38 results on '"Blair, J.E."'
Search Results
2. The Utility of Diagnostic Testing for Active Coccidioidomycosis in Solid Organ Transplant Recipients
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Mendoza, N. and Blair, J.E.
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- 2013
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3. Concurrent Pulmonary Aspergillus fumigatus and Mucor Infection in a Cardiac Transplant Recipient: A Case Report
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Webb, B.J., Blair, J.E., Kusne, S., Scott, R.L., Steidley, D.E., Arabia, F.A., and Vikram, H.R.
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- 2013
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4. Donor-Derived Fungal Infections in Organ Transplant Recipients: Guidelines of the American Society of Transplantation, Infectious Diseases Community of Practice
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Singh, N., Huprikar, S., Burdette, S.D., Morris, M.I., Blair, J.E., and Wheat, L.J.
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- 2012
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5. Coccidioidomycosis in Liver Transplant Recipients in an Endemic Area
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Vucicevic, D., Carey, E.J., and Blair, J.E.
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- 2011
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6. 800.45 Single-Center Comparison of Watchman vs Amulet Left Atrial Appendage Closure Device to Treat Patients with Non-Valvular Atrial Fibrillation
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Bahga, A.S., Smazil, J., Roark, L., Friant, J., Conway, B., Karim, A., Nathan, S., Paul, J., Sharma, P., Blair, J.E., and Shah, A.P.
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- 2024
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7. Safety Update: COVID-19 Convalescent Plasma in 20,000 Hospitalized Patients
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Joyner, M.J., Bruno, K.A., Klassen, S.A, Kunze, K.L., Johnson, P.W., Lesser, E.R, Wiggins, C., Senefeld, J.W., Klompas, A.M., Hodge, D.O., Shepherd, J.R.A., Rea, R.F., Whelan, E.R., Clayburn, A.J., Spiegel, M.R., Baker, S.E, Larson, K.F., Ripoll, J.G., Andersen, K. J., Buras, M.R., Vogt, M.N.P., Herasevich, V., Dennis, J.J., Regimbal, R.J., Bauer, P.R., Blair, J.E., Helmond, N. van, Carter, R., and Wright, R.S.
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Healthcare improvement science Radboud Institute for Health Sciences [Radboudumc 18] - Abstract
Contains fulltext : 229048.pdf (Publisher’s version ) (Closed access) OBJECTIVE: To provide an update on key safety metrics after transfusion of convalescent plasma in hospitalized coronavirus 2019 (COVID-19) patients, having previously demonstrated safety in 5000 hospitalized patients. PATIENTS AND METHODS: From April 3 to June 2, 2020, the US Food and Drug Administration Expanded Access Program for COVID-19 convalescent plasma transfused a convenience sample of 20,000 hospitalized patients with COVID-19 convalescent plasma. RESULTS: The incidence of all serious adverse events was low; these included transfusion reactions (n=78
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- 2020
8. VP22.10: Prenatal diagnosis and perinatal outcomes in aortic arch developmental abnormalities
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Ramirez, V.M. Mesa, primary, Campo, M.N. Campo, additional, Sanin‐Blair, J.E., additional, Castro, D.P. Cuesta, additional, Garcia‐Posada, R., additional, Gutierrez‐Marin, J.H., additional, and Yabur‐Espitia, M., additional
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- 2021
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9. Mortality in individuals treated with COVID-19 convalescent plasma varies with the geographic provenance of donors
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Kunze, K.L., Johnson, P.W., Helmond, N. van, Senefeld, J.W., Petersen, M.M., Klassen, S.A, Wiggins, C.C., Klompas, A.M., Bruno, K.A., Mills, J.R., Theel, E.S., Buras, M.R., Golafshar, M.A., Sexton, M.A., Soto, J.C. Diaz, Baker, S.E, Shepherd, J.R.A., Verdun, N.C., Marks, P., Paneth, N.S., Fairweather, D., Wright, R.S., Buskirk, C.M. van, Winters, J.L., Stubbs, J.R., Senese, K.A., Pletsch, M.C., Buchholtz, Z.A., Rea, R.F., Herasevich, V., Whelan, E.R., Clayburn, A.J., Larson, K.F., Ripoll, J.G., Andersen, K. J., Lesser, E.R, Vogt, M.N.P., Dennis, J.J., Regimbal, R.J., Bauer, P.R., Blair, J.E., Casadevall, A., Carter, R.E., Joyner, M.J., Kunze, K.L., Johnson, P.W., Helmond, N. van, Senefeld, J.W., Petersen, M.M., Klassen, S.A, Wiggins, C.C., Klompas, A.M., Bruno, K.A., Mills, J.R., Theel, E.S., Buras, M.R., Golafshar, M.A., Sexton, M.A., Soto, J.C. Diaz, Baker, S.E, Shepherd, J.R.A., Verdun, N.C., Marks, P., Paneth, N.S., Fairweather, D., Wright, R.S., Buskirk, C.M. van, Winters, J.L., Stubbs, J.R., Senese, K.A., Pletsch, M.C., Buchholtz, Z.A., Rea, R.F., Herasevich, V., Whelan, E.R., Clayburn, A.J., Larson, K.F., Ripoll, J.G., Andersen, K. J., Lesser, E.R, Vogt, M.N.P., Dennis, J.J., Regimbal, R.J., Bauer, P.R., Blair, J.E., Casadevall, A., Carter, R.E., and Joyner, M.J.
- Abstract
Contains fulltext : 238045.pdf (Publisher’s version ) (Open Access), Successful therapeutics and vaccines for coronavirus disease 2019 (COVID-19) have harnessed the immune response to severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). Evidence that SARS-CoV-2 exists as locally evolving variants suggests that immunological differences may impact the effectiveness of antibody-based treatments such as convalescent plasma and vaccines. Considering that near-sourced convalescent plasma likely reflects the antigenic composition of local viral strains, we hypothesize that convalescent plasma has a higher efficacy, as defined by death within 30 days of transfusion, when the convalescent plasma donor and treated patient were in close geographic proximity. Results of a series of modeling techniques applied to approximately 28,000 patients from the Expanded Access to Convalescent Plasma program (ClinicalTrials.gov number: NCT04338360) support this hypothesis. This work has implications for the interpretation of clinical studies, the ability to develop effective COVID-19 treatments, and, potentially, for the effectiveness of COVID-19 vaccines as additional locally-evolving variants continue to emerge.
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- 2021
10. Convalescent Plasma Antibody Levels and the Risk of Death from Covid-19
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Joyner, M.J., Carter, R.E., Senefeld, J.W., Klassen, S.A, Mills, J.R., Johnson, P.W., Theel, E.S., Wiggins, C.C., Bruno, K.A., Klompas, A.M., Lesser, E.R, Kunze, K.L., Sexton, M.A., Soto, J.C. Diaz, Baker, S.E, Shepherd, J.R.A., Helmond, N. van, Verdun, N.C., Marks, P., Buskirk, C.M. van, Winters, J.L., Stubbs, J.R., Rea, R.F., Hodge, D.O., Herasevich, V., Whelan, E.R., Clayburn, A.J., Larson, K.F., Ripoll, J.G., Andersen, K. J., Buras, M.R., Vogt, M.N.P., Dennis, J.J., Regimbal, R.J., Bauer, P.R., Blair, J.E., Paneth, N.S., Fairweather, D., Wright, R.S., Casadevall, A., Joyner, M.J., Carter, R.E., Senefeld, J.W., Klassen, S.A, Mills, J.R., Johnson, P.W., Theel, E.S., Wiggins, C.C., Bruno, K.A., Klompas, A.M., Lesser, E.R, Kunze, K.L., Sexton, M.A., Soto, J.C. Diaz, Baker, S.E, Shepherd, J.R.A., Helmond, N. van, Verdun, N.C., Marks, P., Buskirk, C.M. van, Winters, J.L., Stubbs, J.R., Rea, R.F., Hodge, D.O., Herasevich, V., Whelan, E.R., Clayburn, A.J., Larson, K.F., Ripoll, J.G., Andersen, K. J., Buras, M.R., Vogt, M.N.P., Dennis, J.J., Regimbal, R.J., Bauer, P.R., Blair, J.E., Paneth, N.S., Fairweather, D., Wright, R.S., and Casadevall, A.
- Abstract
Item does not contain fulltext, BACKGROUND: Convalescent plasma has been widely used to treat coronavirus disease 2019 (Covid-19) under the presumption that such plasma contains potentially therapeutic antibodies to severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) that can be passively transferred to the plasma recipient. Whether convalescent plasma with high antibody levels rather than low antibody levels is associated with a lower risk of death is unknown. METHODS: In a retrospective study based on a U.S. national registry, we determined the anti-SARS-CoV-2 IgG antibody levels in convalescent plasma used to treat hospitalized adults with Covid-19. The primary outcome was death within 30 days after plasma transfusion. Patients who were enrolled through July 4, 2020, and for whom data on anti-SARS-CoV-2 antibody levels in plasma transfusions and on 30-day mortality were available were included in the analysis. RESULTS: Of the 3082 patients included in this analysis, death within 30 days after plasma transfusion occurred in 115 of 515 patients (22.3%) in the high-titer group, 549 of 2006 patients (27.4%) in the medium-titer group, and 166 of 561 patients (29.6%) in the low-titer group. The association of anti-SARS-CoV-2 antibody levels with the risk of death from Covid-19 was moderated by mechanical ventilation status. A lower risk of death within 30 days in the high-titer group than in the low-titer group was observed among patients who had not received mechanical ventilation before transfusion (relative risk, 0.66; 95% confidence interval [CI], 0.48 to 0.91), and no effect on the risk of death was observed among patients who had received mechanical ventilation (relative risk, 1.02; 95% CI, 0.78 to 1.32). CONCLUSIONS: Among patients hospitalized with Covid-19 who were not receiving mechanical ventilation, transfusion of plasma with higher anti-SARS-CoV-2 IgG antibody levels was associated with a lower risk of death than transfusion of plasma with lower antibody levels. (Funded by the D
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- 2021
11. VP26.02: Prenatal diagnosis of cerebral vascular malformations: case series
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Ramirez, V.M. Mesa, primary, Llorente, M. Palacios, additional, Sanin‐Blair, J.E., additional, Campo, M.N. Campo, additional, Ardila, J. Tolosa, additional, Gutierrez‐Marin, J.H., additional, and Garcia‐Posada, R., additional
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- 2020
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12. VP36.19: Maternal, fetal and neonatal outcomes in patients with hypertensive disorders in pregnancy and fetal growth restriction
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Gonzalez, M.M. Ancheta, primary, Campo, M.N. Campo, additional, Castro, D.P. Cuesta, additional, Garcia‐Posada, R., additional, Gutierrez‐Marin, J.H., additional, Sanin‐Blair, J.E., additional, Martinez, L. Hurtado, additional, and Cruz Agudelo, D.C., additional
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- 2020
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13. Ratio of Systolic Blood Pressure to Pulmonary Capillary Wedge Pressure Ratio: A Novel Prognostic Marker in Chronic Heart Failure
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Narang, N., primary, Imamura, T., additional, Blair, J.E., additional, Holzhauser, L., additional, Ebong, I., additional, Belkin, M.N., additional, Kanelidis, A., additional, Oehler, A., additional, Yu, D., additional, Fujino, T., additional, Nitta, D., additional, Chung, B., additional, Nguyen, A., additional, Smith, B.A., additional, Raikhelkar, J., additional, Sarswat, N., additional, Kim, G.H., additional, Jeevanandam, V., additional, Sayer, G., additional, and Uriel, N., additional
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- 2019
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14. TAVI in LVAD Patients with Aortic Insufficiency
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Belkin, M.N., primary, Imamura, T., additional, Kanelidis, A.J., additional, Holzhauser, L., additional, Ebong, I., additional, Narang, N., additional, Blair, J.E., additional, Nathan, S., additional, Paul, J.D., additional, Shah, A.P., additional, Chung, B., additional, Nguyen, A., additional, Smith, B., additional, Kalantari, S., additional, Raikhelkar, J., additional, Sarswat, N., additional, Kim, G., additional, Sayer, G., additional, and Uriel, N., additional
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- 2019
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15. Neuroinvasive St. Louis Encephalitis Virus Infection in Solid Organ Transplant Recipients
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Hartmann, C.A., Vikram, H.R., Seville, M.T., Orenstein, R., Kusne, S., Blair, J.E., Grys, T.E., and Patron, R.L.
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- 2017
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16. Fungal Planet description sheets: 785– 867
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Crous, P.W., Luangsa-ard, J.J., Wingfield, M.J., Carnegie, A.J., Hernández-Restrepo, M., Lombard, L., Roux, J., Barreto, R.W., Baseia, I.G., Cano-Lira, J.F., Martin, M.P., Morozova, O.V., Stchigel, A.M., Summerell, B.A., Brandrud, Tor Erik, Dima, B., Garcia, D., Giraldo, A., Guarro, J., Gusmão, L.F.P., Khamsuntorn, P., Noordeloos, M.E., Nuankaew, S., Pinruan, U., Rodríguez-Andrade, E., Souza-Motta, C.M., Thangavel, R., van Iperen, A.L., V.P., Abreu, Accioly, T., Alves, J.L., Andrade, J.P., Bahram, M., Baral, H.-O., Barbier, E., Barnes, C.W., Bendiksen, Egil, Bernard, E., Bezerra, J.D.P., Bezerra, J.L., Bizio, E., Blair, J.E., Bulyonkova, T.M., Cabral, T.S., Caiafa, M.V., Cantillo, T., Colmán, A.A., Conceição, L.B., Cruz, S., Cunha, A.O.B., and Ryvarden, L.
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LSU ,ITS nrDNA barcodes ,systematics ,new taxa - Abstract
Novel species of fungi described in this study include those from various countries as follows: Angola, Gnomoniopsis angolensis and Pseudopithomyces angolensis on unknown host plants. Australia, Dothiora corymbiae on Corymbia citriodora, Neoeucasphaeria eucalypti (incl. Neoeucasphaeria gen. nov.) on Eucalyptus sp., Fumagopsis stellae on Eucalyptus sp., Fusculina eucalyptorum (incl. Fusculinaceae fam. nov.) on Eucalyptus socialis, Harknessia corymbiicola on Corymbia maculata, Neocelosporium eucalypti (incl. Neocelosporium gen. nov., Neocelosporiaceae fam. nov. and Neocelosporiales ord. nov.) on Eucalyptus cyanophylla, Neophaeomoniella corymbiae on Corymbia citriodora, Neophaeomoniella eucalyptigena on Eucalyptus pilularis, Pseudoplagiostoma corymbiicola on Corymbia citriodora, Teratosphaeria gracilis on Eucalyptus gracilis, Zasmidium corymbiae on Corymbia citriodora. Brazil, Calonectria hemileiae on pustules of Hemileia vastatrix formed on leaves of Coffea arabica, Calvatia caatinguensis on soil, Cercospora solani-betacei on Solanum betaceum, Clathrus natalensis on soil, Diaporthe poincianellae on Poincianella pyramidalis, Geastrum piquiriunense on soil, Geosmithia carolliae on wing of Carollia perspicillata, Henningsia resupinata on wood, Penicillium guaibinense from soil, Periconia caespitosa from leaf litter, Pseudocercospora styracina on Styrax sp., Simplicillium filiforme as endophyte from Citrullus lanatus, Thozetella pindobacuensis on leaf litter, Xenosonderhenia coussapoae on Coussapoa floccosa. Canary Islands (Spain), Orbilia amarilla on Euphorbia canariensis. Cape Verde Islands, Xylodon jacobaeus on Eucalyptus camaldulensis. Chile, Colletotrichum arboricola on Fuchsia magellanica. Costa Rica, Lasiosphaeria miniovina on tree branch. Ecuador, Ganoderma chocoense on tree trunk. France, Neofitzroyomyces nerii (incl. Neofitzroyomyces gen. nov.) on Nerium oleander. Ghana, Castanediella tereticornis on Eucalyptus tereticornis, Falcocladium africanum on Eucalyptus brassiana, Rachicladosporium corymbiae on Corymbia citriodora. Hungary, Entoloma silvae-frondosae in Carpinus betulus-Pinus sylvestris mixed forest. Iran, Pseudopyricularia persiana on Cyperus sp. Italy, Inocybe roseascens on soil in mixed forest. Laos, Ophiocordyceps houaynhangensis on Coleoptera larva. Malaysia, Monilochaetes melastomae on Melastoma sp. Mexico, Absidia terrestris from soil. Netherlands, Acaulium pannemaniae, Conioscypha boutwelliae, Fusicolla septimanifiniscientiae, Gibellulopsis simonii, Lasionectria hilhorstii, Lectera nordwiniana, Leptodiscella rintelii, Parasarocladium debruynii and Sarocladium dejongiae (incl. Sarocladiaceae fam. nov.) from soil. New Zealand, Gnomoniopsis rosae on Rosa sp. and Neodevriesia metrosideri on Metrosideros sp. Puerto Rico, Neodevriesia coccolobae on Coccoloba uvifera, Neodevriesia tabebuiae and Alfaria tabebuiae on Tabebuia chrysantha. Russia, Amanita paludosa on bogged soil in mixed deciduous forest, Entoloma tiliae in forest of Tilia × europaea, Kwoniella endophytica on Pyrus communis. South Africa, Coniella diospyri on Diospyros mespiliformis, Neomelanconiella combreti (incl. Neomelanconiellaceae
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- 2018
17. Fungal Planet description sheets: 785– 867
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Crous, P.W., primary, Luangsa-ard, J.J., additional, Wingfield, M.J., additional, Carnegie, A.J., additional, Hernández-Restrepo, M., additional, Lombard, L., additional, Roux, J., additional, Barreto, R.W., additional, Baseia, I.G., additional, Cano-Lira, J.F., additional, Martín, M.P., additional, Morozova, O.V., additional, Stchigel, A.M., additional, Summerell, B.A., additional, Brandrud, T.E., additional, Dima, B., additional, García, D., additional, Giraldo, A., additional, Guarro, J., additional, Gusmão, L.F.P., additional, Khamsuntorn, P., additional, Noordeloos, M.E., additional, Nuankaew, S., additional, Pinruan, U., additional, Rodríguez-Andrade, E., additional, Souza-Motta, C.M., additional, Thangavel, R., additional, van Iperen, A.L., additional, Abreu, V.P., additional, Accioly, T., additional, Alves, J.L., additional, Andrade, J.P., additional, Bahram, M., additional, Baral, H.-O., additional, Barbier, E., additional, Barnes, C.W., additional, Bendiksen, E., additional, Bernard, E., additional, Bezerra, J.D.P., additional, Bezerra, J.L., additional, Bizio, E., additional, Blair, J.E., additional, Bulyonkova, T.M., additional, Cabral, T.S., additional, Caiafa, M.V., additional, Cantillo, T., additional, Colmán, A.A., additional, Conceição, L.B., additional, Cruz, S., additional, Cunha, A.O.B., additional, Darveaux, B.A., additional, da Silva, A.L., additional, da Silva, G.A., additional, da Silva, G.M., additional, da Silva, R.M.F., additional, de Oliveira, R.J.V., additional, Oliveira, R.L., additional, De Souza, J.T., additional, Dueñas, M., additional, Evans, H.C., additional, Epifani, F., additional, Felipe, M.T.C., additional, Fernández-López, J., additional, Ferreira, B.W., additional, Figueiredo, C.N., additional, Filippova, N.V., additional, Flores, J.A., additional, Gené, J., additional, Ghorbani, G., additional, Gibertoni, T.B., additional, Glushakova, A.M., additional, Healy, R., additional, Huhndorf, S.M., additional, Iturrieta-González, I., additional, Javan-Nikkhah, M., additional, Juciano, R.F., additional, Jurjević, Ž, additional, Kachalkin, A.V., additional, Keochanpheng, K., additional, Krisai-Greilhuber, I., additional, Li, Y.-C., additional, Lima, A.A., additional, Machado, A.R., additional, Madrid, H., additional, Magalhães, O.M.C., additional, Marbach, P.A.S., additional, Melanda, G.C.S., additional, Miller, A.N., additional, Mongkolsamrit, S., additional, Nascimento, R.P., additional, Oliveira, T.G.L., additional, Ordoñez, M.E., additional, Orzes, R., additional, Palma, M.A., additional, Pearce, C.J., additional, Pereira, O.L., additional, Perrone, G., additional, Peterson, S.W., additional, Pham, T.H.G., additional, Piontelli, E., additional, Pordel, A., additional, Quijada, L., additional, Raja, H.A., additional, Rosas de Paz, E., additional, Ryvarden, L., additional, Saitta, A., additional, Salcedo, S.S., additional, Sandoval-Denis, M., additional, Santos, T.A.B., additional, Seifert, K.A., additional, Silva, B.D.B., additional, Smith, M.E., additional, Soares, A.M., additional, Sommai, S., additional, Sousa, J.O., additional, Suetrong, S., additional, Susca, A., additional, Tedersoo, L., additional, Telleria, M.T., additional, Thanakitpipattana, D., additional, Valenzuela-Lopez, N., additional, Visagie, C.M., additional, Zapata, M., additional, and Groenewald, J.Z., additional
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- 2018
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18. OC10.06: Complement biomarker C5b-9 is associated with abnormal umbilical and MCA artery Doppler in hypertensive disease in pregnancy <34 weeks: the COPA study
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Tolosa, J.E., primary, Velasquez, J., additional, Valencia, C.M., additional, Gutierrez-Marin, J.H., additional, Sanin-Blair, J.E., additional, Trujillo-Otalvaro, J., additional, Quintero, A., additional, Silva, J.L., additional, Vargas-Rodriguez, J., additional, Bernal-Gonzalez, Y., additional, Echeverry-Coral, S., additional, Edna, F., additional, Rincon, M., additional, and Burwick, R., additional
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- 2018
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19. Fungal Planet description sheets: 785– 867
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Crous, P.W. (Pedro Willem), Luangsa-ard, J.J., Wingfield, M.J., Carnegie, A.J., Hernández-Restrepo, M., Lombard, L., Roux, J., Barreto, R.W., Baseia, I.G., Cano-Lira, J.F., Martín, M.P., Morozova, O.V., Stchigel, A.M., Summerell, B.A., Brandrud, (Tor Erik), Dima, B., García, D., Giraldo, A., Guarro, J., Gusmão, L.F.P., Khamsuntorn, P., Noordeloos, M.E., Nuankaew, S., Pinruan, U., Rodríguez-Andrade, E., Souza-Motta, C.M., Thangavel, R., van Iperen, A.L., Abreu, V.P., Accioly, T., Alves, J.L., Andrade, J.P., Bahram, M., Baral, H.-O., Barbier, E., Barnes, C.W., Bendiksen, Egil, Bernard, E., Bezerra, J.D.P., Bezerra, J.L., Bizio, E., Blair, J.E., Bulyonkova, T.M., Cabral , T.S., Caiafa, M.V., Cantillo, T., Colmán, A.A., Conceição, L.B., Cruz, S., Cunha, A.O.B., Darveaux, B.A., da Silva, A.L., da Silva, G.A., da Silva, G.M., da Silva, R.M.F., de Oliveira, R.J.V., Oliveira, R.L., De Souza, J.T., Dueñas, M., Evans, H.C., Epifani, F., Felipe, M.T.C., Fernández-López, J., Ferreira, B.W., Figueiredo, C.N., Filippova, N.V., Flores, J.A., Gené, J., Ghorbani, G., Gibertoni, T.B., Glushakova, A.M., Healy, R., Huhndorf, S.M., Iturrieta-González, I., Javan-Nikkhah, M., Juciano, R.F., Jurjević, Ž, Kachalkin, A.V., Keochanpheng, K., Krisai-Greilhuber, I., Li, Y.-C., Lima, A.A., Machado, A.R., Madrid, H., Magalhães, O.M.C., Marbach, P.A.S., Melanda, G.C.S., Miller, A.N., Mongkolsamrit, S., Nascimento, R.P., Oliveira, T.G.L., Ordoñez, M.E., Orzes, R., Palma, M.A., Pearce, C.J., Pereira, O.L., Perrone, G., Peterson, S.W., Pham, T.H.G., Piontelli, E., Pordel, A., Quijada, L., Raja, H.A., Rosas de Paz, E., Ryvarden, L., Saitta, A., Salcedo, S.S., Sandoval-Denis, M., Santos, T.A.B., Seifert, K.A., Silva, B.D.B., Smith, M.E., Soares, A.M., Sommai, S., Sousa, J.O., Suetrong, S., Susca, A., Tedersoo, L., Telleria, M.T., Thanakitpipattana, D., Valenzuela-Lopez, N., Visagie, C.M., Zapata, M., Groenewald, J.Z., Crous, P.W. (Pedro Willem), Luangsa-ard, J.J., Wingfield, M.J., Carnegie, A.J., Hernández-Restrepo, M., Lombard, L., Roux, J., Barreto, R.W., Baseia, I.G., Cano-Lira, J.F., Martín, M.P., Morozova, O.V., Stchigel, A.M., Summerell, B.A., Brandrud, (Tor Erik), Dima, B., García, D., Giraldo, A., Guarro, J., Gusmão, L.F.P., Khamsuntorn, P., Noordeloos, M.E., Nuankaew, S., Pinruan, U., Rodríguez-Andrade, E., Souza-Motta, C.M., Thangavel, R., van Iperen, A.L., Abreu, V.P., Accioly, T., Alves, J.L., Andrade, J.P., Bahram, M., Baral, H.-O., Barbier, E., Barnes, C.W., Bendiksen, Egil, Bernard, E., Bezerra, J.D.P., Bezerra, J.L., Bizio, E., Blair, J.E., Bulyonkova, T.M., Cabral , T.S., Caiafa, M.V., Cantillo, T., Colmán, A.A., Conceição, L.B., Cruz, S., Cunha, A.O.B., Darveaux, B.A., da Silva, A.L., da Silva, G.A., da Silva, G.M., da Silva, R.M.F., de Oliveira, R.J.V., Oliveira, R.L., De Souza, J.T., Dueñas, M., Evans, H.C., Epifani, F., Felipe, M.T.C., Fernández-López, J., Ferreira, B.W., Figueiredo, C.N., Filippova, N.V., Flores, J.A., Gené, J., Ghorbani, G., Gibertoni, T.B., Glushakova, A.M., Healy, R., Huhndorf, S.M., Iturrieta-González, I., Javan-Nikkhah, M., Juciano, R.F., Jurjević, Ž, Kachalkin, A.V., Keochanpheng, K., Krisai-Greilhuber, I., Li, Y.-C., Lima, A.A., Machado, A.R., Madrid, H., Magalhães, O.M.C., Marbach, P.A.S., Melanda, G.C.S., Miller, A.N., Mongkolsamrit, S., Nascimento, R.P., Oliveira, T.G.L., Ordoñez, M.E., Orzes, R., Palma, M.A., Pearce, C.J., Pereira, O.L., Perrone, G., Peterson, S.W., Pham, T.H.G., Piontelli, E., Pordel, A., Quijada, L., Raja, H.A., Rosas de Paz, E., Ryvarden, L., Saitta, A., Salcedo, S.S., Sandoval-Denis, M., Santos, T.A.B., Seifert, K.A., Silva, B.D.B., Smith, M.E., Soares, A.M., Sommai, S., Sousa, J.O., Suetrong, S., Susca, A., Tedersoo, L., Telleria, M.T., Thanakitpipattana, D., Valenzuela-Lopez, N., Visagie, C.M., Zapata, M., and Groenewald, J.Z.
- Abstract
Novel species of fungi described in this study include those from various countries as follows: Angola, Gnomoniopsis angolensis and Pseudopithomyces angolensis on unknown host plants. Australia, Dothiora corymbiae on Corymbia citriodora, Neoeucasphaeria eucalypti (incl. Neoeucasphaeria gen. nov.) on Eucalyptus sp., Fumagopsis stellae on Eucalyptus sp., Fusculina eucalyptorum (incl. Fusculinaceae fam. nov.) on Eucalyptus socialis, Harknessia corymbiicola on Corymbia maculata, Neocelosporium eucalypti (incl. Neocelosporium gen. nov., Neocelosporiaceae fam. nov. and Neocelosporiales ord. nov.) on Eucalyptus cyanophylla, Neophaeomoniella corymbiae on Corymbia citriodora, Neophaeomoniella eucalyptigena on Eucalyptus pilularis, Pseudoplagiostoma corymbiicola on Corymbia citriodora, Teratosphaeria gracilis on Eucalyptus gracilis, Zasmidium corymbiae on Corymbia citriodora. Brazil, Calonectria hemileiae on pustules of Hemileia vastatrix formed on leaves of Coffea arabica, Calvatia caatinguensis on soil, Cercospora solani-betacei on Solanum betaceum, Clathrus natalensis on soil, Diaporthe poincianellae on Poincianella pyramidalis, Geastrum piquiriunense on soil, Geosmithia carolliae on wing of Carollia perspicillata, Henningsia resupinata on wood, Penicillium guaibinense from soil, Periconia caespitosa from leaf litter, Pseudocercospora styracina on Styrax sp., Simplicillium filiforme as endophyte from Citrullus lanatus, Thozetella pindobacuensis on leaf litter, Xenosonderhenia coussapoae on Coussapoa floccosa. Canary Islands (Spain), Orbilia amarilla on Euphorbia canariensis. Cape Verde Islands, Xylodon jacobaeus on Eucalyptus camaldulensis. Chile, Colletotrichum arboricola on Fuchsia magellanica. Costa Rica, Lasiosphaeria miniovina on tree branch. Ecuador, Ganoderma chocoense on tree trunk. France, Neofitzroyomyces nerii (incl. Neofitzroyomyces gen. nov.) on Nerium oleander. Ghana, Castanediella tereticornis on Eucalyptus tereticornis, Falcocladium africanum on Eucalyptus
- Published
- 2018
- Full Text
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20. Chronic interstitial granulomatous dermatitis in coccidioidomycosis
- Author
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Mangold, A.R., primary, DiCaudo, D.J., additional, Blair, J.E., additional, and Sekulic, A., additional
- Published
- 2016
- Full Text
- View/download PDF
21. Oomycota beta-tubulin gene, partial cds.
- Author
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Hyde, K.D., Nilsson, R.H., Alias, S.A., Ariyawansa, H.A., Blair, J.E., Cai, L., de Cock, A.W.A.M., Dissanayake, A.J., Glockling, S.L., Goonasekara, I.D., Gorczak, M., Hahn, M., Jayawardena, R.S., van Kan, J.A.L., Laurence, M.H., Lévesque, C.A., Li, X., Liu, J.K., Maharachchikumbura, S.S.N., Manamgoda, D.S., Martin, F.N., McKenzie, E.H.C., McTaggart, A.R., Mortimer, P.E., Nair, P.V.R., Pawlowska, J., Rintoul, T.L., Shivas, R.G., Spies, C.F.J., Summerell, B.A., Taylor, P.W.J., Terhem, R.B., Udayanga, D., Vaghefi, N., Walther, G., Wilk, M., Wrzosek, M., Xu, J.C., Yan, J.Y., Zhou, N., Hyde, K.D., Nilsson, R.H., Alias, S.A., Ariyawansa, H.A., Blair, J.E., Cai, L., de Cock, A.W.A.M., Dissanayake, A.J., Glockling, S.L., Goonasekara, I.D., Gorczak, M., Hahn, M., Jayawardena, R.S., van Kan, J.A.L., Laurence, M.H., Lévesque, C.A., Li, X., Liu, J.K., Maharachchikumbura, S.S.N., Manamgoda, D.S., Martin, F.N., McKenzie, E.H.C., McTaggart, A.R., Mortimer, P.E., Nair, P.V.R., Pawlowska, J., Rintoul, T.L., Shivas, R.G., Spies, C.F.J., Summerell, B.A., Taylor, P.W.J., Terhem, R.B., Udayanga, D., Vaghefi, N., Walther, G., Wilk, M., Wrzosek, M., Xu, J.C., Yan, J.Y., and Zhou, N.
- Published
- 2015
22. Diagnosis, treatment, and outcomes of coccidioidomycosis in allogeneic stem cell transplantation
- Author
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Mendoza, N., primary, Noel, P., additional, and Blair, J.E., additional
- Published
- 2015
- Full Text
- View/download PDF
23. One stop shop: backbones trees for important phytopathogenic genera: I (2014)
- Author
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Hyde, K.D., Nilsson, R.H., Alias, S.A., Ariyawansa, H.A., Blair, J.E., Cai, L., de Cock, A.W.A.M., Dissanayake, A.J., Glockling, S.L., Goonasekara, I.D., Gorczak, M., Hahn, M., Jayawardena, R.S., van Kan, J.A.L., Laurence, M.H., Lévesque, C.A., Li, X., Liu, J.K., Maharachchikumbura, S.S.N., Manamgoda, D.S., Martin, F.N., McKenzie, E.H.C., McTaggart, A.R., Mortimer, P.E., Nair, P.V.R., Pawlowska, J., Rintoul, T.L., Shivas, R.G., Spies, C.F.J., Summerell, B.A., Taylor, P.W.J., Terhem, R.B., Udayanga, D., Vaghefi, N., Walther, G., Wilk, M., Wrzosek, M., Xu, J.C., Yan, J.Y., Zhou, N., Hyde, K.D., Nilsson, R.H., Alias, S.A., Ariyawansa, H.A., Blair, J.E., Cai, L., de Cock, A.W.A.M., Dissanayake, A.J., Glockling, S.L., Goonasekara, I.D., Gorczak, M., Hahn, M., Jayawardena, R.S., van Kan, J.A.L., Laurence, M.H., Lévesque, C.A., Li, X., Liu, J.K., Maharachchikumbura, S.S.N., Manamgoda, D.S., Martin, F.N., McKenzie, E.H.C., McTaggart, A.R., Mortimer, P.E., Nair, P.V.R., Pawlowska, J., Rintoul, T.L., Shivas, R.G., Spies, C.F.J., Summerell, B.A., Taylor, P.W.J., Terhem, R.B., Udayanga, D., Vaghefi, N., Walther, G., Wilk, M., Wrzosek, M., Xu, J.C., Yan, J.Y., and Zhou, N.
- Abstract
Many fungi are pathogenic on plants and cause significant damage in agriculture and forestry. They are also part of the natural ecosystem and may play a role in regulating plant numbers/density. Morphological identification and analysis of plant pathogenic fungi, while important, is often hampered by the scarcity of discriminatory taxonomic characters and the endophytic or inconspicuous nature of these fungi. Molecular (DNA sequence) data for plant pathogenic fungi have emerged as key information for diagnostic and classification studies, although hampered in part by non-standard laboratory practices and analytical methods. To facilitate current and future research, this study provides phylogenetic synopses for 25 groups of plant pathogenic fungi in the Ascomycota, Basidiomycota, Mucormycotina (Fungi), and Oomycota, using recent molecular data, up-to-date names, and the latest taxonomic insights. Lineage-specific laboratory protocols together with advice on their application, as well as general observations, are also provided. We hope to maintain updated backbone trees of these fungal lineages over time and to publish them jointly as new data emerge. Researchers of plant pathogenic fungi not covered by the present study are invited to join this future effort. Bipolaris, Botryosphaeriaceae, Botryosphaeria, Botrytis, Choanephora, Colletotrichum, Curvularia, Diaporthe, Diplodia, Dothiorella, Fusarium, Gilbertella, Lasiodiplodia, Mucor, Neofusicoccum, Pestalotiopsis, Phyllosticta, Phytophthora, Puccinia, Pyrenophora, Pythium, Rhizopus, Stagonosporopsis, Ustilago and Verticillium are dealt with in this paper.
- Published
- 2014
24. Cutaneous legionellosis: case report and review of the medical literature
- Author
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Padrnos, L.J., primary, Blair, J.E., additional, Kusne, S., additional, DiCaudo, D.J., additional, and Mikhael, J.R., additional
- Published
- 2014
- Full Text
- View/download PDF
25. Successful kidney transplantation after coccidioidal meningitis
- Author
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Kokseng, S.L., primary and Blair, J.E., additional
- Published
- 2010
- Full Text
- View/download PDF
26. 575. Antithymocyte globulin does not raise risk of coccidioidomycosis: coccidioidomycosis after renal transplantation in an endemic area
- Author
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Braddy, C.M., Heilman, R.L., and Blair, J.E.
- Subjects
Health - Published
- 2006
27. Coccidioidomycosis masked by symptoms of end‐stage liver disease in transplant candidates
- Author
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Sachdev, M.S., primary, Blair, J.E., additional, Mulligan, D.C., additional, and Kusne, S., additional
- Published
- 2007
- Full Text
- View/download PDF
28. Coccidioidomycosis in healthy persons evaluated for liver or kidney donation
- Author
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Blair, J.E., primary and Mulligan, D.C., additional
- Published
- 2007
- Full Text
- View/download PDF
29. Coccidioidomycosis After Renal Transplantation in an Endemic Area
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Braddy, C.M., primary, Heilman, R.L., additional, and Blair, J.E., additional
- Published
- 2006
- Full Text
- View/download PDF
30. Coccidioidal pneumonia, arthritis, and soft‐tissue infection after kidney transplantation
- Author
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Blair, J.E., primary
- Published
- 2004
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- View/download PDF
31. Early results of targeted prophylaxis for coccidioidomycosis in patients undergoing orthotopic liver transplantation within an endemic area
- Author
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Blair, J.E., primary, Douglas, D.D., additional, and Mulligan, D.C., additional
- Published
- 2003
- Full Text
- View/download PDF
32. Ultrastructural Identification of Exocytosis of Granules from Human Gut Eosinophils in vivo
- Author
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Dvorak, A.M., primary, Onderdonk, A.B., additional, McLeod, R.S., additional, Monahan-Earley, R.A., additional, Antonioli, D.A., additional, Cullen, J., additional, Blair, J.E., additional, Cisneros, R., additional, Letourneau, L., additional, Morgan, E., additional, Silen, W., additional, and Cohen, Z., additional
- Published
- 1993
- Full Text
- View/download PDF
33. Ultrastructural Evidence for Piecemeal and Anaphylactic Degranulation of Human Gut Mucosal Mast Cells in vivo
- Author
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Dvorak, Ann M., primary, McLeod, R.S., additional, Onderdonk, Andrew, additional, Monahan-Earley, Rita A., additional, Cullen, J.B., additional, Antonioli, Donald A., additional, Morgan, Ellen, additional, Blair, J.E., additional, Estrella, Patricia, additional, Cisneros, R.L., additional, Silen, William, additional, and Cohen, Zane, additional
- Published
- 1992
- Full Text
- View/download PDF
34. Fungal-treated Cottonseed Meal for Swine
- Author
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Kornegay, E.T., Kelly, R.F., Campbell, T.C., Libke, K.G., Sandrock, F.W., and Blair, J.E.
- Abstract
Forty growing pigs were used to evaluate the detoxification of gossypol in cottonseed meal using Diplodiainoculation. The following dietary treatments were used: 1) uninoculated soybean meal (control), 2) Diplodia-inoculated soybean meal, 3) uninoculated cottonseed meal, 4) Diplodia-inoculated cottonseed meal, and 5) uninoculated cottonseed meal plus ferrous sulfate. Corn was the major source of energy in all rations with all rations being fortified with minerals and vitamins. Diets 3, 4 and 5 were calculated to contain 0.054% free gossypol. Based upon improved daily gain, diet intake and feed efficiency and reduced mortality rate, fermentation with Diplodiaand the addition of ferrous sulfate were both effective in detoxifying gossypol. Liver free and bound gossypol levels were lower for the fermented cottonseed meal diet. There was no evidence for an unidentified growth factor. Chemical composition and amino acid content of the meals were not changed by inoculation. A large amount by weight of the meals was lost during fermentation, 44 and 25%, respectively, for soybean and cottonseed meals.
- Published
- 1972
- Full Text
- View/download PDF
35. Studies on polynucleotides
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Wells, Robert D., primary and Blair, J.E., additional
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- 1967
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- View/download PDF
36. Studies on polynucleotides: LXXI. Sedimentation and buoyant density studies of some DNA-like polymers with repeating nucleotide sequences
- Author
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Wells, Robert D. and Blair, J.E.
- Published
- 1967
- Full Text
- View/download PDF
37. Single-Center Comparison of Watchman vs Amulet Left Atrial Appendage Closure Device to Treat Patients with Non-Valvular Atrial Fibrillation.
- Author
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Bahga, A.S., Smazil, J., Roark, L., Friant, J., Conway, B., Karim, A., Nathan, S., Paul, J., Sharma, P., Blair, J.E., and Shah, A.P.
- Subjects
- *
ATRIAL fibrillation , *AMULETS - Published
- 2024
- Full Text
- View/download PDF
38. Fungal Planet description sheets: 785– 867
- Author
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E. Piontelli, Angus J. Carnegie, Michael J. Wingfield, Giancarlo Perrone, T. Cantillo, S. S. Salcedo, María P. Martín, R. Orzes, Thays Gabrielle Lins de Oliveira, G.M. da Silva, Marcelo Sandoval-Denis, J.P. Andrade, Huzefa A. Raja, Mohammad Bahram, M.T. Telleria, Stephen W. Peterson, Enrico Bernard, Jadson D. P. Bezerra, A. R. Machado, Eder Barbier, Gislaine Cristina de Souza Melanda, Bálint Dima, V.P. Abreu, Suchada Mongkolsamrit, J. T. De Souza, T.H.G. Pham, Enrico Bizio, Tatiana Baptista Gibertoni, E. Rodríguez-Andrade, Aleksey V. Kachalkin, Tiago Santos, Tor Erik Brandrud, Andrew N. Miller, Dania García, Iuri Goulart Baseia, E. Rosas de Paz, U. Pinruan, L.B. Conceição, J.A. Flores, Margarita Hernández-Restrepo, Adriene Mayra Soares, Jaime E. Blair, Leho Tedersoo, Luis Quijada, Cedric J. Pearce, B.W. Ferreira, Cobus M. Visagie, J. F. Cano-Lira, Cristina Maria de Souza-Motta, R.J.V. de Oliveira, Julieth O. Sousa, A.L. da Silva, G. A. da Silva, Keith A. Seifert, R.L. Oliveira, Margarita Dueñas, Alejandra Giraldo, R.P. Nascimento, N. Valenzuela-Lopez, G. Ghorbani, Leif Ryvarden, Johannes Z. Groenewald, K. Keochanpheng, Javier Fernández-López, A.A. Colmán, Jolanda Roux, AA Lima, Josepa Gené, S. Cruz, Thiago Accioly, Egil Bendiksen, Alberto M. Stchigel, Bianca Denise Barbosa da Silva, Robert W. Barreto, M.A. Palma, P. Khamsuntorn, M. Zapata, Satinee Suetrong, Hugo Madrid, M.V. Caiafa, S. Sommai, T.S. Cabral, D. Thanakitpipattana, R. M. da Silva, Lorenzo Lombard, O.V. Morozova, M.E. Ordoñez, Hans-Otto Baral, Željko Jurjević, Sabine M. Huhndorf, C. W. Barnes, Janaina L. Alves, Mohammad Javan-Nikkhah, Matthew E. Smith, Pedro W. Crous, I. Iturrieta-González, Alessandro Saitta, R. Thangavel, Nina V. Filippova, Rosanne A. Healy, Y.-C. Li, Filomena Epifani, A.O.B. Cunha, Olinto Liparini Pereira, J. Jennifer Luangsa-ard, Blaise A. Darveaux, Oliane Maria Correia Magalhães, C.N. Figueiredo, M.T.C. Felipe, José Jailson Lima Bezerra, Brett A. Summerell, Luís Fernando Pascholati Gusmão, A. van Iperen, Antonia Susca, Harry C. Evans, P.A.S. Marbach, R.F. Juciano, Machiel E. Noordeloos, T. M. Bulyonkova, Adel Pordel, S. Nuankaew, A. M. Glushakova, Josep Guarro, Irmgard Krisai-Greilhuber, Westerdijk Fungal Biodiversity Institute - Evolutionary Phytopathology, Westerdijk Fungal Biodiversity Institute, Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (Brasil), Conselho Nacional de Desenvolvimento Científico e Tecnológico (Brasil), Fundação de Amparo à Ciência e Tecnologia do Estado de Pernambuco, Centro Nacional de Pesquisa e Conservação de Cavernas (Brasil), Instituto Chico Mendes de Conservação da Biodiversidade (Brasil), Fundação de Amparo à Pesquisa do Estado de São Paulo Minas Gerais, Russian Academy of Sciences, Russian Foundation for Basic Research, Association of Southeast Asian Nations, Ministerio de Economía y Competitividad (España), Pontificia Universidad Católica del Ecuador, International Association for Plant Taxonomy, Comisión Nacional de Investigación Científica y Tecnológica (Chile), Fondo Nacional de Desarrollo Científico y Tecnológico (Chile), Norwegian Biodiversity Information Centre, Federal Ministry of Science, Research and Economy (Austria), Instituto Brasileiro do Meio Ambiente e dos Recursos Naturais Renováveis, Forestry Corporation of NSW, University of Tehran, Fundación Ramón Areces, Texas A&M University, Alfred P. Sloan Foundation, Australian Government, BHP Billiton, Earthwatch Institute, National Geographic Society, Martín, María P. [0000-0002-1235-4418], Crous, P.W., Luangsa-ard, J.J., Wingfield, M.J., Carnegie, A.J., Hernández-Restrepo, M., Lombard, L., Roux, J., Barreto, R.W., Baseia, I.G., Cano-Lira, J.F., Martín, M.P., Morozova, O.V., Stchigel, A.M., Summerell, B.A., Brandrud, T.E., Dima, B., García, D., Giraldo, A., Guarro, J., Gusmão, L.F.P., Khamsuntorn, P., Noordeloos, M.E., Nuankaew, S., Pinruan, U., Rodríguez-Andrade, E., Souza-Motta, C.M., Thangavel, R., van Iperen, A.L., Abreu, V.P., Accioly, T., Alves, J.L., Andrade, J.P., Bahram, M., Baral, H.-O., Barbier, E., Barnes, C.W., Bendiksen, E., Bernard, E., Bezerra, J.D.P., Bezerra, J.L., Bizio, E., Blair, J.E., Bulyonkova, T.M., Cabral, T.S., Caiafa, M.V., Cantillo, T., Colmán, A.A., Conceição, L.B., Cruz, S., Cunha, A.O.B., Darveaux, B.A., da Silva, A.L., da Silva, G.A., da Silva, G.M., da Silva, R.M.F., de Oliveira, R.J.V., Oliveira, R.L., De Souza, J.T., Dueñas, M., Evans, H.C., Epifani, F., Felipe, M.T.C., Fernández-López, J., Ferreira, B.W., Figueiredo, C.N., Filippova, N.V., Flores, J.A., Gené, J., Ghorbani, G., Gibertoni, T.B., Glushakova, A.M., Healy, R., Huhndorf, S.M., Iturrieta-González, I., Javan-Nikkhah, M., Juciano, R.F., Jurjević, Ž, Kachalkin, A.V., Keochanpheng, K., Krisai-Greilhuber, I., Li, Y.-C., Lima, A.A., Machado, A.R., Madrid, H., Magalhães, O.M.C., Marbach, P.A.S., Melanda, G.C.S., Miller, A.N., Mongkolsamrit, S., Nascimento, R.P., Oliveira, T.G.L., Ordoñez, M.E., Orzes, R., Palma, M.A., Pearce, C.J., Pereira, O.L., Perrone, G., Peterson, S.W., Pham, T.H.G., Piontelli, E., Pordel, A., Quijada, L., Raja, H.A., Rosas de Paz, E., Ryvarden, L., Saitta, A., Salcedo, S.S., Sandoval-Denis, M., Santos, T.A.B., Seifert, K.A., Silva, B.D.B., Smith, M.E., Soares, A.M., Sommai, S., Sousa, J.O., Suetrong, S., Susca, A., Tedersoo, L., Telleria, M.T., Thanakitpipattana, D., Valenzuela-Lopez, N., Visagie, C.M., Zapata, M., Groenewald, J.Z., and Martín, María P.
- Subjects
0301 basic medicine ,ITS nrDNA barcodes ,food.ingredient ,Evolution ,Corymbia citriodora ,Matematikk og Naturvitenskap: 400::Zoologiske og botaniske fag: 480 [VDP] ,Cape verde ,03 medical and health sciences ,food ,Behavior and Systematics ,New taxa ,Systematics ,Botany ,ITS nrDNA barcode ,Ecology, Evolution, Behavior and Systematics ,LSU ,biology ,Ecology ,Eucalyptus brassiana ,Settore BIO/02 - Botanica Sistematica ,030108 mycology & parasitology ,biology.organism_classification ,Eucalyptus ,Eucalyptus pilularis ,Eucalyptus camaldulensis ,Eucalyptus gracilis ,Corymbia maculata - Abstract
Novel species of fungi described in this study include those from various countries as follows: Angola, Gnomoniopsis angolensis and Pseudopithomyces angolensis on unknown host plants. Australia, Dothiora corymbiae on Corymbia citriodora, Neoeucasphaeria eucalypti (incl. Neoeucasphaeria gen. nov.)on Eucalyptus sp., Fumagopsis stellae on Eucalyptus sp., Fusculina eucalyptorum (incl. Fusculinaceae fam. nov.) on Eucalyptus socialis, Harknessia corymbiicola on Corymbia maculata, Neocelosporium eucalypti (incl. Neocelosporium gen. nov., Neocelosporiaceae fam. nov. and Neocelosporiales ord. nov.) on Eucalyptus cyanophylla, Neophaeomoniella corymbiae on Corymbia citriodora, Neophaeomoniella eucalyptigena on Eucalyptus pilularis, Pseudoplagiostoma corymbiicola on Corymbia citriodora, Teratosphaeria gracilis on Eucalyptus gracilis, Zasmidium corymbiae on Corymbia citriodora. Brazil, Calonectria hemileiae on pustules of Hemileia vastatrix formed on leaves of Coffea arabica, Calvatia caatinguensis on soil, Cercospora solani-betacei on Solanum betaceum, Clathrus natalensis on soil, Diaporthe poincianellae on Poincianella pyramidalis, Geastrum piquiriunense on soil, Geosmithia carolliae on wing of Carollia perspicillata, Henningsia resupinata on wood, Penicillium guaibinense from soil, Periconia caespitosa from leaf litter, Pseudocercospora styracina on Styrax sp., Simplicillium filiforme as endophyte from Citrullus lanatus, Thozetella pindobacuensis on leaf litter, Xenosonderhenia coussapoae on Coussapoa floccosa., Canary Islands (Spain), Orbilia amarilla on Euphorbia canariensis. Cape Verde Islands, Xylodon jacobaeus on Eucalyptus camaldulensis. Chile, Colletotrichum arboricola on Fuchsia magellanica. Costa Rica, Lasiosphaeria miniovina ontreebranch. Ecuador, Ganoderma chocoense ontreetrunk. France, Neofitzroyomyces nerii (incl. Neofitzroyomyces gen. nov.) on Nerium oleander. Ghana, Castanediella tereticornis on Eucalyptus tereticornis, Falcocladium africanum on Eucalyptus brassiana, Rachicladosporium corymbiae on Corymbia citriodora. Hungary, Entoloma silvae-frondosae in Carpinus betulus-Pinus sylvestris mixedforest. Iran, Pseudopyricularia persiana on Cyperus sp. Italy, Inocybe roseascens onsoilinmixedforest. Laos, Ophiocordyceps houaynhangensis on Coleoptera larva. Malaysia, Monilochaetes melastomae on Melastoma sp. Mexico, Absidia terrestris fromsoil. Netherlands, Acaulium pannemaniae, Conioscypha boutwelliae, Fusicolla septimanifiniscientiae, Gibellulopsis simonii, Lasionectria hilhorstii, Lectera nordwiniana, Leptodiscella rintelii, Parasarocladium debruynii and Sarocladium dejongiae (incl. Sarocladiaceae fam. nov.) fromsoil. New Zealand, Gnomoniopsis rosae on Rosa sp. and Neodevriesia metrosideri on Metrosideros sp. Puerto Rico, Neodevriesia coccolobae on Coccoloba uvifera, Neodevriesia tabebuiae and Alfaria tabebuiae on Tabebuia chrysantha . Russia, Amanita paludosa on bogged soil in mixed deciduous forest, Entoloma tiliae in forest of Tilia × europaea, Kwoniella endophytica on Pyrus communis., South Africa, Coniella diospyri on Diospyros mespiliformis, Neomelanconiella combreti (incl. Neomelanconiellaceae fam. nov. and Neomelanconiella gen. nov.)on Combretum sp., Polyphialoseptoria natalensis on unidentified plant host, Pseudorobillarda bolusanthi on Bolusanthus speciosus, Thelonectria pelargonii on Pelargonium sp. Spain, Vermiculariopsiella lauracearum and Anungitopsis lauri on Laurus novocanariensis, Geosmithia xerotolerans from a darkened wall of a house, Pseudopenidiella gallaica on leaf litter. Thailand, Corynespora thailandica on wood, Lareunionomyces loeiensis on leaf litter, Neocochlearomyces chromolaenae (incl. Neocochlearomyces gen. nov.) on Chromolaena odorata, Neomyrmecridium septatum (incl. Neomyrmecridium gen. nov .), Pararamichloridium caricicola on Carex sp., Xenodactylaria thailandica (incl. Xenodactylariaceae fam. nov. and Xenodactylaria gen. nov.), Neomyrmecridium asiaticum and Cymostachys thailandica fromunidentifiedvine. USA, Carolinigaster bonitoi (incl. Carolinigaster gen. nov.)fromsoil, Penicillium fortuitum from house dust, Phaeotheca shathenatiana (incl. Phaeothecaceae fam. nov.) from twig and cone litter, Pythium wohlseniorum from stream water, Superstratomyces tardicrescens from human eye, Talaromyces iowaense from officeair. Vietnam, Fistulinella olivaceoalba onsoil. Morphological and culture characteristics along with DNA barcodes are provided Novel species of fungi described in this study include those from various countries as follows: Angola, Gnomoniopsis angolensis and Pseudopithomyces angolensis on unknown host plants. Australia, Dothiora corymbiae on Corymbia citriodora, Neoeucasphaeria eucalypti (incl. Neoeucasphaeria gen. nov.)on Eucalyptus sp., Fumagopsis stellae on Eucalyptus sp., Fusculina eucalyptorum (incl. Fusculinaceae fam. nov.) on Eucalyptus socialis, Harknessia corymbiicola on Corymbia maculata, Neocelosporium eucalypti (incl. Neocelosporium gen. nov., Neocelosporiaceae fam. nov. and Neocelosporiales ord. nov.) on Eucalyptus cyanophylla, Neophaeomoniella corymbiae on Corymbia citriodora, Neophaeomoniella eucalyptigena on Eucalyptus pilularis, Pseudoplagiostoma corymbiicola on Corymbia citriodora, Teratosphaeria gracilis on Eucalyptus gracilis, Zasmidium corymbiae on Corymbia citriodora. Brazil, Calonectria hemileiae on pustules of Hemileia vastatrix formed on leaves of Coffea arabica, Calvatia caatinguensis on soil, Cercospora solani-betacei on Solanum betaceum, Clathrus natalensis on soil, Diaporthe poincianellae on Poincianella pyramidalis, Geastrum piquiriunense on soil, Geosmithia carolliae on wing of Carollia perspicillata, Henningsia resupinata on wood, Penicillium guaibinense from soil, Periconia caespitosa from leaf litter, Pseudocercospora styracina on Styrax sp., Simplicillium filiforme as endophyte from Citrullus lanatus, Thozetella pindobacuensis on leaf litter, Xenosonderhenia coussapoae on Coussapoa floccosa., Canary Islands (Spain), Orbilia amarilla on Euphorbia canariensis. Cape Verde Islands, Xylodon jacobaeus on Eucalyptus camaldulensis. Chile, Colletotrichum arboricola on Fuchsia magellanica. Costa Rica, Lasiosphaeria miniovina ontreebranch. Ecuador, Ganoderma chocoense ontreetrunk. France, Neofitzroyomyces nerii (incl. Neofitzroyomyces gen. nov.) on Nerium oleander. Ghana, Castanediella tereticornis on Eucalyptus tereticornis, Falcocladium africanum on Eucalyptus brassiana, Rachicladosporium corymbiae on Corymbia citriodora. Hungary, Entoloma silvae-frondosae in Carpinus betulus-Pinus sylvestris mixedforest. Iran, Pseudopyricularia persiana on Cyperus sp. Italy, Inocybe roseascens onsoilinmixedforest. Laos, Ophiocordyceps houaynhangensis on Coleoptera larva. Malaysia, Monilochaetes melastomae on Melastoma sp. Mexico, Absidia terrestris fromsoil. Netherlands, Acaulium pannemaniae, Conioscypha boutwelliae, Fusicolla septimanifiniscientiae, Gibellulopsis simonii, Lasionectria hilhorstii, Lectera nordwiniana, Leptodiscella rintelii, Parasarocladium debruynii and Sarocladium dejongiae (incl. Sarocladiaceae fam. nov.) fromsoil. New Zealand, Gnomoniopsis rosae on Rosa sp. and Neodevriesia metrosideri on Metrosideros sp. Puerto Rico, Neodevriesia coccolobae on Coccoloba uvifera, Neodevriesia tabebuiae and Alfaria tabebuiae on Tabebuia chrysantha., Russia, Amanita paludosa on bogged soil in mixed deciduous forest, Entoloma tiliae in forest of Tilia × europaea, Kwoniella endophytica on Pyrus communis. South Africa, Coniella diospyri on Diospyros mespiliformis, Neomelanconiella combreti (incl. Neomelanconiellaceae fam. nov. and Neomelanconiella gen. nov.)on Combretum sp., Polyphialoseptoria natalensis on unidentified plant host, Pseudorobillarda bolusanthi on Bolusanthus speciosus, Thelonectria pelargonii on Pelargonium sp. Spain, Vermiculariopsiella lauracearum and Anungitopsis lauri on Laurus novocanariensis, Geosmithia xerotolerans from a darkened wall of a house, Pseudopenidiella gallaica on leaf litter. Thailand, Corynespora thailandica on wood, Lareunionomyces loeiensis on leaf litter, Neocochlearomyces chromolaenae (incl. Neocochlearomyces gen. nov.) on Chromolaena odorata, Neomyrmecridium septatum (incl. Neomyrmecridium gen. nov .), Pararamichloridium caricicola on Carex sp., Xenodactylaria thailandica (incl. Xenodactylariaceae fam. nov. and Xenodactylaria gen. nov.), Neomyrmecridium asiaticum and Cymostachys thailandica fromunidentifiedvine. USA, Carolinigaster bonitoi (incl. Carolinigaster gen. nov.)fromsoil, Penicillium fortuitum from house dust, Phaeotheca shathenatiana (incl. Phaeothecaceae fam. nov.) from twig and cone litter, Pythium wohlseniorum from stream water, Superstratomyces tardicrescens from human eye, Talaromyces iowaense from officeair. Vietnam, Fistulinella olivaceoalba onsoil. Morphological and culture characteristics along with DNA barcodes are provided., Tatiana M. Bulyonkova and colleagues are grateful to Dr Rodham Tulloss for his patient guidance and help, and to Dr Torbjørn Borgen Lindhardt for his invaluable advice. Thays G.L. Oliveira, Maria T.C. Felipe, Jadson D.P. Bezerra and Oliane M. C. Magalhães acknowledge financial support and/or scholarships from the CAPES (Finance Code 001), CNPq and FACEPE. Aline O.B. da Cunha, Alexandre R. Machado, Eder Barbier, Enrico Bernard and Cristina M. Souza-Motta acknowledge financial support and/or scholarships from the CAPES (Finance Code 001), CNPq, FACEPE, CECAV and ICMBio from Brazil. Rejane M.F. da Silva and colleagues express their gratitude to the Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES) for a scholarship to Rejane M.F. da Silva and to the Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq) for a research fellowships and/or financial support to Gladstone A. da Silva, Cristina M. Souza-Motta, José L. Bezerra and Rafael J.V. de Oliveira (Processes 458622/2014-1 and 312186/2016-9). Olinto L. Pereira, Vanessa P. Abreu, Jackeline P. Andrade and colleagues would like to thank the CNPq, CAPES and FAPEMIG for financial support. The study of Olga V. Morozova was carried out within the framework of a research project of the Komarov Botanical Institute RAS ‘Herbarium funds of the BIN RAS’ (АААА-А18-118022090078-2) with the support of the molecular work by the Russian Foundation for the Basic Research (project no. 15-29-02622). Anna M. Glushakova and Aleksey V. Kachalkin were supported by the Russian Foundation for Basic Research (RFBR), project no. 16-04-00624a. Janet Jennifer Luangsa-ard and colleagues were supported by ‘The Promotion Project on Science, Technology and Innovation Collaboration with ASEAN Member Countries under the Office of International Cooperation, MOSTThailand’. They would also like to thank Ms Duangkaew Chongkachornphong, Ms Papawee Nupason (International Cooperation Section, BIOTEC) and Ms Bakeo Souvannalath (Director of Biotechnology Division, Biotechnology and Ecology Institute, BEI) for their kind cooperation. Javier Fernández-López and colleagues are grateful to Marian Glenn for checking the text, and were supported by DGICT projects CGL2012-35559 and CGL2015-67459-P., Javier Fernández-López was also supported by Predoctoral Grants (BES- 2013-066429) from the Ministerio de Economía y Competitividad (Spain). Maria E. Ordoñez and colleagues acknowledge Pontificia Universidad Católica del Ecuador for financial support for project M13415. Taimy Cantillo is thankful to PEC-PG/CAPES for the PhD grant (proc. 12636134/2014) (Finance Code 001) and to the International Association for Plant Taxonomy (IAPT) for the Research Grant. Luis F.P. Gusmão is grateful to CNPq for Grant support (Proc. 303062/2014-2). Hugo Madrid was partially funded by Comisión Nacional de Investigación Científica y Tecnológica (CONICYT), Fondo Nacional de Desarrollo Científico y Tecnológico (FONDECYT), Chile, project no. 11140562. Tor Erik Brandrud, Bálint Dima, Machiel E. Noordeloos and Egil Bendiksen thank the financial support of the Norwegian Taxonomy Initiative, with funding from the Norwegian Biodiversity Information Centre (NBIC), The Austrian Entoloma material (by Irmgard Krisai-Greilhuber) was sequenced within ABOL, subproject HRSFM University of Vienna, supported by the Austrian Federal Ministry of Education, Science and Research. Adriene M. Soares and colleagues would like to thank the Instituto Chico Mendes de Conservação da Biodiversidade (ICMBio) and the Instituto Brasileiro de Meio Ambiente (IBAMA) for support during field trips and R.L.M. Alvarenga for the figures. They also acknowledge CAPES for the Ph.D. scholarship of Adriene M. Soares, and CNPq (307601/2015-3), CAPES (CAPES-SIU 008/13), and FACEPE (APQ-0375-2.03/15) for financial support. Angus J. Carnegie acknowledges support from the Forestry Corporation of NSW, and David Sargeant for assistance with site photos. Adel Pordel and colleagues thank the University of Tehran for financial support. Luis Quijada acknowledges support from ‘Fundación Ramón Areces’. Robert W. Barreto and colleagues thank the World Coffee Research/Texas Agrilife for financial support, as well as the Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq), the Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES). Sara Salcedo-Sarmiento was supported by the ‘Programa de Estudante-Convênio de Pós-Graduação’ (PEC-PG) from CAPES. The research of Cobus M. Visagie and Keith A. Seifert was supported by grants from the Alfred P. Sloan Foundation Program on the Microbiology of the Built Environment. Blaise A. Darvaux acknowledges Keith A. Seifert for help with identification, Nicholas Mauriello for validating the Latin name, Mauricia Lawrence and Meagan Tillotson for help with material preparation. We are grateful to Gavin Phillips, Seed Bank Officer, Australian Botanic Garden, Mt Annan for field assistance and identification of plant species collected in New South Wales, Australia. Collection of specimens from Mungo National Park was supported by the ABRS Bush Blitz program, a partnership between the Australian Government, BHP and Earthwatch Australia. The National Geographic Okavango Wilderness Project is acknowledged for assistance and funding to J. Roux for material collected in Angola.
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- 2018
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