首页> 外文OA文献 >Evolutionary genetics of the proline permease gene (putP) and the control region of the proline utilization operon in populations of Salmonella and Escherichia coli.
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Evolutionary genetics of the proline permease gene (putP) and the control region of the proline utilization operon in populations of Salmonella and Escherichia coli.

机译:沙门氏菌和大肠杆菌人群中脯氨酸通透酶基因(putP)和脯氨酸利用操纵子控制区的进化遗传学。

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摘要

Virtually complete sequences (1,467 bp) of the proline permease gene (putP) and complete sequences (416 to 422 bp) of the control region of the proline utilization operon were determined for 16 strains of Salmonella, representing all eight subspecies, and 13 strains of Escherichia coli recovered from natural populations. Strains of Salmonella and E. coli differed, on average, at 16.3% of putP nucleotide sites and 17.5% of control region sites; the average difference between strains was much larger for Salmonella strains (4.6% of putP sites and 3.4% of control region sites) than for E. coli (2.4 and 0.9%, respectively). There was no difference in the distribution of polymorphic amino acid positions between the membrane-spanning and loop regions of the permease molecule, and rates of synonymous nucleotide substitution were virtually the same for the two domains. Statistical analysis yielded evidence of three probable cases of intragenic recombination, including the acquisition of a large segment of putP by strains of Salmonella subspecies VII from an unidentified source, the exchange of a 21-bp segment between two strains of E. coli, and the acquisition by one strain of E. coli of a cluster of 14 unique polymorphic control region sites from an unknown donor. An evolutionary tree for the putP and control region sequences was generally concordant with a tree for the gapA gene and a tree based on multilocus enzyme electrophoresis, thus providing evidence that for neither gene nor for enzyme genes in general has recombination occurred at rates sufficiently high or over regions sufficiently large to completely obscure phylogenetic relationships dependent on mutational divergence. It is suggested that the recombination rate varies among genes in relation to functional type, being highest for genes encoding cell surface and other proteins for which there is an adaptive advantage in structural diversity.
机译:确定了代表所有八个亚种的16株沙门氏菌的脯氨酸通透酶基因(putP)的虚拟完整序列(1,467 bp)和脯氨酸利用操纵子控制区的完整序列(416至422 bp)。从自然种群中回收的大肠杆菌。沙门氏菌和大肠杆菌的菌株平均在putP核苷酸位点上占16.3%,在对照区位点上占17.5%。沙门氏菌菌株(putP位点的4.6%和对照区位点的3.4%)的菌株之间的平均差异比大肠杆菌(分别为2.4%和0.9%)大得多。渗透酶分子的跨膜区域和环区域之间的多态性氨基酸位置分布没有差异,并且两个域的同义核苷酸取代率实际上是相同的。统计分析提供了三例可能的基因内重组的证据,包括不明来源的沙门氏菌VII亚型菌株获得了一大部分的putP,两株大肠杆菌之间交换了21bp的片段,以及一株大肠埃希氏菌从一个未知供体中获得了一个簇,该簇具有14个独特的多态性控制区域。 putP和控制区序列的进化树通常与gapA基因的树和基于多基因座酶电泳的树一致,因此提供了证据,无论是基因还是酶基因,通常都没有以足够高的速率发生重组。在足够大以至于完全掩盖依赖于突变发散的系统发育关系的区域上。建议重组率在基因之间随功能类型的不同而变化,对于编码细胞表面的基因和在结构多样性上具有适应性优势的其他蛋白质,重组率最高。

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  • 作者

    Nelson, K; Selander, R K;

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  • 年度 1992
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  • 原文格式 PDF
  • 正文语种 en
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