Distinct patterns of marine bacterial communities in the South and North Pacific Oceans

The study of oceanic microbial communities is crucial for our understanding of the role of microbes in terms of biomass, diversity and ecosystem function. In this study, 16S rRNA gene tag pyrosequencing was used to investigate change in bacterial community structure between summer and winter water m...

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Published inThe journal of microbiology Vol. 52; no. 10; pp. 834 - 841
Main Authors Suh, Sung-Suk, Park, Mirye, Hwang, Jinik, Lee, Sukchan, Chung, Youngjae, Lee, Taek-Kyun
Format Journal Article
LanguageEnglish
Published Heidelberg Springer-Verlag 01.10.2014
The Microbiological Society of Korea
Springer Nature B.V
한국미생물학회
Subjects
Online AccessGet full text
ISSN1225-8873
1976-3794
1976-3794
DOI10.1007/s12275-014-4287-6

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Abstract The study of oceanic microbial communities is crucial for our understanding of the role of microbes in terms of biomass, diversity and ecosystem function. In this study, 16S rRNA gene tag pyrosequencing was used to investigate change in bacterial community structure between summer and winter water masses from Gosung Bay in the South Sea of Korea and Chuuk in Micronesia, located in the North and South Pacific Oceans, respectively. Summer and winter sampling from each water mass revealed highly diverse bacterial communities, containing ~900 Operational Taxonomic Units (OTUs). The microbial distribution and highly heterogeneous composition observed at both sampling sites were different from those of most macroorganisms. The bacterial communities in the seawater at both sites were most abundant in Proteobacteria during the summer in Gosung and in Bacterioidetes during the winter. The proportion of Cyanobacteria was higher in summer than in winter in Chuuk and similar in Gosung. Additionally, the microbial community during summer in Gosung was significantly different from other communities observed based on the unweighted UniFrac distance. These data suggest that in both oceanic areas sampled, the bacterial communities had distinct distribution patterns with spatially- and temporally-heterogeneous distributions.
AbstractList The study of oceanic microbial communities is crucial for our understanding of the role of microbes in terms of biomass, diversity and ecosystem function. In this study, 16S rRNA gene tag pyrosequencing was used to investigate change in bacterial community structure between summer and winter water masses from Gosung Bay in the South Sea of Korea and Chuuk in Micronesia, located in the North and South Pacific Oceans, respectively. Summer and winter sampling from each water mass revealed highly diverse bacterial communities, containing ~900 Operational Taxonomic Units (OTUs). The microbial distribution and highly heterogeneous composition observed at both sampling sites were different from those of most macroorganisms. The bacterial communities in the seawater at both sites were most abundant in Proteobacteria during the summer in Gosung and in Bacterioidetes during the winter. The proportion of Cyanobacteria was higher in summer than in winter in Chuuk and similar in Gosung. Additionally, the microbial community during summer in Gosung was significantly different from other communities observed based on the unweighted UniFrac distance. These data suggest that in both oceanic areas sampled, the bacterial communities had distinct distribution patterns with spatially- and temporally-heterogeneous distributions.
The study of oceanic microbial communities is crucial forour understanding of the role of microbes in terms of biomass,diversity and ecosystem function. In this study, 16SrRNA gene tag pyrosequencing was used to investigatechange in bacterial community structure between summerand winter water masses from Gosung Bay in the South Seaof Korea and Chuuk in Micronesia, located in the Northand South Pacific Oceans, respectively. Summer and wintersampling from each water mass revealed highly diverse bacterialcommunities, containing ~900 Operational TaxonomicUnits (OTUs). The microbial distribution and highly heterogeneouscomposition observed at both sampling sites weredifferent from those of most macroorganisms. The bacterialcommunities in the seawater at both sites were most abundantin Proteobacteria during the summer in Gosung andin Bacterioidetes during the winter. The proportion of Cyanobacteriawas higher in summer than in winter in Chuukand similar in Gosung. Additionally, the microbial communityduring summer in Gosung was significantly differentfrom other communities observed based on the unweightedUniFrac distance. These data suggest that in both oceanicareas sampled, the bacterial communities had distinct distributionpatterns with spatially- and temporally-heterogeneousdistributions. KCI Citation Count: 9
The study of oceanic microbial communities is crucial for our understanding of the role of microbes in terms of biomass, diversity and ecosystem function. In this study, 16S rRNA gene tag pyrosequencing was used to investigate change in bacterial community structure between summer and winter water masses from Gosung Bay in the South Sea of Korea and Chuuk in Micronesia, located in the North and South Pacific Oceans, respectively. Summer and winter sampling from each water mass revealed highly diverse bacterial communities, containing ~900 Operational Taxonomic Units (OTUs). The microbial distribution and highly heterogeneous composition observed at both sampling sites were different from those of most macroorganisms. The bacterial communities in the seawater at both sites were most abundant in Proteobacteria during the summer in Gosung and in Bacterioidetes during the winter. The proportion of Cyanobacteria was higher in summer than in winter in Chuuk and similar in Gosung. Additionally, the microbial community during summer in Gosung was significantly different from other communities observed based on the unweighted UniFrac distance. These data suggest that in both oceanic areas sampled, the bacterial communities had distinct distribution patterns with spatially- and temporally-heterogeneous distributions.[PUBLICATION ABSTRACT]
The study of oceanic microbial communities is crucial for our understanding of the role of microbes in terms of biomass, diversity and ecosystem function. In this study, 16S rRNA gene tag pyrosequencing was used to investigate change in bacterial community structure between summer and winter water masses from Gosung Bay in the South Sea of Korea and Chuuk in Micronesia, located in the North and South Pacific Oceans, respectively. Summer and winter sampling from each water mass revealed highly diverse bacterial communities, containing ~900 Operational Taxonomic Units (OTUs). The microbial distribution and highly heterogeneous composition observed at both sampling sites were different from those of most macroorganisms. The bacterial communities in the seawater at both sites were most abundant in Proteobacteria during the summer in Gosung and in Bacterioidetes during the winter. The proportion of Cyanobacteria was higher in summer than in winter in Chuuk and similar in Gosung. Additionally, the microbial community during summer in Gosung was significantly different from other communities observed based on the unweighted UniFrac distance. These data suggest that in both oceanic areas sampled, the bacterial communities had distinct distribution patterns with spatially- and temporally-heterogeneous distributions.The study of oceanic microbial communities is crucial for our understanding of the role of microbes in terms of biomass, diversity and ecosystem function. In this study, 16S rRNA gene tag pyrosequencing was used to investigate change in bacterial community structure between summer and winter water masses from Gosung Bay in the South Sea of Korea and Chuuk in Micronesia, located in the North and South Pacific Oceans, respectively. Summer and winter sampling from each water mass revealed highly diverse bacterial communities, containing ~900 Operational Taxonomic Units (OTUs). The microbial distribution and highly heterogeneous composition observed at both sampling sites were different from those of most macroorganisms. The bacterial communities in the seawater at both sites were most abundant in Proteobacteria during the summer in Gosung and in Bacterioidetes during the winter. The proportion of Cyanobacteria was higher in summer than in winter in Chuuk and similar in Gosung. Additionally, the microbial community during summer in Gosung was significantly different from other communities observed based on the unweighted UniFrac distance. These data suggest that in both oceanic areas sampled, the bacterial communities had distinct distribution patterns with spatially- and temporally-heterogeneous distributions.
The study of oceanic microbial communities is crucial for our understanding of the role of microbes in terms of biomass, diversity and ecosystem function. In this study, 16S rRNA gene tag pyrosequencing was used to investigate change in bacterial community structure between summer and winter water masses from Gosung Bay in the South Sea of Korea and Chuuk in Micronesia, located in the North and South Pacific Oceans, respectively. Summer and winter sampling from each water mass revealed highly diverse bacterial communities, containing ~900 Operational Taxonomic Units (OTUs). The microbial distribution and highly heterogeneous composition observed at both sampling sites were different from those of most macroorganisms. The bacterial communities in the seawater at both sites were most abundant in Proteobacteria during the summer in Gosung and in Bacterioidetes during the winter. The proportion of Cyanobacteria was higher in summer than in winter in Chuuk and similar in Gosung. Additionally, the microbial community during summer in Gosung was significantly different from other communities observed based on the unweighted UniFrac distance. These data suggest that in both oceanic areas sampled, the bacterial communities had distinct distribution patterns with spatially- and temporally-heterogeneous distributions.
Author Hwang, Jinik
Park, Mirye
Suh, Sung-Suk
Lee, Sukchan
Chung, Youngjae
Lee, Taek-Kyun
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PublicationDate_xml – month: 10
  year: 2014
  text: 2014-10-01
  day: 01
PublicationDecade 2010
PublicationPlace Heidelberg
PublicationPlace_xml – name: Heidelberg
– name: Korea (South)
– name: Seoul
PublicationTitle The journal of microbiology
PublicationTitleAbbrev J Microbiol
PublicationTitleAlternate J Microbiol
PublicationYear 2014
Publisher Springer-Verlag
The Microbiological Society of Korea
Springer Nature B.V
한국미생물학회
Publisher_xml – name: Springer-Verlag
– name: The Microbiological Society of Korea
– name: Springer Nature B.V
– name: 한국미생물학회
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Snippet The study of oceanic microbial communities is crucial for our understanding of the role of microbes in terms of biomass, diversity and ecosystem function. In...
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SubjectTerms Bacteria
Bacteria - classification
Bacteria - genetics
bacterial communities
Biogeography
biomass
Biomedical and Life Sciences
Biota
Chemical analysis
Chuuk
Cluster Analysis
Community structure
Cyanobacteria
DNA, Bacterial - chemistry
DNA, Bacterial - genetics
DNA, Ribosomal - chemistry
DNA, Ribosomal - genetics
Ecological function
ecosystems
genes
Genetic engineering
Korean Peninsula
Life Sciences
Microbial activity
Microbiology
Micronesia
microorganisms
Oceans
Pacific Ocean
Phylogeny
Proteobacteria
ribosomal RNA
RNA, Ribosomal, 16S - genetics
Seasons
Seawater
Seawater - microbiology
sequence analysis
Sequence Analysis, DNA
Summer
Taxonomy
Water analysis
Winter
생물학
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Title Distinct patterns of marine bacterial communities in the South and North Pacific Oceans
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