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Quantitative exploration of the occurrence of lateral gene transfer by using nitrogen fixation genes as a case study

机译:以固氮基因为例定量研究侧向基因转移的发生

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Lateral gene transfer (LGT) is now accepted as an important factor in the evolution of prokaryotes. Establishment of the occurrence of LGT is typically attempted by a variety of methods that includes the comparison of reconstructed phylogenetic trees, the search for unusual GC composition or codon usage within a genome, and identification of similarities between distant species as determined by best BLAST hits. We explore quantitative assessments of these strategies to study the prokaryotic trait of nitrogen fixation, the enzyme-catalyzed reduction of N-2 to ammonia. Phylogenies constructed on nitrogen fixation genes are not in agreement with the tree-of-life based on 16S rRNA but do not conclusively distinguish between gene loss and LGT hypotheses. Using a series of analyses on a set of complete genomes, our results distinguish two structurally distinct classes of MoFe nitrogenases whose distribution cuts across lines of vertical inheritance and makes us believe that a conclusive case for LGT has been made.
机译:横向基因转移(LGT)现在被认为是原核生物进化的重要因素。通常通过多种方法来尝试确定LGT的发生,这些方法包括比较重建的系统树,搜索基因组中不寻常的GC组成或密码子,以及鉴定最佳BLAST命中所确定的远距离物种之间的相似性。我们探索这些策略的定量评估,以研究固氮,酶催化的N-2还原为氨的原核特性。基于固氮基因构建的系统发育与基于16S rRNA的生命树不一致,但不能最终区分基因丢失和LGT假设。通过对一组完整的基因组进行一系列分析,我们的结果可以区分出结构上不同的MoFe固氮酶类别,它们的分布跨垂直遗传谱系,使我们相信LGT的确凿结论。

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