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深入分析多基因系统发育揭示了 leuS 是泛菌属可靠的系统发育标记。

An In-depth Analysis of a Multilocus Phylogeny Identifies leuS As a Reliable Phylogenetic Marker for the Genus Pantoea.

机构信息

Laboratory of Bacteriology, Agriculture and Agri-Food Canada, Ottawa, Ontario Canada.

出版信息

Evol Bioinform Online. 2014 Jul 27;10:115-25. doi: 10.4137/EBO.S15738. eCollection 2014.

Abstract

Partial sequences of six core genes (fusA, gyrB, leuS, pyrG, rlpB, and rpoB) of 37 strains of Pantoea species were analyzed in order to obtain a comprehensive view regarding the phylogenetic relationships within the Pantoea genus and compare tree topologies to identify gene(s) for reliable species and subspecies differentiation. All genes used in this study were effective at species-level delineation, but the internal nodes represented conflicting common ancestors in fusA- and pyrG-based phylogenies. Concatenated gene phylogeny gave the expected DNA relatedness, underscoring the significance of a multilocus sequence analysis. Pairwise comparison of topological distances and percent similarities indicated a significant differential influence of individual genes on the concatenated tree topology. leuS- and fusA-inferred phylogenies exhibited, respectively, the lowest (4) and highest (52) topological distances to the concatenated tree. These correlated well with high (96.3%) and low (64.4%) percent similarities of leuS- and fusA-inferred tree topologies to the concatenated tree, respectively. We conclude that the concatenated tree topology is strongly influenced by the gene with the highest number of polymorphic and non-synonymous sites in the absence of significant recombination events.

摘要

为了全面了解泛菌属内的系统发育关系,并比较树拓扑结构以鉴定用于可靠物种和亚种分化的基因,分析了 37 株泛菌属菌株的 6 个核心基因(fusA、gyrB、leuS、pyrG、rlpB 和 rpoB)的部分序列。本研究中使用的所有基因都能有效地进行种水平划分,但在 fusA 和 pyrG 系统发育树上的内部节点代表了冲突的共同祖先。基因串联系统发育树给出了预期的 DNA 相关性,突出了多位点序列分析的重要性。拓扑距离和百分比相似性的成对比较表明,单个基因对串联树拓扑结构的影响存在显著差异。leuS 和 fusA 推断的系统发育树分别与串联树的拓扑距离最低(4)和最高(52)。这与 leuS 和 fusA 推断的系统发育树与串联树的相似性百分比(分别为 96.3%和 64.4%)高度相关。我们得出结论,在不存在显著重组事件的情况下,具有最多多态性和非同义位点的基因强烈影响串联树拓扑结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b96f/4125426/d31c729c0608/ebo-10-2014-115f1.jpg

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