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厚壁菌门主要类群的系统发育框架和分子特征。

Phylogenetic framework and molecular signatures for the main clades of the phylum Actinobacteria.

机构信息

Department of Biochemistry and Biomedical Science, McMaster University, Hamilton, Ontario, Canada.

出版信息

Microbiol Mol Biol Rev. 2012 Mar;76(1):66-112. doi: 10.1128/MMBR.05011-11.

Abstract

The phylum Actinobacteria harbors many important human pathogens and also provides one of the richest sources of natural products, including numerous antibiotics and other compounds of biotechnological interest. Thus, a reliable phylogeny of this large phylum and the means to accurately identify its different constituent groups are of much interest. Detailed phylogenetic and comparative analyses of >150 actinobacterial genomes reported here form the basis for achieving these objectives. In phylogenetic trees based upon 35 conserved proteins, most of the main groups of Actinobacteria as well as a number of their superageneric clades are resolved. We also describe large numbers of molecular markers consisting of conserved signature indels in protein sequences and whole proteins that are specific for either all Actinobacteria or their different clades (viz., orders, families, genera, and subgenera) at various taxonomic levels. These signatures independently support the existence of different phylogenetic clades, and based upon them, it is now possible to delimit the phylum Actinobacteria (excluding Coriobacteriia) and most of its major groups in clear molecular terms. The species distribution patterns of these markers also provide important information regarding the interrelationships among different main orders of Actinobacteria. The identified molecular markers, in addition to enabling the development of a stable and reliable phylogenetic framework for this phylum, also provide novel and powerful means for the identification of different groups of Actinobacteria in diverse environments. Genetic and biochemical studies on these Actinobacteria-specific markers should lead to the discovery of novel biochemical and/or other properties that are unique to different groups of Actinobacteria.

摘要

厚壁菌门蕴藏着许多重要的人类病原体,也是天然产物最丰富的来源之一,包括许多抗生素和其他具有生物技术应用价值的化合物。因此,该大门的可靠系统发育以及准确识别其不同组成群体的方法非常重要。本文对超过 150 个放线菌基因组进行了详细的系统发育和比较分析,为实现这些目标奠定了基础。在基于 35 个保守蛋白的系统发育树中,大多数放线菌的主要类群以及它们的一些超类群都得到了解析。我们还描述了大量的分子标记物,包括蛋白序列和全蛋白中保守的特征插入缺失,这些标记物要么是所有放线菌特有的,要么是其不同类群(即目、科、属和亚属)在不同分类水平上特有的。这些特征独立地支持不同的系统发育分支的存在,基于这些特征,现在可以用明确的分子术语来界定厚壁菌门(不包括 Coriobacteriia)及其主要类群。这些标记物的物种分布模式还为不同主要放线菌类群之间的相互关系提供了重要信息。所鉴定的分子标记物除了为该门的系统发育提供一个稳定可靠的框架外,还为在不同环境中鉴定不同的放线菌类群提供了新的、强大的手段。对这些放线菌特异性标记物的遗传和生化研究应能发现不同放线菌类群特有的生化和/或其他特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9dd9/3294427/4cbde4330e3c/zmr9990922880021.jpg

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