Network Analysis of Plasmidomes: The Azospirillum brasilense Sp245 Case.

International journal of evolutionary biology Pub Date : 2014-01-01 Epub Date: 2014-12-29 DOI:10.1155/2014/951035
Valerio Orlandini, Giovanni Emiliani, Marco Fondi, Isabel Maida, Elena Perrin, Renato Fani
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引用次数: 16

Abstract

Azospirillum brasilense is a nitrogen-fixing bacterium living in association with plant roots. The genome of the strain Sp245, isolated in Brazil from wheat roots, consists of one chromosome and six plasmids. In this work, the A. brasilense Sp245 plasmids were analyzed in order to shed some light on the evolutionary pathways they followed over time. To this purpose, a similarity network approach was applied in order to identify the evolutionary relationships among all the A. brasilense plasmids encoded proteins; in this context a computational pipeline specifically devoted to the analysis and the visualization of the network-like evolutionary relationships among different plasmids molecules was developed. This information was supplemented with a detailed (in silico) functional characterization of both the connected (i.e., sharing homology with other sequences in the dataset) and the unconnected (i.e., not sharing homology) components of the network. Furthermore, the most likely source organism for each of the genes encoded by A. brasilense plasmids was checked, allowing the identification of possible trends of gene loss/gain in this microorganism. Data obtained provided a detailed description of the evolutionary landscape of the plasmids of A. brasilense Sp245, suggesting some of the molecular mechanisms responsible for the present-day structure of these molecules.

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质粒的网络分析:巴西氮螺旋菌Sp245例。
巴西固氮螺旋菌是一种与植物根系共生的固氮细菌。Sp245菌株的基因组是从巴西小麦根中分离出来的,由一条染色体和六个质粒组成。在这项工作中,为了揭示它们随着时间的推移所遵循的进化途径,对巴西芽孢杆菌Sp245质粒进行了分析。为此,采用相似性网络方法对巴西棘虫编码蛋白的质粒间的进化关系进行了分析;在这种情况下,一个专门用于分析和可视化不同质粒分子之间类似网络的进化关系的计算管道被开发出来。该信息补充了网络中连接(即与数据集中的其他序列共享同源)和未连接(即不共享同源)组件的详细(计算机)功能表征。此外,对巴西螺杆质粒编码的每个基因最可能的来源生物进行了检查,从而确定了该微生物中基因丢失/获得的可能趋势。获得的数据为巴西芽孢杆菌Sp245质粒的进化图景提供了详细的描述,并提出了一些导致这些分子现今结构的分子机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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