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Molecular phylogeny of the nickel-resistance gene nreB and functional role in the nickel sensitive symbiotic nitrogen fixing bacterium Sinorhizobium meliloti

机译:镍抗性基因nreB的分子系统发育及其在对镍敏感的共生固氮细菌苜蓿中华根瘤菌中的功能

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摘要

Heavy-metal tolerance is a widespread phenotype in bacteria, particularly occurring in strains isolated from heavy-metal contaminated sites. Concerning nickel tolerance, the nre system is one of the most common. An ortholog of the nreB gene is present in the alfalfa symbiont Sinorhizobium meliloti also, which stir the attention on its functional role in such Ni-sensitive species and on the evolutionary relationships with Ni-resistant strain orthologs. Phylogenetic reconstruction and comparative genomics were performed to analyze the phylogenetic relationships of nreB orthologs, as well aa nreB deletion mutant S. meliloti strain was constructed and subjected to phenotypic analysis. Phylogenetic analysis of nreB genes indicated horizontal gene transfer events, possibly mediated via mobile genetic elements. Phenotype Microarray, biochemical and symbiotic analyses of the deletion mutant strain (Delta nreB) showed that in S. meliloti nreB is involved in the tolerance to several stresses other than Ni (mainly urea and copper), possibly partially mediated through the modulation of urease and hydrogenase activities. Obtained results allowed us to speculate that nreB is a highly mobile gene cassette, spread in the bacterial phylogenetic tree via many HGT events, which could have been recruited to confer nickel-tolerance in strains thriving in contaminated environments, by small changes linked to its basic functions (e.g. modulation of urease and hydrogenase activity).
机译:重金属耐受性是细菌中普遍存在的表型,尤其是在从重金属污染部位分离的菌株中。关于镍的耐受性,nre系统是最常见的系统之一。苜蓿共生体苜蓿中华根瘤菌中也存在nreB基因的直系同源物,这引起了人们对其在这类对Ni敏感的物种中的功能作用以及与耐Ni菌株直系同源物的进化关系的关注。进行了系统发育重建和比较基因组学分析nreB直系同源物的系统发育关系,并构建了一个nreB缺失突变体S. meliloti菌株并进行了表型分析。对nreB基因的系统发育分析表明水平的基因转移事件,可能是通过移动遗传元件介导的。表型微阵列,缺失突变菌株(Delta nreB)的生化和共生分析表明,在苜蓿链球菌中,nreB参与了对除Ni(主要是尿素和铜)以外的其他几种胁迫的耐受性,可能部分是通过调节尿素酶和氢化酶活性。获得的结果使我们推测nreB是一种高度可移动的基因盒,通过许多HGT事件在细菌系统发生树中传播,可以通过在与其相关的基础上进行一些微小的改变来招募被赋予在受污染环境中生长的菌株耐镍的能力功能(例如脲酶和氢化酶活性的调节)。

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