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类的比较基因组分析及提议重新分类为埃普西隆杆菌门(新分类单元)。

Comparative Genomic Analysis of the Class and Proposed Reclassification to Epsilonbacteraeota (phyl. nov.).

作者信息

Waite David W, Vanwonterghem Inka, Rinke Christian, Parks Donovan H, Zhang Ying, Takai Ken, Sievert Stefan M, Simon Jörg, Campbell Barbara J, Hanson Thomas E, Woyke Tanja, Klotz Martin G, Hugenholtz Philip

机构信息

Australian Centre for Ecogenomics, School of Chemistry and Molecular Biosciences, The University of Queensland, St LuciaQLD, Australia.

Department of Cell and Molecular Biology, College of the Environment and Life Sciences, University of Rhode Island, KingstonRI, USA.

出版信息

Front Microbiol. 2017 Apr 24;8:682. doi: 10.3389/fmicb.2017.00682. eCollection 2017.

Abstract

The is the fifth validly described class of the phylum Proteobacteria, known primarily for clinical relevance and for chemolithotrophy in various terrestrial and marine environments, including deep-sea hydrothermal vents. As 16S rRNA gene repositories have expanded and protein marker analysis become more common, the phylogenetic placement of this class has become less certain. A number of recent analyses of the bacterial tree of life using both 16S rRNA and concatenated marker gene analyses have failed to recover the as monophyletic with all other classes of Proteobacteria. In order to address this issue, we investigated the phylogenetic placement of this class in the bacterial domain using 16S and 23S rRNA genes, as well as 120 single-copy marker proteins. Single- and concatenated-marker trees were created using a data set of 4,170 bacterial representatives, including 98 . Phylogenies were inferred under a variety of tree building methods, with sequential jackknifing of outgroup phyla to ensure robustness of phylogenetic affiliations under differing combinations of bacterial genomes. Based on the assessment of nearly 300 phylogenetic tree topologies, we conclude that the continued inclusion of within the Proteobacteria is not warranted, and that this group should be reassigned to a novel phylum for which we propose the name Epsilonbacteraeota (phyl. nov.). We further recommend the reclassification of the order () to a novel class within this phylum and a number of subordinate changes to ensure consistency with the genome-based phylogeny. Phylogenomic analysis of 658 genomes belonging to the newly proposed Epsilonbacteraeota suggests that the ancestor of this phylum was an autotrophic, motile, thermophilic chemolithotroph that likely assimilated nitrogen from ammonium taken up from the environment or generated from environmental nitrate and nitrite by employing a variety of functional redox modules. The emergence of chemoorganoheterotrophic lifestyles in several Epsilonbacteraeota families is the result of multiple independent losses of various ancestral chemolithoautotrophic pathways. Our proposed reclassification of this group resolves an important anomaly in bacterial systematics and ensures that the taxonomy of Proteobacteria remains robust, specifically as genome-based taxonomies become more common.

摘要

该类群是变形菌门中第五个被有效描述的类群,主要因其与临床的相关性以及在包括深海热液喷口在内的各种陆地和海洋环境中的化能无机营养而闻名。随着16S rRNA基因库的扩大以及蛋白质标记分析变得更加普遍,该类群的系统发育位置变得不那么确定了。最近一些使用16S rRNA和串联标记基因分析对细菌生命树进行的分析未能将该类群与变形菌门的所有其他类群恢复为单系类群。为了解决这个问题,我们使用16S和23S rRNA基因以及120个单拷贝标记蛋白研究了该类群在细菌域中的系统发育位置。使用包括98个该类群代表的4170个细菌代表的数据集创建了单标记和串联标记树。在多种建树方法下推断系统发育,对外部类群进行顺序刀切法以确保在不同细菌基因组组合下系统发育关系的稳健性。基于对近300种系统发育树拓扑结构的评估,我们得出结论,继续将该类群归入变形菌门是不合理的,并且该类群应重新归入一个新的门,我们为此提议命名为ε-变形菌门(新门)。我们进一步建议将该目(该类群)重新分类到这个门内的一个新类,并进行一些下属的更改以确保与基于基因组的系统发育一致。对属于新提出的ε-变形菌门的658个基因组的系统基因组分析表明,这个门的祖先为自养、能动、嗜热的化能无机营养菌,它可能通过使用多种功能性氧化还原模块从环境中吸收的铵或由环境硝酸盐和亚硝酸盐产生的铵中同化氮。几个ε-变形菌门家族中化能有机异养生活方式的出现是各种祖先化能自养途径多次独立丧失的结果。我们对该类群提出的重新分类解决了细菌系统分类学中的一个重要异常情况,并确保变形菌门的分类学保持稳健,特别是随着基于基因组的分类学变得更加普遍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/593d/5401914/360738721ef9/fmicb-08-00682-g001.jpg

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