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首页> 外文期刊>Journal of bacteriology >Multiple Lateral Transfers of Dissimilatory Sulfite Reductase Genes between Major Lineages of Sulfate-Reducing Prokaryotes
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Multiple Lateral Transfers of Dissimilatory Sulfite Reductase Genes between Major Lineages of Sulfate-Reducing Prokaryotes

机译:减少硫酸盐的原核生物主要谱系之间的异化亚硫酸还原酶基因的多个横向转移。

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A large fragment of the dissimilatory sulfite reductase genes (dsrAB) was PCR amplified and fully sequenced from 30 reference strains representing all recognized lineages of sulfate-reducing bacteria. In addition, the sequence of thedsrAB gene homologs of the sulfite reducerDesulfitobacterium dehalogenans was determined. In contrast to previous reports, comparative analysis of all available DsrAB sequences produced a tree topology partially inconsistent with the corresponding 16S rRNA phylogeny. For example, the DsrAB sequences of several Desulfotomaculum species (low G+C gram-positive division) and two members of the genusThermodesulfobacterium (a separate bacterial division) were monophyletic with δ-proteobacterial DsrAB sequences. The most parsimonious interpretation of these data is thatdsrAB genes from ancestors of as-yet-unrecognized sulfate reducers within the δ-Proteobacteria were laterally transferred across divisions. A number of insertions and deletions in the DsrAB alignment independently support these inferred lateral acquisitions of dsrAB genes. Evidence for adsrAB lateral gene transfer event also was found within the δ-Proteobacteria, affecting Desulfobacula toluolica. The root of the dsr tree was inferred to be within the Thermodesulfovibrio lineage by paralogous rooting of the alpha and beta subunits. This rooting suggests that the dsrAB genes inArchaeoglobus species also are the result of an ancient lateral transfer from a bacterial donor. Although these findings complicate the use of dsrAB genes to infer phylogenetic relationships among sulfate reducers in molecular diversity studies, they establish a framework to resolve the origins and diversification of this ancient respiratory lifestyle among organisms mediating a key step in the biogeochemical cycling of sulfur.
机译:PCR扩增了异化亚硫酸盐还原酶基因的大片段( dsrAB ),并从代表所有公认的硫酸盐还原菌谱系的30株参考菌株中进行了完整测序。此外,测定了亚硫酸盐还原剂脱盐脱硫杆菌 dsrAB 基因同源物的序列。与以前的报告相反,对所有可用DsrAB序列的比较分析产生了与相应的16S rRNA系统发育部分不一致的树形拓扑。例如,几种 Desulfotomaculum 物种(低G + C革兰氏阳性分裂)和两个 Thermodesulfobacterium 属(单独的细菌分裂)的DsrAB序列与δ-蛋白酶DsrAB序列。这些数据最简约的解释是,δ-变形杆菌中尚未识别的硫酸盐还原剂祖先的 dsrAB 基因在各个分支之间横向转移。 DsrAB比对中的许多插入和缺失独立地支持了 dsrAB 基因的这些侧向获得。在δ-变形杆菌中也发现了 dsrAB 侧向基因转移事件的证据,影响了 Tosulfobacula toluolica 。通过与亚基和亚基的同源生根,推断出 dsr 树的根在 Thermodesulfovibrio 谱系之内。这表明, Arcgloeoglobus 物种中的 dsrAB 基因也是细菌供体远古侧向转移的结果。尽管这些发现使 dsrAB 基因在分子多样性研究中推断硫酸盐还原剂之间的系统发育关系变得复杂,但它们为解决这一古老呼吸方式的起源和多样化奠定了一个框架,而这种生活方式在介导关键步骤的生物中硫的生物地球化学循环。

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