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Global metagenomic survey reveals a new bacterial candidate phylum in geothermal springs

Analysis of the increasing wealth of metagenomic data collected from diverse environments can lead to the discovery of novel branches on the tree of life. Here we analyse 5.2 Tb of metagenomic data collected globally to discover a novel bacterial phylum (‘Candidatus Kryptonia') found exclusivel...

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Autores principales: Eloe-Fadrosh, Emiley A., Paez-Espino, David, Jarett, Jessica, Dunfield, Peter F., Hedlund, Brian P., Dekas, Anne E., Grasby, Stephen E., Brady, Allyson L., Dong, Hailiang, Briggs, Brandon R., Li, Wen-Jun, Goudeau, Danielle, Malmstrom, Rex, Pati, Amrita, Pett-Ridge, Jennifer, Rubin, Edward M., Woyke, Tanja, Kyrpides, Nikos C., Ivanova, Natalia N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4737851/
https://www.ncbi.nlm.nih.gov/pubmed/26814032
http://dx.doi.org/10.1038/ncomms10476
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author Eloe-Fadrosh, Emiley A.
Paez-Espino, David
Jarett, Jessica
Dunfield, Peter F.
Hedlund, Brian P.
Dekas, Anne E.
Grasby, Stephen E.
Brady, Allyson L.
Dong, Hailiang
Briggs, Brandon R.
Li, Wen-Jun
Goudeau, Danielle
Malmstrom, Rex
Pati, Amrita
Pett-Ridge, Jennifer
Rubin, Edward M.
Woyke, Tanja
Kyrpides, Nikos C.
Ivanova, Natalia N.
author_facet Eloe-Fadrosh, Emiley A.
Paez-Espino, David
Jarett, Jessica
Dunfield, Peter F.
Hedlund, Brian P.
Dekas, Anne E.
Grasby, Stephen E.
Brady, Allyson L.
Dong, Hailiang
Briggs, Brandon R.
Li, Wen-Jun
Goudeau, Danielle
Malmstrom, Rex
Pati, Amrita
Pett-Ridge, Jennifer
Rubin, Edward M.
Woyke, Tanja
Kyrpides, Nikos C.
Ivanova, Natalia N.
author_sort Eloe-Fadrosh, Emiley A.
collection PubMed
description Analysis of the increasing wealth of metagenomic data collected from diverse environments can lead to the discovery of novel branches on the tree of life. Here we analyse 5.2 Tb of metagenomic data collected globally to discover a novel bacterial phylum (‘Candidatus Kryptonia') found exclusively in high-temperature pH-neutral geothermal springs. This lineage had remained hidden as a taxonomic ‘blind spot' because of mismatches in the primers commonly used for ribosomal gene surveys. Genome reconstruction from metagenomic data combined with single-cell genomics results in several high-quality genomes representing four genera from the new phylum. Metabolic reconstruction indicates a heterotrophic lifestyle with conspicuous nutritional deficiencies, suggesting the need for metabolic complementarity with other microbes. Co-occurrence patterns identifies a number of putative partners, including an uncultured Armatimonadetes lineage. The discovery of Kryptonia within previously studied geothermal springs underscores the importance of globally sampled metagenomic data in detection of microbial novelty, and highlights the extraordinary diversity of microbial life still awaiting discovery.
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spelling pubmed-47378512016-03-04 Global metagenomic survey reveals a new bacterial candidate phylum in geothermal springs Eloe-Fadrosh, Emiley A. Paez-Espino, David Jarett, Jessica Dunfield, Peter F. Hedlund, Brian P. Dekas, Anne E. Grasby, Stephen E. Brady, Allyson L. Dong, Hailiang Briggs, Brandon R. Li, Wen-Jun Goudeau, Danielle Malmstrom, Rex Pati, Amrita Pett-Ridge, Jennifer Rubin, Edward M. Woyke, Tanja Kyrpides, Nikos C. Ivanova, Natalia N. Nat Commun Article Analysis of the increasing wealth of metagenomic data collected from diverse environments can lead to the discovery of novel branches on the tree of life. Here we analyse 5.2 Tb of metagenomic data collected globally to discover a novel bacterial phylum (‘Candidatus Kryptonia') found exclusively in high-temperature pH-neutral geothermal springs. This lineage had remained hidden as a taxonomic ‘blind spot' because of mismatches in the primers commonly used for ribosomal gene surveys. Genome reconstruction from metagenomic data combined with single-cell genomics results in several high-quality genomes representing four genera from the new phylum. Metabolic reconstruction indicates a heterotrophic lifestyle with conspicuous nutritional deficiencies, suggesting the need for metabolic complementarity with other microbes. Co-occurrence patterns identifies a number of putative partners, including an uncultured Armatimonadetes lineage. The discovery of Kryptonia within previously studied geothermal springs underscores the importance of globally sampled metagenomic data in detection of microbial novelty, and highlights the extraordinary diversity of microbial life still awaiting discovery. Nature Publishing Group 2016-01-27 /pmc/articles/PMC4737851/ /pubmed/26814032 http://dx.doi.org/10.1038/ncomms10476 Text en Copyright © 2016, Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved. http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Eloe-Fadrosh, Emiley A.
Paez-Espino, David
Jarett, Jessica
Dunfield, Peter F.
Hedlund, Brian P.
Dekas, Anne E.
Grasby, Stephen E.
Brady, Allyson L.
Dong, Hailiang
Briggs, Brandon R.
Li, Wen-Jun
Goudeau, Danielle
Malmstrom, Rex
Pati, Amrita
Pett-Ridge, Jennifer
Rubin, Edward M.
Woyke, Tanja
Kyrpides, Nikos C.
Ivanova, Natalia N.
Global metagenomic survey reveals a new bacterial candidate phylum in geothermal springs
title Global metagenomic survey reveals a new bacterial candidate phylum in geothermal springs
title_full Global metagenomic survey reveals a new bacterial candidate phylum in geothermal springs
title_fullStr Global metagenomic survey reveals a new bacterial candidate phylum in geothermal springs
title_full_unstemmed Global metagenomic survey reveals a new bacterial candidate phylum in geothermal springs
title_short Global metagenomic survey reveals a new bacterial candidate phylum in geothermal springs
title_sort global metagenomic survey reveals a new bacterial candidate phylum in geothermal springs
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4737851/
https://www.ncbi.nlm.nih.gov/pubmed/26814032
http://dx.doi.org/10.1038/ncomms10476
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