Nitrogenase gene amplicons from global marine surface waters are dominated by genes of non-cyanobacteria.

Cyanobacteria are thought to be the main N(2)-fixing organisms (diazotrophs) in marine pelagic waters, but recent molecular analyses indicate that non-cyanobacterial diazotrophs are also present and active. Existing data are, however, restricted geographically and by limited sequencing depths. Our a...

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Main Authors: Hanna Farnelid, Anders F Andersson, Stefan Bertilsson, Waleed Abu Al-Soud, Lars H Hansen, Søren Sørensen, Grieg F Steward, Åke Hagström, Lasse Riemann
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2011-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3084785?pdf=render
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spelling doaj-5e6b60b939fd4e6d85d5a7eb15e347782020-11-25T01:14:18ZengPublic Library of Science (PLoS)PLoS ONE1932-62032011-01-0164e1922310.1371/journal.pone.0019223Nitrogenase gene amplicons from global marine surface waters are dominated by genes of non-cyanobacteria.Hanna FarnelidAnders F AnderssonStefan BertilssonWaleed Abu Al-SoudLars H HansenSøren SørensenGrieg F StewardÅke HagströmLasse RiemannCyanobacteria are thought to be the main N(2)-fixing organisms (diazotrophs) in marine pelagic waters, but recent molecular analyses indicate that non-cyanobacterial diazotrophs are also present and active. Existing data are, however, restricted geographically and by limited sequencing depths. Our analysis of 79,090 nitrogenase (nifH) PCR amplicons encoding 7,468 unique proteins from surface samples (ten DNA samples and two RNA samples) collected at ten marine locations world-wide provides the first in-depth survey of a functional bacterial gene and yield insights into the composition and diversity of the nifH gene pool in marine waters. Great divergence in nifH composition was observed between sites. Cyanobacteria-like genes were most frequent among amplicons from the warmest waters, but overall the data set was dominated by nifH sequences most closely related to non-cyanobacteria. Clusters related to Alpha-, Beta-, Gamma-, and Delta-Proteobacteria were most common and showed distinct geographic distributions. Sequences related to anaerobic bacteria (nifH Cluster III) were generally rare, but preponderant in cold waters, especially in the Arctic. Although the two transcript samples were dominated by unicellular cyanobacteria, 42% of the identified non-cyanobacterial nifH clusters from the corresponding DNA samples were also detected in cDNA. The study indicates that non-cyanobacteria account for a substantial part of the nifH gene pool in marine surface waters and that these genes are at least occasionally expressed. The contribution of non-cyanobacterial diazotrophs to the global N(2) fixation budget cannot be inferred from sequence data alone, but the prevalence of non-cyanobacterial nifH genes and transcripts suggest that these bacteria are ecologically significant.http://europepmc.org/articles/PMC3084785?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Hanna Farnelid
Anders F Andersson
Stefan Bertilsson
Waleed Abu Al-Soud
Lars H Hansen
Søren Sørensen
Grieg F Steward
Åke Hagström
Lasse Riemann
spellingShingle Hanna Farnelid
Anders F Andersson
Stefan Bertilsson
Waleed Abu Al-Soud
Lars H Hansen
Søren Sørensen
Grieg F Steward
Åke Hagström
Lasse Riemann
Nitrogenase gene amplicons from global marine surface waters are dominated by genes of non-cyanobacteria.
PLoS ONE
author_facet Hanna Farnelid
Anders F Andersson
Stefan Bertilsson
Waleed Abu Al-Soud
Lars H Hansen
Søren Sørensen
Grieg F Steward
Åke Hagström
Lasse Riemann
author_sort Hanna Farnelid
title Nitrogenase gene amplicons from global marine surface waters are dominated by genes of non-cyanobacteria.
title_short Nitrogenase gene amplicons from global marine surface waters are dominated by genes of non-cyanobacteria.
title_full Nitrogenase gene amplicons from global marine surface waters are dominated by genes of non-cyanobacteria.
title_fullStr Nitrogenase gene amplicons from global marine surface waters are dominated by genes of non-cyanobacteria.
title_full_unstemmed Nitrogenase gene amplicons from global marine surface waters are dominated by genes of non-cyanobacteria.
title_sort nitrogenase gene amplicons from global marine surface waters are dominated by genes of non-cyanobacteria.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2011-01-01
description Cyanobacteria are thought to be the main N(2)-fixing organisms (diazotrophs) in marine pelagic waters, but recent molecular analyses indicate that non-cyanobacterial diazotrophs are also present and active. Existing data are, however, restricted geographically and by limited sequencing depths. Our analysis of 79,090 nitrogenase (nifH) PCR amplicons encoding 7,468 unique proteins from surface samples (ten DNA samples and two RNA samples) collected at ten marine locations world-wide provides the first in-depth survey of a functional bacterial gene and yield insights into the composition and diversity of the nifH gene pool in marine waters. Great divergence in nifH composition was observed between sites. Cyanobacteria-like genes were most frequent among amplicons from the warmest waters, but overall the data set was dominated by nifH sequences most closely related to non-cyanobacteria. Clusters related to Alpha-, Beta-, Gamma-, and Delta-Proteobacteria were most common and showed distinct geographic distributions. Sequences related to anaerobic bacteria (nifH Cluster III) were generally rare, but preponderant in cold waters, especially in the Arctic. Although the two transcript samples were dominated by unicellular cyanobacteria, 42% of the identified non-cyanobacterial nifH clusters from the corresponding DNA samples were also detected in cDNA. The study indicates that non-cyanobacteria account for a substantial part of the nifH gene pool in marine surface waters and that these genes are at least occasionally expressed. The contribution of non-cyanobacterial diazotrophs to the global N(2) fixation budget cannot be inferred from sequence data alone, but the prevalence of non-cyanobacterial nifH genes and transcripts suggest that these bacteria are ecologically significant.
url http://europepmc.org/articles/PMC3084785?pdf=render
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