Phylogenomics of 10,575 genomes reveals evolutionary proximity between domains Bacteria and Archaea

The authors build a reference phylogeny of 10,575 evenly-sampled bacterial and archaeal genomes, based on 381 markers. The results indicate a remarkably closer evolutionary proximity between Archaea and Bacteria than previous estimates that used fewer “core” genes, such as the ribosomal proteins....

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Autores principales: Qiyun Zhu, Uyen Mai, Wayne Pfeiffer, Stefan Janssen, Francesco Asnicar, Jon G. Sanders, Pedro Belda-Ferre, Gabriel A. Al-Ghalith, Evguenia Kopylova, Daniel McDonald, Tomasz Kosciolek, John B. Yin, Shi Huang, Nimaichand Salam, Jian-Yu Jiao, Zijun Wu, Zhenjiang Z. Xu, Kalen Cantrell, Yimeng Yang, Erfan Sayyari, Maryam Rabiee, James T. Morton, Sheila Podell, Dan Knights, Wen-Jun Li, Curtis Huttenhower, Nicola Segata, Larry Smarr, Siavash Mirarab, Rob Knight
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Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/963471f628f44741a9d932ae0fd75f6b
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spelling oai:doaj.org-article:963471f628f44741a9d932ae0fd75f6b2021-12-02T17:01:27ZPhylogenomics of 10,575 genomes reveals evolutionary proximity between domains Bacteria and Archaea10.1038/s41467-019-13443-42041-1723https://doaj.org/article/963471f628f44741a9d932ae0fd75f6b2019-12-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-13443-4https://doaj.org/toc/2041-1723The authors build a reference phylogeny of 10,575 evenly-sampled bacterial and archaeal genomes, based on 381 markers. The results indicate a remarkably closer evolutionary proximity between Archaea and Bacteria than previous estimates that used fewer “core” genes, such as the ribosomal proteins.Qiyun ZhuUyen MaiWayne PfeifferStefan JanssenFrancesco AsnicarJon G. SandersPedro Belda-FerreGabriel A. Al-GhalithEvguenia KopylovaDaniel McDonaldTomasz KosciolekJohn B. YinShi HuangNimaichand SalamJian-Yu JiaoZijun WuZhenjiang Z. XuKalen CantrellYimeng YangErfan SayyariMaryam RabieeJames T. MortonSheila PodellDan KnightsWen-Jun LiCurtis HuttenhowerNicola SegataLarry SmarrSiavash MirarabRob KnightNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-14 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Qiyun Zhu
Uyen Mai
Wayne Pfeiffer
Stefan Janssen
Francesco Asnicar
Jon G. Sanders
Pedro Belda-Ferre
Gabriel A. Al-Ghalith
Evguenia Kopylova
Daniel McDonald
Tomasz Kosciolek
John B. Yin
Shi Huang
Nimaichand Salam
Jian-Yu Jiao
Zijun Wu
Zhenjiang Z. Xu
Kalen Cantrell
Yimeng Yang
Erfan Sayyari
Maryam Rabiee
James T. Morton
Sheila Podell
Dan Knights
Wen-Jun Li
Curtis Huttenhower
Nicola Segata
Larry Smarr
Siavash Mirarab
Rob Knight
Phylogenomics of 10,575 genomes reveals evolutionary proximity between domains Bacteria and Archaea
description The authors build a reference phylogeny of 10,575 evenly-sampled bacterial and archaeal genomes, based on 381 markers. The results indicate a remarkably closer evolutionary proximity between Archaea and Bacteria than previous estimates that used fewer “core” genes, such as the ribosomal proteins.
format article
author Qiyun Zhu
Uyen Mai
Wayne Pfeiffer
Stefan Janssen
Francesco Asnicar
Jon G. Sanders
Pedro Belda-Ferre
Gabriel A. Al-Ghalith
Evguenia Kopylova
Daniel McDonald
Tomasz Kosciolek
John B. Yin
Shi Huang
Nimaichand Salam
Jian-Yu Jiao
Zijun Wu
Zhenjiang Z. Xu
Kalen Cantrell
Yimeng Yang
Erfan Sayyari
Maryam Rabiee
James T. Morton
Sheila Podell
Dan Knights
Wen-Jun Li
Curtis Huttenhower
Nicola Segata
Larry Smarr
Siavash Mirarab
Rob Knight
author_facet Qiyun Zhu
Uyen Mai
Wayne Pfeiffer
Stefan Janssen
Francesco Asnicar
Jon G. Sanders
Pedro Belda-Ferre
Gabriel A. Al-Ghalith
Evguenia Kopylova
Daniel McDonald
Tomasz Kosciolek
John B. Yin
Shi Huang
Nimaichand Salam
Jian-Yu Jiao
Zijun Wu
Zhenjiang Z. Xu
Kalen Cantrell
Yimeng Yang
Erfan Sayyari
Maryam Rabiee
James T. Morton
Sheila Podell
Dan Knights
Wen-Jun Li
Curtis Huttenhower
Nicola Segata
Larry Smarr
Siavash Mirarab
Rob Knight
author_sort Qiyun Zhu
title Phylogenomics of 10,575 genomes reveals evolutionary proximity between domains Bacteria and Archaea
title_short Phylogenomics of 10,575 genomes reveals evolutionary proximity between domains Bacteria and Archaea
title_full Phylogenomics of 10,575 genomes reveals evolutionary proximity between domains Bacteria and Archaea
title_fullStr Phylogenomics of 10,575 genomes reveals evolutionary proximity between domains Bacteria and Archaea
title_full_unstemmed Phylogenomics of 10,575 genomes reveals evolutionary proximity between domains Bacteria and Archaea
title_sort phylogenomics of 10,575 genomes reveals evolutionary proximity between domains bacteria and archaea
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/963471f628f44741a9d932ae0fd75f6b
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