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基于利用基因组规模数据重建进化关系,为具有生态重要性的海洋γ-变形菌新出现类群建立的分类框架。

A taxonomic framework for emerging groups of ecologically important marine gammaproteobacteria based on the reconstruction of evolutionary relationships using genome-scale data.

作者信息

Spring Stefan, Scheuner Carmen, Göker Markus, Klenk Hans-Peter

机构信息

Department Microorganisms, Leibniz Institute DSMZ - German Collection of Microorganisms and Cell Cultures Braunschweig, Germany.

Department Microorganisms, Leibniz Institute DSMZ - German Collection of Microorganisms and Cell Cultures Braunschweig, Germany ; School of Biology, Newcastle University Newcastle upon Tyne, UK.

出版信息

Front Microbiol. 2015 Apr 9;6:281. doi: 10.3389/fmicb.2015.00281. eCollection 2015.

Abstract

In recent years a large number of isolates were obtained from saline environments that are phylogenetically related to distinct clades of oligotrophic marine gammaproteobacteria, which were originally identified in seawater samples using cultivation independent methods and are characterized by high seasonal abundances in coastal environments. To date a sound taxonomic framework for the classification of these ecologically important isolates and related species in accordance with their evolutionary relationships is missing. In this study we demonstrate that a reliable allocation of members of the oligotrophic marine gammaproteobacteria (OMG) group and related species to higher taxonomic ranks is possible by phylogenetic analyses of whole proteomes but also of the RNA polymerase beta subunit, whereas phylogenetic reconstructions based on 16S rRNA genes alone resulted in unstable tree topologies with only insignificant bootstrap support. The identified clades could be correlated with distinct phenotypic traits illustrating an adaptation to common environmental factors in their evolutionary history. Genome wide gene-content analyses revealed the existence of two distinct ecological guilds within the analyzed lineage of marine gammaproteobacteria which can be distinguished by their trophic strategies. Based on our results a novel order within the class Gammaproteobacteria is proposed, which is designated Cellvibrionales ord. nov. and comprises the five novel families Cellvibrionaceae fam. nov., Halieaceae fam. nov., Microbulbiferaceae fam. nov., Porticoccaceae fam. nov., and Spongiibacteraceae fam. nov.

摘要

近年来,从盐环境中获得了大量菌株,这些菌株在系统发育上与贫营养海洋γ-变形菌的不同进化枝相关,最初是使用非培养方法在海水样本中鉴定出来的,其特征是在沿海环境中具有较高的季节性丰度。迄今为止,缺少一个完善的分类框架,无法根据这些具有重要生态意义的菌株及其相关物种的进化关系对它们进行分类。在本研究中,我们证明,通过对整个蛋白质组以及RNA聚合酶β亚基进行系统发育分析,可以将贫营养海洋γ-变形菌(OMG)组及其相关物种的成员可靠地划分到更高的分类等级,而仅基于16S rRNA基因的系统发育重建则导致不稳定的树形拓扑结构,且仅有微不足道的自展支持。所确定的进化枝可以与不同的表型特征相关联,这表明它们在进化历史中适应了常见的环境因素。全基因组基因含量分析揭示了在所分析的海洋γ-变形菌谱系中存在两个不同的生态类群,它们可以通过营养策略来区分。基于我们的研究结果,提出了γ-变形菌纲中的一个新目,命名为Cellvibrionales目。新目包含五个新科,分别是Cellvibrionaceae科、Halieaceae科、Microbulbiferaceae科、Porticoccaceae科和Spongiibacteraceae科。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d550/4391266/d1d8e3e91626/fmicb-06-00281-g0001.jpg

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