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author Thompson, Luke R.
Sanders, Jon G.
McDonald, Daniel
Amir, Amnon
Ladau, Joshua
Locey, Kenneth J.
Prill, Robert J.
Tripathi, Anupriya
Gibbons, Sean M.
Ackermann, Gail
Navas-Molina, Jose A.
Janssen, Stefan
Kopylova, Evguenia
Vázquez-Baeza, Yoshiki
González, Antonio
Morton, James T.
Mirarab, Siavash
Zech Xu, Zhenjiang
Jiang, Lingjing
Haroon, Mohamed F.
Kanbar, Jad
Zhu, Qiyun
Jin Song, Se
Kosciolek, Tomasz
Bokulich, Nicholas A.
Lefler, Joshua
Brislawn, Colin J.
Humphrey, Gregory
Owens, Sarah M.
Hampton-Marcell, Jarrad
Berg-Lyons, Donna
McKenzie, Valerie
Fierer, Noah
Fuhrman, Jed A.
Clauset, Aaron
Stevens, Rick L.
Shade, Ashley
Pollard, Katherine S.
Goodwin, Kelly D.
Jansson, Janet K.
Gilbert, Jack A.
Knight, Rob
author_facet Thompson, Luke R.
Sanders, Jon G.
McDonald, Daniel
Amir, Amnon
Ladau, Joshua
Locey, Kenneth J.
Prill, Robert J.
Tripathi, Anupriya
Gibbons, Sean M.
Ackermann, Gail
Navas-Molina, Jose A.
Janssen, Stefan
Kopylova, Evguenia
Vázquez-Baeza, Yoshiki
González, Antonio
Morton, James T.
Mirarab, Siavash
Zech Xu, Zhenjiang
Jiang, Lingjing
Haroon, Mohamed F.
Kanbar, Jad
Zhu, Qiyun
Jin Song, Se
Kosciolek, Tomasz
Bokulich, Nicholas A.
Lefler, Joshua
Brislawn, Colin J.
Humphrey, Gregory
Owens, Sarah M.
Hampton-Marcell, Jarrad
Berg-Lyons, Donna
McKenzie, Valerie
Fierer, Noah
Fuhrman, Jed A.
Clauset, Aaron
Stevens, Rick L.
Shade, Ashley
Pollard, Katherine S.
Goodwin, Kelly D.
Jansson, Janet K.
Gilbert, Jack A.
Knight, Rob
author_sort Thompson, Luke R.
collection PubMed
description Our growing awareness of the microbial world’s importance and diversity contrasts starkly with our limited understanding of its fundamental structure. Despite recent advances in DNA sequencing, a lack of standardized protocols and common analytical frameworks impedes comparisons among studies, hindering the development of global inferences about microbial life on Earth. Here we present a meta-analysis of microbial community samples collected by hundreds of researchers for the Earth Microbiome Project. Coordinated protocols and new analytical methods, particularly the use of exact sequences instead of clustered operational taxonomic units, enable bacterial and archaeal ribosomal RNA gene sequences to be followed across multiple studies and allow us to explore patterns of diversity at an unprecedented scale. The result is both a reference database giving global context to DNA sequence data and a framework for incorporating data from future studies, fostering increasingly complete characterization of Earth’s microbial diversity. SUPPLEMENTARY INFORMATION: The online version of this article (doi:10.1038/nature24621) contains supplementary material, which is available to authorized users.
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spelling pubmed-61926782018-10-17 A communal catalogue reveals Earth’s multiscale microbial diversity Thompson, Luke R. Sanders, Jon G. McDonald, Daniel Amir, Amnon Ladau, Joshua Locey, Kenneth J. Prill, Robert J. Tripathi, Anupriya Gibbons, Sean M. Ackermann, Gail Navas-Molina, Jose A. Janssen, Stefan Kopylova, Evguenia Vázquez-Baeza, Yoshiki González, Antonio Morton, James T. Mirarab, Siavash Zech Xu, Zhenjiang Jiang, Lingjing Haroon, Mohamed F. Kanbar, Jad Zhu, Qiyun Jin Song, Se Kosciolek, Tomasz Bokulich, Nicholas A. Lefler, Joshua Brislawn, Colin J. Humphrey, Gregory Owens, Sarah M. Hampton-Marcell, Jarrad Berg-Lyons, Donna McKenzie, Valerie Fierer, Noah Fuhrman, Jed A. Clauset, Aaron Stevens, Rick L. Shade, Ashley Pollard, Katherine S. Goodwin, Kelly D. Jansson, Janet K. Gilbert, Jack A. Knight, Rob Nature Article Our growing awareness of the microbial world’s importance and diversity contrasts starkly with our limited understanding of its fundamental structure. Despite recent advances in DNA sequencing, a lack of standardized protocols and common analytical frameworks impedes comparisons among studies, hindering the development of global inferences about microbial life on Earth. Here we present a meta-analysis of microbial community samples collected by hundreds of researchers for the Earth Microbiome Project. Coordinated protocols and new analytical methods, particularly the use of exact sequences instead of clustered operational taxonomic units, enable bacterial and archaeal ribosomal RNA gene sequences to be followed across multiple studies and allow us to explore patterns of diversity at an unprecedented scale. The result is both a reference database giving global context to DNA sequence data and a framework for incorporating data from future studies, fostering increasingly complete characterization of Earth’s microbial diversity. SUPPLEMENTARY INFORMATION: The online version of this article (doi:10.1038/nature24621) contains supplementary material, which is available to authorized users. Nature Publishing Group UK 2017-11-01 2017 /pmc/articles/PMC6192678/ /pubmed/29088705 http://dx.doi.org/10.1038/nature24621 Text en © The Author(s) 2017 This work is licensed under a Creative Commons Attribution 4.0 International (CC BY 4.0) licence. The images or other third party material in this article are included in the article’s Creative Commons licence, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons licence, users will need to obtain permission from the licence holder to reproduce the material. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Thompson, Luke R.
Sanders, Jon G.
McDonald, Daniel
Amir, Amnon
Ladau, Joshua
Locey, Kenneth J.
Prill, Robert J.
Tripathi, Anupriya
Gibbons, Sean M.
Ackermann, Gail
Navas-Molina, Jose A.
Janssen, Stefan
Kopylova, Evguenia
Vázquez-Baeza, Yoshiki
González, Antonio
Morton, James T.
Mirarab, Siavash
Zech Xu, Zhenjiang
Jiang, Lingjing
Haroon, Mohamed F.
Kanbar, Jad
Zhu, Qiyun
Jin Song, Se
Kosciolek, Tomasz
Bokulich, Nicholas A.
Lefler, Joshua
Brislawn, Colin J.
Humphrey, Gregory
Owens, Sarah M.
Hampton-Marcell, Jarrad
Berg-Lyons, Donna
McKenzie, Valerie
Fierer, Noah
Fuhrman, Jed A.
Clauset, Aaron
Stevens, Rick L.
Shade, Ashley
Pollard, Katherine S.
Goodwin, Kelly D.
Jansson, Janet K.
Gilbert, Jack A.
Knight, Rob
A communal catalogue reveals Earth’s multiscale microbial diversity
title A communal catalogue reveals Earth’s multiscale microbial diversity
title_full A communal catalogue reveals Earth’s multiscale microbial diversity
title_fullStr A communal catalogue reveals Earth’s multiscale microbial diversity
title_full_unstemmed A communal catalogue reveals Earth’s multiscale microbial diversity
title_short A communal catalogue reveals Earth’s multiscale microbial diversity
title_sort communal catalogue reveals earth’s multiscale microbial diversity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6192678/
https://www.ncbi.nlm.nih.gov/pubmed/29088705
http://dx.doi.org/10.1038/nature24621
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