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MultiTwin:使用多部分图分析多个组织层次进化的软件套件。

MultiTwin: A Software Suite to Analyze Evolution at Multiple Levels of Organization Using Multipartite Graphs.

机构信息

Unité Mixte de Recherche, Centre National de la Recherche Scientifique, Institut de Biologie Paris-Seine, Université Pierre et Marie Curie, Sorbonne Université, Paris, France.

出版信息

Genome Biol Evol. 2018 Oct 1;10(10):2777-2784. doi: 10.1093/gbe/evy209.

Abstract

The inclusion of introgressive processes in evolutionary studies induces a less constrained view of evolution. Network-based methods (like large-scale similarity networks) allow to include in comparative genomics all extrachromosomic carriers (like viruses, the most abundant biological entities on the planet) with their cellular hosts. The integration of several levels of biological organization (genes, genomes, communities, environments) enables more comprehensive analyses of gene sharing and improved sequence-based classifications. However, the algorithmic tools for the analysis of such networks are usually restricted to people with high programming skills. We present an integrated suite of software tools named MultiTwin, aimed at the construction, structuring, and analysis of multipartite graphs for evolutionary biology. Typically, this kind of graph is useful for the comparative analysis of the gene content of genomes in microbial communities from the environment and for exploring patterns of gene sharing, for example between distantly related cellular genomes, pangenomes, or between cellular genomes and their mobile genetic elements. We illustrate the use of this tool with an application of the bipartite approach (using gene family-genome graphs) for the analysis of pathogenicity traits in prokaryotes.

摘要

在进化研究中纳入渐渗过程会导致对进化的限制较少。基于网络的方法(如大规模相似网络)允许将所有染色体外载体(如病毒,这是地球上最丰富的生物实体)及其细胞宿主纳入比较基因组学中。将几个层次的生物组织(基因、基因组、群落、环境)整合在一起,可以更全面地分析基因共享,并改进基于序列的分类。然而,用于分析此类网络的算法工具通常仅限于具有高编程技能的人员。我们提出了一个名为 MultiTwin 的集成软件工具套件,旨在构建、构建和分析用于进化生物学的多部分图。通常,这种图对于比较分析环境中微生物群落的基因组中的基因含量以及探索基因共享模式非常有用,例如在远缘相关的细胞基因组、泛基因组或细胞基因组与其移动遗传元件之间。我们将使用二分图方法(使用基因家族-基因组图)来分析原核生物的致病性特征来说明该工具的用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/314e/6199892/bd5c200446eb/evy209f1.jpg

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