Genomic repertoire of the Woeseiaceae/JTB255, cosmopolitan and abundant core members of microbial communities in marine sediments
To date, very little is known about the bacterial core community of marine sediments. Here we study the environmental distribution, abundance and ecogenomics of the gammaproteobacterial Woeseiaceae /JTB255 marine benthic group. A meta-analysis of published work shows that the Woeseiaceae /JTB255 are...
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| Vydáno v: | The ISME Journal Ročník 11; číslo 5; s. 1276 - 1281 |
|---|---|
| Hlavní autoři: | , , , |
| Médium: | Journal Article |
| Jazyk: | angličtina |
| Vydáno: |
London
Nature Publishing Group UK
01.05.2017
Oxford University Press Nature Publishing Group |
| Témata: | |
| ISSN: | 1751-7362, 1751-7370 |
| On-line přístup: | Získat plný text |
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| Abstract | To date, very little is known about the bacterial core community of marine sediments. Here we study the environmental distribution, abundance and ecogenomics of the gammaproteobacterial
Woeseiaceae
/JTB255 marine benthic group. A meta-analysis of published work shows that the
Woeseiaceae
/JTB255 are ubiquitous and consistently rank among the most abundant 16S rRNA gene sequences in diverse marine sediments. They account for up to 22% of bacterial amplicons and 6% of total cell counts in European and Australian coastal sediments. The analysis of a single-cell genome, metagenomic bins and the genome of the next cultured relative
Woeseia oceani
indicated a broad physiological range, including heterotrophy and facultative autotrophy. All tested (meta)genomes encode a truncated denitrification pathway to nitrous oxide. The broad range of energy-yielding metabolisms possibly explains the ubiquity and high abundance of
Woeseiaceae
/JTB255 in marine sediments, where they carry out diverse, but yet unknown ecological functions. |
|---|---|
| AbstractList | To date, very little is known about the bacterial core community of marine sediments. Here we study the environmental distribution, abundance and ecogenomics of the gammaproteobacterial Woeseiaceae/JTB255 marine benthic group. A meta-analysis of published work shows that the Woeseiaceae/JTB255 are ubiquitous and consistently rank among the most abundant 16S rRNA gene sequences in diverse marine sediments. They account for up to 22% of bacterial amplicons and 6% of total cell counts in European and Australian coastal sediments. The analysis of a single-cell genome, metagenomic bins and the genome of the next cultured relative Woeseia oceani indicated a broad physiological range, including heterotrophy and facultative autotrophy. All tested (meta)genomes encode a truncated denitrification pathway to nitrous oxide. The broad range of energy-yielding metabolisms possibly explains the ubiquity and high abundance of Woeseiaceae/JTB255 in marine sediments, where they carry out diverse, but yet unknown ecological functions. To date, very little is known about the bacterial core community of marine sediments. Here we study the environmental distribution, abundance and ecogenomics of the gammaproteobacterial Woeseiaceae /JTB255 marine benthic group. A meta-analysis of published work shows that the Woeseiaceae /JTB255 are ubiquitous and consistently rank among the most abundant 16S rRNA gene sequences in diverse marine sediments. They account for up to 22% of bacterial amplicons and 6% of total cell counts in European and Australian coastal sediments. The analysis of a single-cell genome, metagenomic bins and the genome of the next cultured relative Woeseia oceani indicated a broad physiological range, including heterotrophy and facultative autotrophy. All tested (meta)genomes encode a truncated denitrification pathway to nitrous oxide. The broad range of energy-yielding metabolisms possibly explains the ubiquity and high abundance of Woeseiaceae /JTB255 in marine sediments, where they carry out diverse, but yet unknown ecological functions. |
| Author | Dyksma, Stefan Mußmann, Marc Pjevac, Petra Krüger, Karen |
| Author_xml | – sequence: 1 givenname: Marc surname: Mußmann fullname: Mußmann, Marc email: mussmann@microbial-ecology.net organization: Department of Molecular Ecology, Max Planck Institute for Marine Microbiology, Division of Microbial Ecology, Department of Microbiology and Ecosystem Science, University of Vienna – sequence: 2 givenname: Petra surname: Pjevac fullname: Pjevac, Petra organization: Division of Microbial Ecology, Department of Microbiology and Ecosystem Science, University of Vienna – sequence: 3 givenname: Karen surname: Krüger fullname: Krüger, Karen organization: Department of Molecular Ecology, Max Planck Institute for Marine Microbiology – sequence: 4 givenname: Stefan surname: Dyksma fullname: Dyksma, Stefan organization: Department of Molecular Ecology, Max Planck Institute for Marine Microbiology |
| BackLink | https://www.ncbi.nlm.nih.gov/pubmed/28060363$$D View this record in MEDLINE/PubMed |
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| Copyright | International Society for Microbial Ecology 2017 Copyright Nature Publishing Group May 2017 Copyright © 2017 International Society for Microbial Ecology 2017 International Society for Microbial Ecology |
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| DOI | 10.1038/ismej.2016.185 |
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| SubjectTerms | 14/32 14/63 45/23 631/326/171/1878 704/158/855 Australia Autotrophic Processes Biomedical and Life Sciences Ecological function Ecology Evolutionary Biology Gammaproteobacteria - classification Gammaproteobacteria - genetics Gammaproteobacteria - isolation & purification Gammaproteobacteria - metabolism Genome, Bacterial Geologic Sediments - microbiology Heterotrophic Processes Life Sciences Marine sediments Metagenomics Microbial activity Microbial Ecology Microbial Genetics and Genomics Microbiology Nitrous oxide Oceans and Seas Phylogeny RNA, Ribosomal, 16S - genetics Short Communication |
| Title | Genomic repertoire of the Woeseiaceae/JTB255, cosmopolitan and abundant core members of microbial communities in marine sediments |
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