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Adaptive evolution of rhizobial symbiotic compatibility mediated by co-evolved insertion sequences

机译:共同进化的插入序列介导的根瘤菌共生相容性的适应性进化

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摘要

Mutualism between bacteria and eukaryotes has essential roles in the history of life, but the evolution of their compatibility is poorly understood. Here we show that different Sinorhizobium strains can form either nitrogen-fixing nodules or uninfected pseudonodules on certain cultivated soybeans, while being all effective microsymbionts of some wild soybeans. However, a few well-infected nodules can be found on a commercial soybean using inocula containing a mixed pool of Tn5 insertion mutants derived from an incompatible strain. Reverse genetics and genome sequencing of compatible mutants demonstrated that inactivation of T3SS (type three secretion system) accounted for this phenotypic change. These mutations in the T3SS gene cluster were dominated by parallel transpositions of insertion sequences (ISs) other than the introduced Tn5. This genetic and phenotypic change can also be achieved in an experimental evolution scenario on a laboratory time scale using incompatible wild-type strains as inocula. The ISs acting in the adaptive evolution of Sinorhizobium strains exhibit broader phyletic and replicon distributions than other ISs, and prefer target sequences of low GC% content, a characteristic feature of symbiosis plasmid where T3SS genes are located. These findings suggest an important role of co-evolved ISs in the adaptive evolution of rhizobial compatibility.
机译:细菌和真核生物之间的相互关系在生命史上起着至关重要的作用,但人们对它们相容性的演变了解甚少。在这里,我们显示了不同的中华根瘤菌菌株可以在某些栽培大豆上形成固氮根瘤或未感染的假瘤,而它们却是某些野生大豆的有效微共生菌。但是,在商业大豆上,使用含有不相容菌株衍生的Tn5插入突变体混合库的接种物,可以发现一些感染良好的结核。相容突变体的反向遗传学和基因组测序表明,T3SS(三型分泌系统)失活是造成这种表型改变的原因。 T3SS基因簇中的这些突变主要由插入序列(ISs)的平行转座而不是引入的Tn5引起。这种遗传和表型变化也可以在实验室时间尺度上使用不相容的野生型菌株作为接种物在实验进化方案中实现。与其他ISs相比,在Sinorhizobium菌株的适应性进化中发挥作用的ISs具有更广泛的系统和复制子分布,并且更喜欢低GC%含量的靶序列,这是T3SS基因所在的共生质粒的特征。这些发现表明,共同进化的IS在根瘤菌相容性的适应性进化中具有重要作用。

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