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首页> 外文期刊>Journal of bacteriology >Transfer of the Symbiotic Plasmid of Rhizobium etli CFN42 Requires Cointegration with p42a, Which May Be Mediated by Site-Specific Recombination
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Transfer of the Symbiotic Plasmid of Rhizobium etli CFN42 Requires Cointegration with p42a, Which May Be Mediated by Site-Specific Recombination

机译:根瘤菌CFN42共生质粒的转移需要与p42a共整合,而p42a可能通过位点特异性重组介导

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Plasmid p42a from Rhizobium etli CFN42 is self-transmissible and indispensable for conjugative transfer of the symbiotic plasmid (pSym). Most pSym transconjugants also inherit p42a. pSym transconjugants that lack p42a always contain recombinant pSyms, which we designated RpSyms*. RpSyms* do not contain some pSym segments and instead have p42a sequences, including the replication and transfer regions. These novel recombinant plasmids are compatible with wild-type pSym, incompatible with p42a, and self-transmissible. The symbiotic features of derivatives simultaneously containing a wild-type pSym and an RpSym* were analyzed. Structural analysis of 10 RpSyms* showed that 7 shared one of the two pSym-p42a junctions. Sequencing of this common junction revealed a 53-bp region that was 90% identical in pSym and p42a, including a 5-bp central region flanked by 9- to 11-bp inverted repeats reminiscent of bacterial and phage attachment sites. A gene encoding an integrase-like protein (intA) was localized downstream of the attachment site on p42a. Mutation or the absence of intA abolished pSym transfer from a recA mutant donor. Complementation with the wild-type intA gene restored transfer of pSym. We propose that pSym-p42a cointegration is required for pSym transfer; cointegration may be achieved either through homologous recombination among large reiterated sequences or through IntA-mediated site-specific recombination between the attachment sites. Cointegrates formed through the site-specific system but resolved through RecA-dependent recombination or vice versa generate RpSyms*. A site-specific recombination system for plasmid cointegration is a novel feature of these large plasmids and implies that there is unique regulation which affects the distribution of pSym in nature due to the role of the cointegrate in conjugative transfer.
机译:根瘤菌CFN42的质粒p42a是自传递的,对于共生质粒(pSym)的结合转移是必不可少的。大多数pSym转导结合体也继承p42a。缺少p42a的pSym转导结合体总是含有重组pSyms,我们将其称为RpSyms *。 RpSyms *不包含某些pSym段,而是具有p42a序列,包括复制区和转移区。这些新颖的重组质粒与野生型pSym兼容,与p42a不兼容,并且可自我传播。分析了同时含有野生型pSym和RpSym *的衍生物的共生特征。对10个RpSyms *的结构分析表明,有7个共享两个pSym-p42a连接之一。对该共同接头的测序显示,在pSym和p42a中一个53 bp的区域具有90%的同一性,包括一个5 bp的中央区域,其侧翼是9到11 bp的反向重复序列,让人联想到细菌和噬菌体的附着位点。编码整合酶样蛋白( intA )的基因位于p42a附着位点的下游。突变或 intA 的缺失消除了来自 recA 突变供体的pSym转移。与野生型 intA 基因互补可恢复pSym的转移。我们建议pSym传输需要pSym-p42a协整。可以通过大的重复序列之间的同源重组或通过IntA介导的连接位点之间的位点特异性重组来实现共整合。通过位点特异性系统形成的共整合,但通过RecA依赖的重组解析,反之亦然,生成RpSyms *。用于质粒共整合的位点特异性重组系统是这些大质粒的新特征,并暗示由于共整合在共轭转移中的作用,存在影响自然界中pSym分布的独特调控。

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