Marine Community Metabolomes Carry Fingerprints of Phytoplankton Community Composition
Microscopic phytoplankton transform 100 million tons of inorganic carbon into thousands of different organic compounds each day. The structure of each chemical is critical to its biological and ecosystem function, yet the diversity of biomolecules produced by marine microbial communities remained m...
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American Society for Microbiology
2021
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oai:doaj.org-article:2c3d098f53944276b245c2275592d2f02021-12-02T18:48:30ZMarine Community Metabolomes Carry Fingerprints of Phytoplankton Community Composition2379-507710.1128/mSystems.01334-20https://doaj.org/article/2c3d098f53944276b245c2275592d2f02021-06-01T00:00:00Zhttps://journals.asm.org/doi/10.1128/mSystems.01334-20https://doaj.org/toc/2379-5077 Microscopic phytoplankton transform 100 million tons of inorganic carbon into thousands of different organic compounds each day. The structure of each chemical is critical to its biological and ecosystem function, yet the diversity of biomolecules produced by marine microbial communities remained mainly unexplored, especially small polar molecules which are often considered the currency of the microbial loop.Katherine R. HealBryndan P. DurhamAngela K. BoysenLaura T. CarlsonWei QinFrançois RibaletAngelicque E. WhiteRandelle M. BundyE. Virginia ArmbrustAnitra E. IngallsAmerican Society for MicrobiologyarticleMicrobiologyQR1-502ENmSystems, Vol 6, Iss 3 (2021) |
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EN |
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Microbiology QR1-502 |
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Microbiology QR1-502 Katherine R. Heal Bryndan P. Durham Angela K. Boysen Laura T. Carlson Wei Qin François Ribalet Angelicque E. White Randelle M. Bundy E. Virginia Armbrust Anitra E. Ingalls Marine Community Metabolomes Carry Fingerprints of Phytoplankton Community Composition |
description |
Microscopic phytoplankton transform 100 million tons of inorganic carbon into thousands of different organic compounds each day. The structure of each chemical is critical to its biological and ecosystem function, yet the diversity of biomolecules produced by marine microbial communities remained mainly unexplored, especially small polar molecules which are often considered the currency of the microbial loop. |
format |
article |
author |
Katherine R. Heal Bryndan P. Durham Angela K. Boysen Laura T. Carlson Wei Qin François Ribalet Angelicque E. White Randelle M. Bundy E. Virginia Armbrust Anitra E. Ingalls |
author_facet |
Katherine R. Heal Bryndan P. Durham Angela K. Boysen Laura T. Carlson Wei Qin François Ribalet Angelicque E. White Randelle M. Bundy E. Virginia Armbrust Anitra E. Ingalls |
author_sort |
Katherine R. Heal |
title |
Marine Community Metabolomes Carry Fingerprints of Phytoplankton Community Composition |
title_short |
Marine Community Metabolomes Carry Fingerprints of Phytoplankton Community Composition |
title_full |
Marine Community Metabolomes Carry Fingerprints of Phytoplankton Community Composition |
title_fullStr |
Marine Community Metabolomes Carry Fingerprints of Phytoplankton Community Composition |
title_full_unstemmed |
Marine Community Metabolomes Carry Fingerprints of Phytoplankton Community Composition |
title_sort |
marine community metabolomes carry fingerprints of phytoplankton community composition |
publisher |
American Society for Microbiology |
publishDate |
2021 |
url |
https://doaj.org/article/2c3d098f53944276b245c2275592d2f0 |
work_keys_str_mv |
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