Zobrazeno 1 - 10
of 241
pro vyhledávání: '"F, Messer"'
Autor:
Lauren F. Messer, David G. Bourne, Steven J. Robbins, Megan Clay, Sara C. Bell, Simon J. McIlroy, Gene W. Tyson
Publikováno v:
Nature Communications, Vol 15, Iss 1, Pp 1-15 (2024)
Abstract Microbial diversity has been extensively explored in reef-building corals. However, the functional roles of coral-associated microorganisms remain poorly elucidated. Here, we recover 191 bacterial and 10 archaeal metagenome-assembled genomes
Externí odkaz:
https://doaj.org/article/6f49ee6979334168b6c8733611f1af11
Publikováno v:
Microbiome, Vol 12, Iss 1, Pp 1-19 (2024)
Abstract Background Microbial functioning on marine plastic surfaces has been poorly documented, especially within cold climates where temperature likely impacts microbial activity and the presence of hydrocarbonoclastic microorganisms. To date, only
Externí odkaz:
https://doaj.org/article/cdf81bbfd40b493cb7de7517106813d9
Autor:
Mark V. Brown, Martin Ostrowski, Lauren F. Messer, Anna Bramucci, Jodie van de Kamp, Matthew C. Smith, Andrew Bissett, Justin Seymour, Alistair J. Hobday, Levente Bodrossy
Publikováno v:
Communications Biology, Vol 7, Iss 1, Pp 1-14 (2024)
Abstract Marine heatwaves (MHWs) cause disruption to marine ecosystems, deleteriously impacting macroflora and fauna. However, effects on microorganisms are relatively unknown despite ocean temperature being a major determinant of assemblage structur
Externí odkaz:
https://doaj.org/article/10d01eb16621460980c79bd5f063a782
Autor:
Z. Shao, Y. Xu, H. Wang, W. Luo, L. Wang, Y. Huang, N. S. R. Agawin, A. Ahmed, M. Benavides, M. Bentzon-Tilia, I. Berman-Frank, H. Berthelot, I. C. Biegala, M. B. Bif, A. Bode, S. Bonnet, D. A. Bronk, M. V. Brown, L. Campbell, D. G. Capone, E. J. Carpenter, N. Cassar, B. X. Chang, D. Chappell, Y.-L. Chen, M. J. Church, F. M. Cornejo-Castillo, A. M. S. Detoni, S. C. Doney, C. Dupouy, M. Estrada, C. Fernandez, B. Fernández-Castro, D. Fonseca-Batista, R. A. Foster, K. Furuya, N. Garcia, K. Goto, J. Gago, M. R. Gradoville, M. R. Hamersley, B. A. Henke, C. Hörstmann, A. Jayakumar, Z. Jiang, S.-J. Kao, D. M. Karl, L. R. Kittu, A. N. Knapp, S. Kumar, J. LaRoche, H. Liu, J. Liu, C. Lory, C. R. Löscher, E. Marañón, L. F. Messer, M. M. Mills, W. Mohr, P. H. Moisander, C. Mahaffey, R. Moore, B. Mouriño-Carballido, M. R. Mulholland, S. Nakaoka, J. A. Needoba, E. J. Raes, E. Rahav, T. Ramírez-Cárdenas, C. F. Reeder, L. Riemann, V. Riou, J. C. Robidart, V. V. S. S. Sarma, T. Sato, H. Saxena, C. Selden, J. R. Seymour, D. Shi, T. Shiozaki, A. Singh, R. E. Sipler, J. Sun, K. Suzuki, K. Takahashi, Y. Tan, W. Tang, J.-É. Tremblay, K. Turk-Kubo, Z. Wen, A. E. White, S. T. Wilson, T. Yoshida, J. P. Zehr, R. Zhang, Y. Zhang, Y.-W. Luo
Publikováno v:
Earth System Science Data, Vol 15, Pp 3673-3709 (2023)
Marine diazotrophs convert dinitrogen (N2) gas into bioavailable nitrogen (N), supporting life in the global ocean. In 2012, the first version of the global oceanic diazotroph database (version 1) was published. Here, we present an updated version of
Externí odkaz:
https://doaj.org/article/1237611228b24f379a945a880ff82d90
Publikováno v:
PeerJ, Vol 9, p e10809 (2021)
Biological dinitrogen (N2) fixation is one mechanism by which specific microorganisms (diazotrophs) can ameliorate nitrogen (N) limitation. Historically, rates of N2 fixation were believed to be limited outside of the low nutrient tropical and subtro
Externí odkaz:
https://doaj.org/article/5a15e5fa8763464395ce43e3236c320d
Autor:
Lisa R. Moore, Taotao Huang, Martin Ostrowski, Sophie Mazard, Sheemal S. Kumar, Hasinika K. A. H. Gamage, Mark V. Brown, Lauren F. Messer, Justin R. Seymour, Ian T. Paulsen
Publikováno v:
Frontiers in Microbiology, Vol 9 (2019)
The tropical marine environments of northern Australia encompasses a diverse range of geomorphological and oceanographic conditions and high levels of productivity and nitrogen fixation. However, efforts to characterize phytoplankton assemblages in t
Externí odkaz:
https://doaj.org/article/3e1a52ec9ba24df8a31d6b3311104d47
Autor:
Lauren F. Messer, Mark V. Brown, Miles J. Furnas, Richard L. Carney, A. D. McKinnon, Justin R. Seymour
Publikováno v:
Frontiers in Microbiology, Vol 8 (2017)
Discrepancies between bioavailable nitrogen (N) concentrations and phytoplankton growth rates in the oligotrophic waters of the Great Barrier Reef (GBR) suggest that undetermined N sources must play a significant role in supporting primary productivi
Externí odkaz:
https://doaj.org/article/8973de854b604be69f45c71e4fec8df0
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Autor:
Lucy C.M. Omeyer, Emily M. Duncan, Kornrawee Aiemsomboon, Nicola Beaumont, Sujaree Bureekul, Bin Cao, Luis R. Carrasco, Suchana Chavanich, James R. Clark, Muhammad R. Cordova, Fay Couceiro, Simon M. Cragg, Neil Dickson, Pierre Failler, Gianluca Ferraro, Stephen Fletcher, Jenny Fong, Alex T. Ford, Tony Gutierrez, Fauziah Shahul Hamid, Jan G. Hiddink, Pham T. Hoa, Sophie I. Holland, Lowenna Jones, Nia H. Jones, Heather Koldewey, Federico M. Lauro, Charlotte Lee, Matt Lewis, Danny Marks, Sabine Matallana-Surget, Claudia G. Mayorga-Adame, John McGeehan, Lauren F. Messer, Laura Michie, Michelle A. Miller, Zeeda F. Mohamad, Nur Hazimah Mohamed Nor, Moritz Müller, Simon P. Neill, Sarah E. Nelms, Deo Florence L. Onda, Joyce J.L. Ong, Agamuthu Pariatamby, Sui C. Phang, Richard Quilliam, Peter E. Robins, Maria Salta, Aida Sartimbul, Shiori Shakuto, Martin W. Skov, Evelyn B. Taboada, Peter A. Todd, Tai Chong Toh, Suresh Valiyaveettil, Voranop Viyakarn, Passorn Wonnapinij, Louisa E. Wood, Clara L.X. Yong, Brendan J. Godley
Publikováno v:
The Science of the total environment. 841
Southeast Asia is considered to have some of the highest levels of marine plastic pollution in the world. It is therefore vitally important to increase our understanding of the impacts and risks of plastic pollution to marine ecosystems and the essen
Autor:
Martina A. Doblin, Katherina Petrou, Sutinee Sinutok, Justin R. Seymour, Lauren F. Messer, Mark V. Brown, Louiza Norman, Jason D. Everett, Allison S. McInnes, Peter J. Ralph, Peter A. Thompson, Christel S. Hassler
Publikováno v:
PeerJ, Vol 4, p e1973 (2016)
The intensification of western boundary currents in the global ocean will potentially influence meso-scale eddy generation, and redistribute microbes and their associated ecological and biogeochemical functions. To understand eddy-induced changes in
Externí odkaz:
https://doaj.org/article/225236f87290463db33b55dd66711ffd