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基于所选放线菌中蛋白质结构域存在情况构建的新型系统发育树。

A novel phylogenetic tree based on the presence of protein domains in selected actinobacteria.

作者信息

Sarkar Indrani, Gtari Maher, Tisa Louis S, Sen Arnab

机构信息

NBU Bioinformatics Facility, Department of Botany, University of North Bengal, Siliguri, 734013, India.

Institut National des Sciences Appliquées et de Technologie, Université Carthage, Centre Urbain Nord, BP 676-1080, Tunis Cedex, Tunisia.

出版信息

Antonie Van Leeuwenhoek. 2019 Jan;112(1):101-107. doi: 10.1007/s10482-018-1154-1. Epub 2018 Aug 31.

Abstract

Protein functional domains are semi-autonomous parts of proteins capable of functioning independently. One protein may contain several domains and one domain may be present in different protein sequences. Thus, protein domains represent the niche specific adaptive nature of an organism. We hypothesized that the presence and absence of protein domains in an organism could be used to make a phylogenetic tree, which may better depict the biotope (niche). Here, we selected 100 actinobacteria and built a phylogenetic tree depending upon the presence and absence of protein domains. Strains of different genera from the same niche were found to cluster together suggesting niche specific domain acquisition among selected strains. Thus, the domain based phylogeny clustered the selected actinobacteria mainly according to their niche rather than their taxonomic classification.

摘要

蛋白质功能结构域是蛋白质中能够独立发挥功能的半自主部分。一种蛋白质可能包含多个结构域,一个结构域可能存在于不同的蛋白质序列中。因此,蛋白质结构域代表了生物体特定生态位的适应性本质。我们假设,可以利用生物体中蛋白质结构域的存在与否来构建系统发育树,这可能会更好地描绘生物群落(生态位)。在这里,我们选择了100株放线菌,并根据蛋白质结构域的存在与否构建了系统发育树。发现来自同一生态位的不同属菌株聚集在一起,表明所选菌株中存在特定生态位的结构域获得现象。因此,基于结构域的系统发育主要根据所选放线菌的生态位而非其分类学分类将它们聚类。

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