Chris, de Vargas, Colomban, Tomii, Kentaro, and Ogata, Hiroyuki
- Published
- 2023
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13. Different environmental response strategies in sympatric corals from Pacific Islands
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Porro, Barbara, Zamoum, Thamilla, Forcioli, Didier, Gilson, Eric, Poquet, Adrien, Di Franco, Eugenio, Barnay-Verdier, Stéphanie, Lombard, Fabien, Voolstra, Christian R., Hume, Benjamin C. C., Galand, Pierre E., Moulin, Clémentine, Boissin, Emilie, Bourdin, Guillaume, Iwankow, Guillaume, Poulain, Julie, Romac, Sarah, Agostini, Sylvain, Banaigs, Bernard, Boss, Emmanuel, Bowler, Chris, de Vargas, Colomban, Douville, Eric, Flores, Michel, Pesant, Stéphane, Reynaud, Stéphanie, Sullivan, Matthew B., Sunagawa, Shinichi, Thomas, Olivier P., Troublé, Romain, Thurber, Rebecca Vega, Wincker, Patrick, Zoccola, Didier, Planes, Serge, Allemand, Denis, Röttinger, Eric, and Furla, Paola
- Published
- 2023
- Full Text
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14. Top abundant deep ocean heterotrophic bacteria can be retrieved by cultivation
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Sanz-Sáez, Isabel, Sánchez, Pablo, Salazar, Guillem, Sunagawa, Shinichi, de Vargas, Colomban, Bowler, Chris, Sullivan, Matthew B., Wincker, Patrick, Karsenti, Eric, Pedrós-Alió, Carlos, Agustí, Susana, Gojobori, Takashi, Duarte, Carlos M., Gasol, Josep M., Sánchez, Olga, and Acinas, Silvia G.
- Published
- 2023
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15. Differences in carbonate chemistry up-regulation of long-lived reef-building corals
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Canesi, Marine, Douville, Eric, Montagna, Paolo, Taviani, Marco, Stolarski, Jarosław, Bordier, Louise, Dapoigny, Arnaud, Coulibaly, Gninwoyo Eric Hermann, Simon, Anne-Catherine, Agelou, Mathieu, Fin, Jonathan, Metzl, Nicolas, Iwankow, Guillaume, Allemand, Denis, Planes, Serge, Moulin, Clémentine, Lombard, Fabien, Bourdin, Guillaume, Troublé, Romain, Agostini, Sylvain, Banaigs, Bernard, Boissin, Emilie, Boss, Emmanuel, Bowler, Chris, de Vargas, Colomban, Flores, Michel, Forcioli, Didier, Furla, Paola, Gilson, Eric, Galand, Pierre E., Pesant, Stéphane, Sunagawa, Shinichi, Thomas, Olivier P., Vega Thurber, Rebecca, Voolstra, Christian R., Wincker, Patrick, Zoccola, Didier, and Reynaud, Stéphanie
- Published
- 2023
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16. Mirusviruses link herpesviruses to giant viruses
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Gaïa, Morgan, Meng, Lingjie, Pelletier, Eric, Forterre, Patrick, Vanni, Chiara, Fernandez-Guerra, Antonio, Jaillon, Olivier, Wincker, Patrick, Ogata, Hiroyuki, Krupovic, Mart, and Delmont, Tom O.
- Published
- 2023
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17. Gene Expression Changes and Community Turnover Differentially Shape the Global Ocean Metatranscriptome
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Salazar, Guillem, Paoli, Lucas, Alberti, Adriana, Huerta-Cepas, Jaime, Ruscheweyh, Hans-Joachim, Cuenca, Miguelangel, Field, Christopher M, Coelho, Luis Pedro, Cruaud, Corinne, Engelen, Stefan, Gregory, Ann C, Labadie, Karine, Marec, Claudie, Pelletier, Eric, Royo-Llonch, Marta, Roux, Simon, Sánchez, Pablo, Uehara, Hideya, Zayed, Ahmed A, Zeller, Georg, Carmichael, Margaux, Dimier, Céline, Ferland, Joannie, Kandels, Stefanie, Picheral, Marc, Pisarev, Sergey, Poulain, Julie, Coordinators, Tara Oceans, Acinas, Silvia G, Babin, Marcel, Bork, Peer, Boss, Emmanuel, Bowler, Chris, Cochrane, Guy, de Vargas, Colomban, Follows, Michael, Gorsky, Gabriel, Grimsley, Nigel, Guidi, Lionel, Hingamp, Pascal, Iudicone, Daniele, Jaillon, Olivier, Kandels-Lewis, Stefanie, Karp-Boss, Lee, Karsenti, Eric, Not, Fabrice, Ogata, Hiroyuki, Pesant, Stephane, Poulton, Nicole, Raes, Jeroen, Sardet, Christian, Speich, Sabrina, Stemmann, Lars, Sullivan, Matthew B, Sunagawa, Shinichi, and Wincker, Patrick
- Subjects
Genetics ,Climate Action ,Gene Expression Regulation ,Geography ,Metagenome ,Microbiota ,Molecular Sequence Annotation ,Oceans and Seas ,RNA ,Messenger ,Seawater ,Temperature ,Transcriptome ,Tara Oceans Coordinators ,Tara Oceans ,biogeochemistry ,community turnover ,eco-systems biology ,gene expression change ,global ocean microbiome ,metagenome ,metatranscriptome ,microbial ecology ,ocean warming ,Biological Sciences ,Medical and Health Sciences ,Developmental Biology - Abstract
Ocean microbial communities strongly influence the biogeochemistry, food webs, and climate of our planet. Despite recent advances in understanding their taxonomic and genomic compositions, little is known about how their transcriptomes vary globally. Here, we present a dataset of 187 metatranscriptomes and 370 metagenomes from 126 globally distributed sampling stations and establish a resource of 47 million genes to study community-level transcriptomes across depth layers from pole-to-pole. We examine gene expression changes and community turnover as the underlying mechanisms shaping community transcriptomes along these axes of environmental variation and show how their individual contributions differ for multiple biogeochemically relevant processes. Furthermore, we find the relative contribution of gene expression changes to be significantly lower in polar than in non-polar waters and hypothesize that in polar regions, alterations in community activity in response to ocean warming will be driven more strongly by changes in organismal composition than by gene regulatory mechanisms. VIDEO ABSTRACT.
- Published
- 2019
18. Marine DNA Viral Macro- and Microdiversity from Pole to Pole
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Gregory, Ann C, Zayed, Ahmed A, Conceição-Neto, Nádia, Temperton, Ben, Bolduc, Ben, Alberti, Adriana, Ardyna, Mathieu, Arkhipova, Ksenia, Carmichael, Margaux, Cruaud, Corinne, Dimier, Céline, Domínguez-Huerta, Guillermo, Ferland, Joannie, Kandels, Stefanie, Liu, Yunxiao, Marec, Claudie, Pesant, Stéphane, Picheral, Marc, Pisarev, Sergey, Poulain, Julie, Tremblay, Jean-Éric, Vik, Dean, Coordinators, Tara Oceans, Acinas, Silvia G, Babin, Marcel, Bork, Peer, Boss, Emmanuel, Bowler, Chris, Cochrane, Guy, de Vargas, Colomban, Follows, Michael, Gorsky, Gabriel, Grimsley, Nigel, Guidi, Lionel, Hingamp, Pascal, Iudicone, Daniele, Jaillon, Olivier, Kandels-Lewis, Stefanie, Karp-Boss, Lee, Karsenti, Eric, Not, Fabrice, Ogata, Hiroyuki, Poulton, Nicole, Raes, Jeroen, Sardet, Christian, Speich, Sabrina, Stemmann, Lars, Sullivan, Matthew B, Sunagawa, Shinichi, Wincker, Patrick, Culley, Alexander I, Dutilh, Bas E, and Roux, Simon
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Genetics ,Infection ,Life Below Water ,Aquatic Organisms ,Biodiversity ,DNA Viruses ,DNA ,Viral ,Metagenome ,Water Microbiology ,Tara Oceans Coordinators ,community ecology ,diversity gradients ,marine biology ,metagenomics ,population ecology ,species ,viruses ,Biological Sciences ,Medical and Health Sciences ,Developmental Biology - Abstract
Microbes drive most ecosystems and are modulated by viruses that impact their lifespan, gene flow, and metabolic outputs. However, ecosystem-level impacts of viral community diversity remain difficult to assess due to classification issues and few reference genomes. Here, we establish an ∼12-fold expanded global ocean DNA virome dataset of 195,728 viral populations, now including the Arctic Ocean, and validate that these populations form discrete genotypic clusters. Meta-community analyses revealed five ecological zones throughout the global ocean, including two distinct Arctic regions. Across the zones, local and global patterns and drivers in viral community diversity were established for both macrodiversity (inter-population diversity) and microdiversity (intra-population genetic variation). These patterns sometimes, but not always, paralleled those from macro-organisms and revealed temperate and tropical surface waters and the Arctic as biodiversity hotspots and mechanistic hypotheses to explain them. Such further understanding of ocean viruses is critical for broader inclusion in ecosystem models.
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- 2019
19. Community‐Level Responses to Iron Availability in Open Ocean Plankton Ecosystems
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Caputi, Luigi, Carradec, Quentin, Eveillard, Damien, Kirilovsky, Amos, Pelletier, Eric, Pierella Karlusich, Juan J, Rocha Jimenez Vieira, Fabio, Villar, Emilie, Chaffron, Samuel, Malviya, Shruti, Scalco, Eleonora, Acinas, Silvia G, Alberti, Adriana, Aury, Jean‐Marc, Benoiston, Anne‐Sophie, Bertrand, Alexis, Biard, Tristan, Bittner, Lucie, Boccara, Martine, Brum, Jennifer R, Brunet, Christophe, Busseni, Greta, Carratalà, Anna, Claustre, Hervé, Coelho, Luis Pedro, Colin, Sébastien, D'Aniello, Salvatore, Da Silva, Corinne, Del Core, Marianna, Doré, Hugo, Gasparini, Stéphane, Kokoszka, Florian, Jamet, Jean‐Louis, Lejeusne, Christophe, Lepoivre, Cyrille, Lescot, Magali, Lima‐Mendez, Gipsi, Lombard, Fabien, Lukeš, Julius, Maillet, Nicolas, Madoui, Mohammed‐Amin, Martinez, Elodie, Mazzocchi, Maria Grazia, Néou, Mario B, Paz‐Yepes, Javier, Poulain, Julie, Ramondenc, Simon, Romagnan, Jean‐Baptiste, Roux, Simon, Salvagio Manta, Daniela, Sanges, Remo, Speich, Sabrina, Sprovieri, Mario, Sunagawa, Shinichi, Taillandier, Vincent, Tanaka, Atsuko, Tirichine, Leila, Trottier, Camille, Uitz, Julia, Veluchamy, Alaguraj, Veselá, Jana, Vincent, Flora, Yau, Sheree, Kandels‐Lewis, Stefanie, Searson, Sarah, Dimier, Céline, Picheral, Marc, Bork, Peer, Boss, Emmanuel, Vargas, Colomban, Follows, Michael J, Grimsley, Nigel, Guidi, Lionel, Hingamp, Pascal, Karsenti, Eric, Sordino, Paolo, Stemmann, Lars, Sullivan, Matthew B, Tagliabue, Alessandro, Zingone, Adriana, Garczarek, Laurence, d'Ortenzio, Fabrizio, Testor, Pierre, Not, Fabrice, d'Alcalà, Maurizio Ribera, Wincker, Patrick, Bowler, Chris, Iudicone, Daniele, Gorsky, Gabriel, and Jaillon, Olivier
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Genetics ,Life Below Water ,Atmospheric Sciences ,Geochemistry ,Oceanography ,Meteorology & Atmospheric Sciences - Abstract
Predicting responses of plankton to variations in essential nutrients is hampered by limited in situ measurements, a poor understanding of community composition, and the lack of reference gene catalogs for key taxa. Iron is a key driver of plankton dynamics and, therefore, of global biogeochemical cycles and climate. To assess the impact of iron availability on plankton communities, we explored the comprehensive bio-oceanographic and bio-omics data sets from Tara Oceans in the context of the iron products from two state-of-the-art global scale biogeochemical models. We obtained novel information about adaptation and acclimation toward iron in a range of phytoplankton, including picocyanobacteria and diatoms, and identified whole subcommunities covarying with iron. Many of the observed global patterns were recapitulated in the Marquesas archipelago, where frequent plankton blooms are believed to be caused by natural iron fertilization, although they are not captured in large-scale biogeochemical models. This work provides a proof of concept that integrative analyses, spanning from genes to ecosystems and viruses to zooplankton, can disentangle the complexity of plankton communities and can lead to more accurate formulations of resource bioavailability in biogeochemical models, thus improving our understanding of plankton resilience in a changing environment.
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- 2019
20. Reply to: When did mammoths go extinct?
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Wang, Yucheng, Prohaska, Ana, Dong, Haoran, Alberti, Adriana, Alsos, Inger Greve, Beilman, David W., Bjørk, Anders A., Cao, Jialu, Cherezova, Anna A., Coissac, Eric, De Sanctis, Bianca, Denoeud, France, Dockter, Christoph, Durbin, Richard, Edwards, Mary E., Edwards, Neil R., Esdale, Julie, Fedorov, Grigory B., Fernandez-Guerra, Antonio, Froese, Duane G., Gusarova, Galina, Haile, James, Holden, Philip B., Kjeldsen, Kristian K., Kjær, Kurt H., Korneliussen, Thorfinn Sand, Lammers, Youri, Larsen, Nicolaj Krog, Macleod, Ruairidh, Mangerud, Jan, McColl, Hugh, Merkel, Marie Kristine Føreid, Money, Daniel, Möller, Per, Nogués-Bravo, David, Orlando, Ludovic, Owens, Hannah Lois, Pedersen, Mikkel Winther, Racimo, Fernando, Rahbek, Carsten, Rasic, Jeffrey T., Rouillard, Alexandra, Ruter, Anthony H., Skadhauge, Birgitte, Svendsen, John Inge, Tikhonov, Alexei, Vinner, Lasse, Wincker, Patrick, Xing, Yingchun, Zhang, Yubin, Meltzer, David J., and Willerslev, Eske
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- 2022
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21. Biosynthetic potential of the global ocean microbiome
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Paoli, Lucas, Ruscheweyh, Hans-Joachim, Forneris, Clarissa C., Hubrich, Florian, Kautsar, Satria, Bhushan, Agneya, Lotti, Alessandro, Clayssen, Quentin, Salazar, Guillem, Milanese, Alessio, Carlström, Charlotte I., Papadopoulou, Chrysa, Gehrig, Daniel, Karasikov, Mikhail, Mustafa, Harun, Larralde, Martin, Carroll, Laura M., Sánchez, Pablo, Zayed, Ahmed A., Cronin, Dylan R., Acinas, Silvia G., Bork, Peer, Bowler, Chris, Delmont, Tom O., Gasol, Josep M., Gossert, Alvar D., Kahles, André, Sullivan, Matthew B., Wincker, Patrick, Zeller, Georg, Robinson, Serina L., Piel, Jörn, and Sunagawa, Shinichi
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- 2022
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22. Publisher Correction: The DNA sequence and analysis of human chromosome 14
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Heilig, Roland, Eckenberg, Ralph, Petit, Jean-Louis, Fonknechten, Núria, Da Silva, Corinne, Cattolico, Laurence, Levy, Michaël, Barbe, Valérie, de Berardinis, Véronique, Ureta-Vidal, Abel, Pelletier, Eric, Vico, Virginie, Anthouard, Véronique, Rowen, Lee, Madan, Anup, Qin, Shizhen, Sun, Hui, Du, Hui, Pepin, Kymberlie, Artiguenave, François, Robert, Catherine, Cruaud, Corinne, Brüls, Thomas, Jaillon, Olivier, Friedlander, Lucie, Samson, Gaelle, Brottier, Philippe, Cure, Susan, Ségurens, Béatrice, Anière, Franck, Samain, Sylvie, Crespeau, Hervé, Abbasi, Nissa, Aiach, Nathalie, Boscus, Didier, Dickhoff, Rachel, Dors, Monica, Dubois, Ivan, Friedman, Cynthia, Gouyvenoux, Michel, James, Rose, Madan, Anuradha, Mairey–Estrada, Barbara, Mangenot, Sophie, Martins, Nathalie, Ménard, Manuela, Oztas, Sophie, Ratcliffe, Amber, Shaffer, Tristan, Trask, Barbara, Vacherie, Benoit, Bellemere, Chadia, Belser, Caroline, Besnard-Gonnet, Marielle, Bartol–Mavel, Delphine, Boutard, Magali, Briez-Silla, Stéphanie, Combette, Stephane, Dufossé-Laurent, Virginie, Ferron, Carolyne, Lechaplais, Christophe, Louesse, Claudine, Muselet, Delphine, Magdelenat, Ghislaine, Pateau, Emilie, Petit, Emmanuelle, Sirvain-Trukniewicz, Peggy, Trybou, Arnaud, Vega-Czarny, Nathalie, Bataille, Elodie, Bluet, Elodie, Bordelais, Isabelle, Dubois, Maria, Dumont, Corinne, Guérin, Thomas, Haffray, Sébastien, Hammadi, Rachid, Muanga, Jacqueline, Pellouin, Virginie, Robert, Dominique, Wunderle, Edith, Gauguet, Gilbert, Roy, Alice, Sainte-Marthe, Laurent, Verdier, Jean, Verdier-Discala, Claude, Hillier, LaDeana, Fulton, Lucinda, McPherson, John, Matsuda, Fumihiko, Wilson, Richard, Scarpelli, Claude, Gyapay, Gábor, Wincker, Patrick, Saurin, William, Quétier, Francis, Waterston, Robert, Hood, Leroy, and Weissenbach, Jean
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- 2023
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23. Restructuring of plankton genomic biogeography in the surface ocean under climate change
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Frémont, Paul, Gehlen, Marion, Vrac, Mathieu, Leconte, Jade, Delmont, Tom O., Wincker, Patrick, Iudicone, Daniele, and Jaillon, Olivier
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- 2022
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24. Heterotrophic bacterial diazotrophs are more abundant than their cyanobacterial counterparts in metagenomes covering most of the sunlit ocean
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Delmont, Tom O., Pierella Karlusich, Juan José, Veseli, Iva, Fuessel, Jessika, Eren, A. Murat, Foster, Rachel A., Bowler, Chris, Wincker, Patrick, and Pelletier, Eric
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- 2022
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25. Pezizomycetes genomes reveal the molecular basis of ectomycorrhizal truffle lifestyle
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Murat, Claude, Payen, Thibaut, Noel, Benjamin, Kuo, Alan, Morin, Emmanuelle, Chen, Juan, Kohler, Annegret, Krizsán, Krisztina, Balestrini, Raffaella, Da Silva, Corinne, Montanini, Barbara, Hainaut, Mathieu, Levati, Elisabetta, Barry, Kerrie W, Belfiori, Beatrice, Cichocki, Nicolas, Clum, Alicia, Dockter, Rhyan B, Fauchery, Laure, Guy, Julie, Iotti, Mirco, Le Tacon, François, Lindquist, Erika A, Lipzen, Anna, Malagnac, Fabienne, Mello, Antonietta, Molinier, Virginie, Miyauchi, Shingo, Poulain, Julie, Riccioni, Claudia, Rubini, Andrea, Sitrit, Yaron, Splivallo, Richard, Traeger, Stefanie, Wang, Mei, Žifčáková, Lucia, Wipf, Daniel, Zambonelli, Alessandra, Paolocci, Francesco, Nowrousian, Minou, Ottonello, Simone, Baldrian, Petr, Spatafora, Joseph W, Henrissat, Bernard, Nagy, Laszlo G, Aury, Jean-Marc, Wincker, Patrick, Grigoriev, Igor V, Bonfante, Paola, and Martin, Francis M
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Microbiology ,Biological Sciences ,Genetics ,Human Genome ,Biotechnology ,Ascomycota ,DNA ,Fungal ,Genome ,Fungal ,Life History Traits ,Mycorrhizae ,Phylogeny ,Sequence Analysis ,DNA ,Symbiosis ,Ecology ,Evolutionary biology ,Environmental management - Abstract
Tuberaceae is one of the most diverse lineages of symbiotic truffle-forming fungi. To understand the molecular underpinning of the ectomycorrhizal truffle lifestyle, we compared the genomes of Piedmont white truffle (Tuber magnatum), Périgord black truffle (Tuber melanosporum), Burgundy truffle (Tuber aestivum), pig truffle (Choiromyces venosus) and desert truffle (Terfezia boudieri) to saprotrophic Pezizomycetes. Reconstructed gene duplication/loss histories along a time-calibrated phylogeny of Ascomycetes revealed that Tuberaceae-specific traits may be related to a higher gene diversification rate. Genomic features in Tuber species appear to be very similar, with high transposon content, few genes coding lignocellulose-degrading enzymes, a substantial set of lineage-specific fruiting-body-upregulated genes and high expression of genes involved in volatile organic compound metabolism. Developmental and metabolic pathways expressed in ectomycorrhizae and fruiting bodies of T. magnatum and T. melanosporum are unexpectedly very similar, owing to the fact that they diverged ~100 Ma. Volatile organic compounds from pungent truffle odours are not the products of Tuber-specific gene innovations, but rely on the differential expression of an existing gene repertoire. These genomic resources will help to address fundamental questions in the evolution of the truffle lifestyle and the ecology of fungi that have been praised as food delicacies for centuries.
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- 2018
26. Terrestrial and marine influence on atmospheric bacterial diversity over the north Atlantic and Pacific Oceans
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Lang-Yona, Naama, Flores, J. Michel, Haviv, Rotem, Alberti, Adriana, Poulain, Julie, Belser, Caroline, Trainic, Miri, Gat, Daniella, Ruscheweyh, Hans-Joachim, Wincker, Patrick, Sunagawa, Shinichi, Rudich, Yinon, Koren, Ilan, and Vardi, Assaf
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- 2022
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27. Tempo and drivers of plant diversification in the European mountain system
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Smyčka, Jan, Roquet, Cristina, Boleda, Martí, Alberti, Adriana, Boyer, Frédéric, Douzet, Rolland, Perrier, Christophe, Rome, Maxime, Valay, Jean-Gabriel, Denoeud, France, Šemberová, Kristýna, Zimmermann, Niklaus E., Thuiller, Wilfried, Wincker, Patrick, Alsos, Inger G., Coissac, Eric, and Lavergne, Sébastien
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- 2022
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28. Oxford Nanopore and Bionano Genomics technologies evaluation for plant structural variation detection
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Canaguier, Aurélie, Guilbaud, Romane, Denis, Erwan, Magdelenat, Ghislaine, Belser, Caroline, Istace, Benjamin, Cruaud, Corinne, Wincker, Patrick, Le Paslier, Marie-Christine, Faivre-Rampant, Patricia, and Barbe, Valérie
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- 2022
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29. Genomic adaptation of the picoeukaryote Pelagomonas calceolata to iron-poor oceans revealed by a chromosome-scale genome sequence
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Guérin, Nina, Ciccarella, Marta, Flamant, Elisa, Frémont, Paul, Mangenot, Sophie, Istace, Benjamin, Noel, Benjamin, Belser, Caroline, Bertrand, Laurie, Labadie, Karine, Cruaud, Corinne, Romac, Sarah, Bachy, Charles, Gachenot, Martin, Pelletier, Eric, Alberti, Adriana, Jaillon, Olivier, Wincker, Patrick, Aury, Jean-Marc, and Carradec, Quentin
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- 2022
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30. Marine Aerosols : Measurements by the Tara Pacific Expedition
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Flores, J. M., Bourdin, G., Altaratz, O., Trainic, M., Lang-Yona, N., Dzimban, E., Steinau, S., Tettich, F., Planes, S., Allemand, D., Agostini, S., Banaigs, B., Boissin, E., Boss, E., Douville, E., Forcioli, D., Furla, P., Galand, P. E., Sullivan, M., Gilson, É., Lombard, F., Moulin, C., Pesant, S., Poulain, J., Reynaud, S., Romac, S., Sunagawa, S., Thomas, O. P., Troublé, R., de Vargas, C., Thurber, R. Vega, Voolstra, C. R., Wincker, P., Zoccola, D., Bowler, C., Gorsky, G., Rudich, Y., Vardi, A., and Koren, I.
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- 2020
31. Tara Pacific Expedition’s Atmospheric Measurements of Marine Aerosols across the Atlantic and Pacific Oceans : Overview and Preliminary Results
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Flores, J. M., Bourdin, G., Altaratz, O., Trainic, M., Lang-Yona, N., Dzimban, E., Steinau, S., Tettich, F., Planes, S., Allemand, D., Agostini, S., Banaigs, B., Boissin, E., Boss, E., Douville, E., Forcioli, D., Furla, P., Galand, P. E., Sullivan, M. B., Gilson, É., Lombard, F., Moulin, C., Pesant, S., Poulain, J., Reynaud, S., Romac, S., Sunagawa, S., Thomas, O. P., Troublé, R., de Vargas, C., Thurber, R. Vega, Voolstra, C. R., Wincker, P., Zoccola, D., Bowler, C., Gorsky, G., Rudich, Y., Vardi, A., and Koren, I.
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- 2020
32. Late Quaternary dynamics of Arctic biota from ancient environmental genomics
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Wang, Yucheng, Pedersen, Mikkel Winther, Alsos, Inger Greve, De Sanctis, Bianca, Racimo, Fernando, Prohaska, Ana, Coissac, Eric, Owens, Hannah Lois, Merkel, Marie Kristine Føreid, Fernandez-Guerra, Antonio, Rouillard, Alexandra, Lammers, Youri, Alberti, Adriana, Denoeud, France, Money, Daniel, Ruter, Anthony H., McColl, Hugh, Larsen, Nicolaj Krog, Cherezova, Anna A., Edwards, Mary E., Fedorov, Grigory B., Haile, James, Orlando, Ludovic, Vinner, Lasse, Korneliussen, Thorfinn Sand, Beilman, David W., Bjørk, Anders A., Cao, Jialu, Dockter, Christoph, Esdale, Julie, Gusarova, Galina, Kjeldsen, Kristian K., Mangerud, Jan, Rasic, Jeffrey T., Skadhauge, Birgitte, Svendsen, John Inge, Tikhonov, Alexei, Wincker, Patrick, Xing, Yingchun, Zhang, Yubin, Froese, Duane G., Rahbek, Carsten, Bravo, David Nogues, Holden, Philip B., Edwards, Neil R., Durbin, Richard, Meltzer, David J., Kjær, Kurt H., Möller, Per, and Willerslev, Eske
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- 2021
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33. Compendium of 530 metagenome-assembled bacterial and archaeal genomes from the polar Arctic Ocean
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Royo-Llonch, Marta, Sánchez, Pablo, Ruiz-González, Clara, Salazar, Guillem, Pedrós-Alió, Carlos, Sebastián, Marta, Labadie, Karine, Paoli, Lucas, M. Ibarbalz, Federico, Zinger, Lucie, Churcheward, Benjamin, Chaffron, Samuel, Eveillard, Damien, Karsenti, Eric, Sunagawa, Shinichi, Wincker, Patrick, Karp-Boss, Lee, Bowler, Chris, and Acinas, Silvia G.
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- 2021
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34. Microbial community structure in hadal sediments: high similarity along trench axes and strong changes along redox gradients
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Schauberger, Clemens, Glud, Ronnie N., Hausmann, Bela, Trouche, Blandine, Maignien, Lois, Poulain, Julie, Wincker, Patrick, Arnaud-Haond, Sophie, Wenzhöfer, Frank, and Thamdrup, Bo
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- 2021
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35. The origins and spread of domestic horses from the Western Eurasian steppes
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Librado, Pablo, Khan, Naveed, Fages, Antoine, Kusliy, Mariya A., Suchan, Tomasz, Tonasso-Calvière, Laure, Schiavinato, Stéphanie, Alioglu, Duha, Fromentier, Aurore, Perdereau, Aude, Aury, Jean-Marc, Gaunitz, Charleen, Chauvey, Lorelei, Seguin-Orlando, Andaine, Der Sarkissian, Clio, Southon, John, Shapiro, Beth, Tishkin, Alexey A., Kovalev, Alexey A., Alquraishi, Saleh, Alfarhan, Ahmed H., Al-Rasheid, Khaled A. S., Seregély, Timo, Klassen, Lutz, Iversen, Rune, Bignon-Lau, Olivier, Bodu, Pierre, Olive, Monique, Castel, Jean-Christophe, Boudadi-Maligne, Myriam, Alvarez, Nadir, Germonpré, Mietje, Moskal-del Hoyo, Magdalena, Wilczyński, Jarosław, Pospuła, Sylwia, Lasota-Kuś, Anna, Tunia, Krzysztof, Nowak, Marek, Rannamäe, Eve, Saarma, Urmas, Boeskorov, Gennady, Lōugas, Lembi, Kyselý, René, Peške, Lubomír, Bălășescu, Adrian, Dumitrașcu, Valentin, Dobrescu, Roxana, Gerber, Daniel, Kiss, Viktória, Szécsényi-Nagy, Anna, Mende, Balázs G., Gallina, Zsolt, Somogyi, Krisztina, Kulcsár, Gabriella, Gál, Erika, Bendrey, Robin, Allentoft, Morten E., Sirbu, Ghenadie, Dergachev, Valentin, Shephard, Henry, Tomadini, Noémie, Grouard, Sandrine, Kasparov, Aleksei, Basilyan, Alexander E., Anisimov, Mikhail A., Nikolskiy, Pavel A., Pavlova, Elena Y., Pitulko, Vladimir, Brem, Gottfried, Wallner, Barbara, Schwall, Christoph, Keller, Marcel, Kitagawa, Keiko, Bessudnov, Alexander N., Bessudnov, Alexander, Taylor, William, Magail, Jérome, Gantulga, Jamiyan-Ombo, Bayarsaikhan, Jamsranjav, Erdenebaatar, Diimaajav, Tabaldiev, Kubatbeek, Mijiddorj, Enkhbayar, Boldgiv, Bazartseren, Tsagaan, Turbat, Pruvost, Mélanie, Olsen, Sandra, Makarewicz, Cheryl A., Valenzuela Lamas, Silvia, Albizuri Canadell, Silvia, Nieto Espinet, Ariadna, Iborra, Ma Pilar, Lira Garrido, Jaime, Rodríguez González, Esther, Celestino, Sebastián, Olària, Carmen, Arsuaga, Juan Luis, Kotova, Nadiia, Pryor, Alexander, Crabtree, Pam, Zhumatayev, Rinat, Toleubaev, Abdesh, Morgunova, Nina L., Kuznetsova, Tatiana, Lordkipanize, David, Marzullo, Matilde, Prato, Ornella, Bagnasco Gianni, Giovanna, Tecchiati, Umberto, Clavel, Benoit, Lepetz, Sébastien, Davoudi, Hossein, Mashkour, Marjan, Berezina, Natalia Ya., Stockhammer, Philipp W., Krause, Johannes, Haak, Wolfgang, Morales-Muñiz, Arturo, Benecke, Norbert, Hofreiter, Michael, Ludwig, Arne, Graphodatsky, Alexander S., Peters, Joris, Kiryushin, Kirill Yu., Iderkhangai, Tumur-Ochir, Bokovenko, Nikolay A., Vasiliev, Sergey K., Seregin, Nikolai N., Chugunov, Konstantin V., Plasteeva, Natalya A., Baryshnikov, Gennady F., Petrova, Ekaterina, Sablin, Mikhail, Ananyevskaya, Elina, Logvin, Andrey, Shevnina, Irina, Logvin, Victor, Kalieva, Saule, Loman, Valeriy, Kukushkin, Igor, Merz, Ilya, Merz, Victor, Sakenov, Sergazy, Varfolomeyev, Victor, Usmanova, Emma, Zaibert, Viktor, Arbuckle, Benjamin, Belinskiy, Andrey B., Kalmykov, Alexej, Reinhold, Sabine, Hansen, Svend, Yudin, Aleksandr I., Vybornov, Alekandr A., Epimakhov, Andrey, Berezina, Natalia S., Roslyakova, Natalia, Kosintsev, Pavel A., Kuznetsov, Pavel F., Anthony, David, Kroonen, Guus J., Kristiansen, Kristian, Wincker, Patrick, Outram, Alan, and Orlando, Ludovic
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- 2021
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36. Comparative genomics reveals new functional insights in uncultured MAST species
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Labarre, Aurelie, López-Escardó, David, Latorre, Francisco, Leonard, Guy, Bucchini, François, Obiol, Aleix, Cruaud, Corinne, Sieracki, Michael E., Jaillon, Olivier, Wincker, Patrick, Vandepoele, Klaas, Logares, Ramiro, and Massana, Ramon
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- 2021
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37. Ecogenomics and potential biogeochemical impacts of globally abundant ocean viruses.
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Roux, Simon, Brum, Jennifer R, Dutilh, Bas E, Sunagawa, Shinichi, Duhaime, Melissa B, Loy, Alexander, Poulos, Bonnie T, Solonenko, Natalie, Lara, Elena, Poulain, Julie, Pesant, Stéphane, Kandels-Lewis, Stefanie, Dimier, Céline, Picheral, Marc, Searson, Sarah, Cruaud, Corinne, Alberti, Adriana, Duarte, Carlos M, Gasol, Josep M, Vaqué, Dolors, Tara Oceans Coordinators, Bork, Peer, Acinas, Silvia G, Wincker, Patrick, and Sullivan, Matthew B
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Tara Oceans Coordinators ,Viruses ,Sulfur ,DNA ,Viral ,Ecology ,Ecosystem ,Seawater ,Genes ,Viral ,Genome ,Viral ,Expeditions ,Oceans and Seas ,Metagenome ,Metagenomics ,Nitrogen Cycle ,Geographic Mapping ,Datasets as Topic ,General Science & Technology - Abstract
Ocean microbes drive biogeochemical cycling on a global scale. However, this cycling is constrained by viruses that affect community composition, metabolic activity, and evolutionary trajectories. Owing to challenges with the sampling and cultivation of viruses, genome-level viral diversity remains poorly described and grossly understudied, with less than 1% of observed surface-ocean viruses known. Here we assemble complete genomes and large genomic fragments from both surface- and deep-ocean viruses sampled during the Tara Oceans and Malaspina research expeditions, and analyse the resulting 'global ocean virome' dataset to present a global map of abundant, double-stranded DNA viruses complete with genomic and ecological contexts. A total of 15,222 epipelagic and mesopelagic viral populations were identified, comprising 867 viral clusters (defined as approximately genus-level groups). This roughly triples the number of known ocean viral populations and doubles the number of candidate bacterial and archaeal virus genera, providing a near-complete sampling of epipelagic communities at both the population and viral-cluster level. We found that 38 of the 867 viral clusters were locally or globally abundant, together accounting for nearly half of the viral populations in any global ocean virome sample. While two-thirds of these clusters represent newly described viruses lacking any cultivated representative, most could be computationally linked to dominant, ecologically relevant microbial hosts. Moreover, we identified 243 viral-encoded auxiliary metabolic genes, of which only 95 were previously known. Deeper analyses of four of these auxiliary metabolic genes (dsrC, soxYZ, P-II (also known as glnB) and amoC) revealed that abundant viruses may directly manipulate sulfur and nitrogen cycling throughout the epipelagic ocean. This viral catalog and functional analyses provide a necessary foundation for the meaningful integration of viruses into ecosystem models where they act as key players in nutrient cycling and trophic networks.
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- 2016
38. Plankton networks driving carbon export in the oligotrophic ocean
- Author
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Guidi, Lionel, Chaffron, Samuel, Bittner, Lucie, Eveillard, Damien, Larhlimi, Abdelhalim, Roux, Simon, Darzi, Youssef, Audic, Stephane, Berline, Léo, Brum, Jennifer R, Coelho, Luis Pedro, Espinoza, Julio Cesar Ignacio, Malviya, Shruti, Sunagawa, Shinichi, Dimier, Céline, Kandels-Lewis, Stefanie, Picheral, Marc, Poulain, Julie, Searson, Sarah, Stemmann, Lars, Not, Fabrice, Hingamp, Pascal, Speich, Sabrina, Follows, Mick, Karp-Boss, Lee, Boss, Emmanuel, Ogata, Hiroyuki, Pesant, Stephane, Weissenbach, Jean, Wincker, Patrick, Acinas, Silvia G, Bork, Peer, de Vargas, Colomban, Iudicone, Daniele, Sullivan, Matthew B, Raes, Jeroen, Karsenti, Eric, Bowler, Chris, and Gorsky, Gabriel
- Subjects
Aquatic Organisms ,Carbon ,Chlorophyll ,Dinoflagellida ,Ecosystem ,Expeditions ,Genes ,Bacterial ,Genes ,Viral ,Geography ,Oceans and Seas ,Photosynthesis ,Plankton ,Seawater ,Synechococcus ,Tara Oceans coordinators ,General Science & Technology - Abstract
The biological carbon pump is the process by which CO2 is transformed to organic carbon via photosynthesis, exported through sinking particles, and finally sequestered in the deep ocean. While the intensity of the pump correlates with plankton community composition, the underlying ecosystem structure driving the process remains largely uncharacterized. Here we use environmental and metagenomic data gathered during the Tara Oceans expedition to improve our understanding of carbon export in the oligotrophic ocean. We show that specific plankton communities, from the surface and deep chlorophyll maximum, correlate with carbon export at 150 m and highlight unexpected taxa such as Radiolaria and alveolate parasites, as well as Synechococcus and their phages, as lineages most strongly associated with carbon export in the subtropical, nutrient-depleted, oligotrophic ocean. Additionally, we show that the relative abundance of a few bacterial and viral genes can predict a significant fraction of the variability in carbon export in these regions.
- Published
- 2016
39. Cyanobacterial symbionts diverged in the late Cretaceous towards lineage-specific nitrogen fixation factories in single-celled phytoplankton.
- Author
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Cornejo-Castillo, Francisco M, Cabello, Ana M, Salazar, Guillem, Sánchez-Baracaldo, Patricia, Lima-Mendez, Gipsi, Hingamp, Pascal, Alberti, Adriana, Sunagawa, Shinichi, Bork, Peer, de Vargas, Colomban, Raes, Jeroen, Bowler, Chris, Wincker, Patrick, Zehr, Jonathan P, Gasol, Josep M, Massana, Ramon, and Acinas, Silvia G
- Subjects
Phytoplankton ,Cyanobacteria ,Genomics ,Seawater ,Nitrogen Fixation ,Symbiosis ,Atlantic Ocean ,Biological Evolution ,Haptophyta ,Genetics ,Human Genome - Abstract
The unicellular cyanobacterium UCYN-A, one of the major contributors to nitrogen fixation in the open ocean, lives in symbiosis with single-celled phytoplankton. UCYN-A includes several closely related lineages whose partner fidelity, genome-wide expression and time of evolutionary divergence remain to be resolved. Here we detect and distinguish UCYN-A1 and UCYN-A2 lineages in symbiosis with two distinct prymnesiophyte partners in the South Atlantic Ocean. Both symbiotic systems are lineage specific and differ in the number of UCYN-A cells involved. Our analyses infer a streamlined genome expression towards nitrogen fixation in both UCYN-A lineages. Comparative genomics reveal a strong purifying selection in UCYN-A1 and UCYN-A2 with a diversification process ∼91 Myr ago, in the late Cretaceous, after the low-nutrient regime period occurred during the Jurassic. These findings suggest that UCYN-A diversified in a co-evolutionary process, wherein their prymnesiophyte partners acted as a barrier driving an allopatric speciation of extant UCYN-A lineages.
- Published
- 2016
40. Biogeography of marine giant viruses reveals their interplay with eukaryotes and ecological functions
- Author
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Endo, Hisashi, Blanc-Mathieu, Romain, Li, Yanze, Salazar, Guillem, Henry, Nicolas, Labadie, Karine, de Vargas, Colomban, Sullivan, Matthew B., Bowler, Chris, Wincker, Patrick, Karp-Boss, Lee, Sunagawa, Shinichi, and Ogata, Hiroyuki
- Published
- 2020
- Full Text
- View/download PDF
41. Tara Oceans: towards global ocean ecosystems biology
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Sunagawa, Shinichi, Acinas, Silvia G., Bork, Peer, Bowler, Chris, Eveillard, Damien, Gorsky, Gabriel, Guidi, Lionel, Iudicone, Daniele, Karsenti, Eric, Lombard, Fabien, Ogata, Hiroyuki, Pesant, Stephane, Sullivan, Matthew B., Wincker, Patrick, and de Vargas, Colomban
- Published
- 2020
- Full Text
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42. Large-scale transcriptomics to dissect 2 years of the life of a fungal phytopathogen interacting with its host plant
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Gay, Elise J., Soyer, Jessica L., Lapalu, Nicolas, Linglin, Juliette, Fudal, Isabelle, Da Silva, Corinne, Wincker, Patrick, Aury, Jean-Marc, Cruaud, Corinne, Levrel, Anne, Lemoine, Jocelyne, Delourme, Regine, Rouxel, Thierry, and Balesdent, Marie-Hélène
- Published
- 2021
- Full Text
- View/download PDF
43. Author Correction: A framework for in situ molecular characterization of coral holobionts using nanopore sequencing
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Carradec, Quentin, Poulain, Julie, Boissin, Emilie, Hume, Benjamin C. C., Voolstra, Christian R., Ziegler, Maren, Engelen, Stefan, Cruaud, Corinne, Planes, Serge, and Wincker, Patrick
- Published
- 2021
- Full Text
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44. Evaluating sediment and water sampling methods for the estimation of deep-sea biodiversity using environmental DNA
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Brandt, Miriam I., Pradillon, Florence, Trouche, Blandine, Henry, Nicolas, Liautard-Haag, Cathy, Cambon-Bonavita, Marie-Anne, Cueff-Gauchard, Valérie, Wincker, Patrick, Belser, Caroline, Poulain, Julie, Arnaud-Haond, Sophie, and Zeppilli, Daniela
- Published
- 2021
- Full Text
- View/download PDF
45. Rapid protein evolution, organellar reductions, and invasive intronic elements in the marine aerobic parasite dinoflagellate Amoebophrya spp
- Author
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Farhat, Sarah, Le, Phuong, Kayal, Ehsan, Noel, Benjamin, Bigeard, Estelle, Corre, Erwan, Maumus, Florian, Florent, Isabelle, Alberti, Adriana, Aury, Jean-Marc, Barbeyron, Tristan, Cai, Ruibo, Da Silva, Corinne, Istace, Benjamin, Labadie, Karine, Marie, Dominique, Mercier, Jonathan, Rukwavu, Tsinda, Szymczak, Jeremy, Tonon, Thierry, Alves-de-Souza, Catharina, Rouzé, Pierre, Van de Peer, Yves, Wincker, Patrick, Rombauts, Stephane, Porcel, Betina M., and Guillou, Laure
- Published
- 2021
- Full Text
- View/download PDF
46. Global distribution patterns of marine nitrogen-fixers by imaging and molecular methods
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Pierella Karlusich, Juan José, Pelletier, Eric, Lombard, Fabien, Carsique, Madeline, Dvorak, Etienne, Colin, Sébastien, Picheral, Marc, Cornejo-Castillo, Francisco M., Acinas, Silvia G., Pepperkok, Rainer, Karsenti, Eric, de Vargas, Colomban, Wincker, Patrick, Bowler, Chris, and Foster, Rachel A.
- Published
- 2021
- Full Text
- View/download PDF
47. Author Correction to: Rapid protein evolution, organellar reductions, and invasive intronic elements in the marine aerobic parasite dinoflagellate Amoebophrya spp
- Author
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Farhat, Sarah, Le, Phuong, Kayal, Ehsan, Noel, Benjamin, Bigeard, Estelle, Corre, Erwan, Maumus, Florian, Florent, Isabelle, Alberti, Adriana, Aury, Jean-Marc, Barbeyron, Tristan, Cai, Ruibo, Da Silva, Corinne, Istace, Benjamin, Labadie, Karine, Marie, Dominique, Mercier, Jonathan, Rukwavu, Tsinda, Szymczak, Jeremy, Tonon, Thierry, Alves-de-Souza, Catharina, Rouzé, Pierre, Van de Peer, Yves, Wincker, Patrick, Rombauts, Stephane, Porcel, Betina M., and Guillou, Laure
- Published
- 2021
- Full Text
- View/download PDF
48. Population genomics of apricots unravels domestication history and adaptive events
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Groppi, Alexis, Liu, Shuo, Cornille, Amandine, Decroocq, Stéphane, Bui, Quynh Trang, Tricon, David, Cruaud, Corinne, Arribat, Sandrine, Belser, Caroline, Marande, William, Salse, Jérôme, Huneau, Cécile, Rodde, Nathalie, Rhalloussi, Wassim, Cauet, Stéphane, Istace, Benjamin, Denis, Erwan, Carrère, Sébastien, Audergon, Jean-Marc, Roch, Guillaume, Lambert, Patrick, Zhebentyayeva, Tetyana, Liu, Wei-Sheng, Bouchez, Olivier, Lopez-Roques, Céline, Serre, Rémy-Félix, Debuchy, Robert, Tran, Joseph, Wincker, Patrick, Chen, Xilong, Pétriacq, Pierre, Barre, Aurélien, Nikolski, Macha, Aury, Jean-Marc, Abbott, Albert Glenn, Giraud, Tatiana, and Decroocq, Véronique
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- 2021
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49. Telomere-to-telomere gapless chromosomes of banana using nanopore sequencing
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Belser, Caroline, Baurens, Franc-Christophe, Noel, Benjamin, Martin, Guillaume, Cruaud, Corinne, Istace, Benjamin, Yahiaoui, Nabila, Labadie, Karine, Hřibová, Eva, Doležel, Jaroslav, Lemainque, Arnaud, Wincker, Patrick, D’Hont, Angélique, and Aury, Jean-Marc
- Published
- 2021
- Full Text
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50. Author Correction: Late Quaternary dynamics of Arctic biota from ancient environmental genomics
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Wang, Yucheng, Pedersen, Mikkel Winther, Alsos, Inger Greve, De Sanctis, Bianca, Racimo, Fernando, Prohaska, Ana, Coissac, Eric, Owens, Hannah Lois, Merkel, Marie Kristine Føreid, Fernandez-Guerra, Antonio, Rouillard, Alexandra, Lammers, Youri, Alberti, Adriana, Denoeud, France, Money, Daniel, Ruter, Anthony H., McColl, Hugh, Larsen, Nicolaj Krog, Cherezova, Anna A., Edwards, Mary E., Fedorov, Grigory B., Haile, James, Orlando, Ludovic, Vinner, Lasse, Korneliussen, Thorfinn Sand, Beilman, David W., Bjørk, Anders A., Cao, Jialu, Dockter, Christoph, Esdale, Julie, Gusarova, Galina, Kjeldsen, Kristian K., Mangerud, Jan, Rasic, Jeffrey T., Skadhauge, Birgitte, Svendsen, John Inge, Tikhonov, Alexei, Wincker, Patrick, Xing, Yingchun, Zhang, Yubin, Froese, Duane G., Rahbek, Carsten, Bravo, David Nogues, Holden, Philip B., Edwards, Neil R., Durbin, Richard, Meltzer, David J., Kjær, Kurt H., Möller, Per, and Willerslev, Eske
- Published
- 2022
- Full Text
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