首页> 外文OA文献 >Comparative genomic and phylogenetic analyses of gammaproteobacterial glg genes traced the origin of the Escherichia coli glycogen glgBXCAP operon to the last common ancestor of the sister orders Enterobacteriales and Pasteurellales
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Comparative genomic and phylogenetic analyses of gammaproteobacterial glg genes traced the origin of the Escherichia coli glycogen glgBXCAP operon to the last common ancestor of the sister orders Enterobacteriales and Pasteurellales

机译:比较的基因组和系统发育分析,gammaproteobacterial glg基因追溯到大肠杆菌糖原glgBXCAP操纵子的起源到姐姐肠杆菌和巴斯德氏菌的最后共同祖先

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摘要

© 2015 Almagro et al. Production of branched α-glucan, glycogen-like polymers is widely spread in the Bacteria domain. The glycogen pathway of synthesis and degradation has been fairly well characterized in the model enterobacterial species Escherichia coli (order Enterobacteriales, class Gammaproteobacteria), in which the cognate genes (branching enzyme glgB, debranching enzyme glgX, ADP-glucose pyrophosphorylase glgC, glycogen synthase glgA, and glycogen phosphorylase glgP) are clustered in a glgBXCAP operon arrangement. However, the evolutionary origin of this particular arrangement and of its constituent genes is unknown. Here, by using 265 complete gammaproteobacterial genomes we have carried out a comparative analysis of the presence, copy number and arrangement of glg genes in all lineages of the Gammaproteobacteria. These analyses revealed large variations in glg gene presence, copy number and arrangements among different gammaproteobacterial lineages. However, the glgBXCAP arrangement was remarkably conserved in all glg-possessing species of the orders Enterobacteriales and Pasteurellales (the E/P group). Subsequent phylogenetic analyses of glg genes present in the Gammaproteobacteria and in other main bacterial groups indicated that glg genes have undergone a complex evolutionary history in which horizontal gene transfer may have played an important role. These analyses also revealed that the E/P glgBXCAP genes (a) share a common evolutionary origin, (b) were vertically transmitted within the E/P group, and (c) are closely related to glg genes of some phylogenetically distant betaproteobacterial species. The overall data allowed tracing the origin of the E. coli glgBXCAP operon to the last common ancestor of the E/P group, and also to uncover a likely glgBXCAP transfer event from the E/P group to particular lineages of the Betaproteobacteria.
机译:©2015 Almagro等。支链α-葡聚糖,糖原样聚合物的生产在细菌域中广泛传播。合成和降解的糖原途径已在模型肠细菌大肠埃希氏菌(肠杆菌,丙种丙型细菌)模型中得到了很好的表征,其中关联基因(分支酶glgB,去分支酶glgX,ADP-葡萄糖焦磷酸化酶gl​​gC,糖原合成酶glgA ,和糖原磷酸化酶(glgP)聚集在glgBXCAP操纵子排列中。但是,这种特定排列及其组成基因的进化起源尚不清楚。在这里,通过使用265个完整的γ-变形细菌基因组,我们对gproteobacteria的所有谱系中glg基因的存在,拷贝数和排列进行了比较分析。这些分析揭示了gamma基因的存在,不同的γ-变形杆菌谱系之间的拷贝数和排列的巨大差异。但是,在肠杆菌和巴斯德氏菌(E / P组)的所有具有glg的物种中,glgBXCAP的排列都非常保守。随后对γ-变形杆菌和其他主要细菌群中存在的glg基因进行系统发育分析,表明glg基因经历了复杂的进化历史,其中水平基因转移可能发挥了重要作用。这些分析还显示,E / P glgBXCAP基因(a)具有共同的进化起源,(b)在E / P组内垂直传播,并且(c)与某些系统发育远的β变形细菌物种的glg基因密切相关。总体数据可以追踪大肠杆菌glgBXCAP操纵子的起源到E / P组的最后一个共同祖先,并且还可以发现从E / P组到Betaproteobacteria的特定谱系的glgBXCAP转移事件。

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