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厚壁菌门及其亚群的系统发育和分子特征。

Phylogeny and molecular signatures for the phylum Thermotogae and its subgroups.

机构信息

Department of Biochemistry and Biomedical Sciences, McMaster University, Hamilton, ON, Canada.

出版信息

Antonie Van Leeuwenhoek. 2011 Jun;100(1):1-34. doi: 10.1007/s10482-011-9576-z. Epub 2011 Apr 19.

Abstract

Thermotogae species are currently identified mainly on the basis of their unique toga and distinct branching in the rRNA and other phylogenetic trees. No biochemical or molecular markers are known that clearly distinguish the species from this phylum from all other bacteria. The taxonomic/evolutionary relationships within this phylum, which consists of a single family, are also unclear. We report detailed phylogenetic analyses on Thermotogae species based on concatenated sequences for many ribosomal as well as other conserved proteins that identify a number of distinct clades within this phylum. Additionally, comprehensive analyses of protein sequences from Thermotogae genomes have identified >60 Conserved Signature Indels (CSI) that are specific for the Thermotogae phylum or its different subgroups. Eighteen CSIs in important proteins such as PolI, RecA, TrpRS and ribosomal proteins L4, L7/L12, S8, S9, etc. are uniquely present in various Thermotogae species and provide molecular markers for the phylum. Many CSIs were specific for a number of Thermotogae subgroups. Twelve of these CSIs were specific for a clade consisting of various Thermotoga species except Tt. lettingae, which was separated from other Thermotoga species by a long branch in phylogenetic trees; Fourteen CSIs were specific for a clade consisting of the Fervidobacterium and Thermosipho genera and eight additional CSIs were specific for the genus Thermosipho. In addition, the existence of a clade consisting of the deep branching species Petrotoga mobilis, Kosmotoga olearia and Thermotogales bacterium mesG1 was supported by seven CSIs. The deep branching of this clade was also supported by a number of CSIs that were present in various Thermotogae species, but absent in this clade and all other bacteria. Most of these clades were strongly supported by phylogenetic analyses based on two datasets of protein sequences and they identify potential higher taxonomic grouping (viz. families) within this phylum. We also report 16 CSIs that are shared by either some or all Thermotogae species and some species from other taxa such as Archaea, Aquificae, Firmicutes, Proteobacteria, Deinococcus, Fusobacteria, Dictyoglomus, Chloroflexi and eukaryotes. The shared presence of some of these CSIs could be due to lateral gene transfers between these groups. However, no clear preference for any particular group was observed in this regard. The molecular probes based on different genes/proteins, which contain these Thermotogae-specific CSIs, provide novel and highly specific means for identification of both known as well as previously unknown Thermotogae species in different environments. Additionally, these CSIs also provide valuable tools for genetic and biochemical studies that could lead to discovery of novel properties that are unique to these bacteria.

摘要

热袍菌物种目前主要是根据它们独特的拖尾和在 rRNA 和其他系统发育树中的独特分支来识别的。目前还不知道有任何生化或分子标记能够明确区分这个门的物种与所有其他细菌。这个门内的分类/进化关系,由一个单一的科组成,也不清楚。我们报告了基于许多核糖体和其他保守蛋白的串联序列对热袍菌物种的详细系统发育分析,这些分析确定了这个门内的一些不同的分支。此外,对热袍菌基因组的蛋白质序列的综合分析已经确定了 >60 个保守特征插入/缺失(CSI),这些 CSI 是热袍菌门或其不同亚群特有的。18 个 CSI 存在于 PolI、RecA、TrpRS 和核糖体蛋白 L4、L7/L12、S8、S9 等重要蛋白中,它们在各种热袍菌物种中独特存在,为该门提供了分子标记。许多 CSI 是特定于一些热袍菌亚群的。其中 12 个 CSI 是特定于一个由各种 Thermotoga 物种组成的分支,除了 Tt. lettingae 之外,它在系统发育树中与其他 Thermotoga 物种的长分支分开;14 个 CSI 是特定于一个由 Fervidobacterium 和 Thermosipho 属组成的分支,另外 8 个 CSI 是特定于 Thermosipho 属的。此外,由深分支物种 Petrotoga mobilis、Kosmotoga olearia 和 Thermotogales bacterium mesG1 组成的分支的存在也得到了七个 CSI 的支持。这个分支的深分支也得到了在各种热袍菌物种中存在但在这个分支和所有其他细菌中不存在的许多 CSI 的支持。这些分支中的大多数都得到了基于两个蛋白质序列数据集的系统发育分析的强烈支持,它们确定了这个门内的潜在更高的分类群(即科)分组。我们还报告了 16 个 CSI,它们存在于一些或所有热袍菌物种以及一些来自其他分类群的物种中,如古菌、Aquificae、Firmicutes、Proteobacteria、Deinococcus、Fusobacteria、Dictyoglomus、Chloroflexi 和真核生物。这些 CSI 的一些共同存在可能是由于这些群体之间的水平基因转移。然而,在这方面没有观察到对任何特定群体的明显偏好。基于包含这些热袍菌特异性 CSI 的不同基因/蛋白的分子探针,为在不同环境中鉴定已知和以前未知的热袍菌物种提供了新颖和高度特异性的手段。此外,这些 CSI 还为遗传和生化研究提供了有价值的工具,这些研究可能会发现这些细菌特有的新特性。

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