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Pseudoreversion Analysis Indicates a Direct Role of Cell Division Genes in Polar Morphogenesis and Differentiation in Caulobacter Crescentus

机译:伪逆向分析表明细胞分裂基因在新月形杆菌的极性形态发生和分化中的直接作用

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摘要

A pseudoreversion analysis was used to examine the role of cell division genes in polar morphogenesis in Caulobacter crescentus. Extragenic suppressors of temperature sensitive mutations in pleC, a pleiotropic gene required for cell motility, formation of polar φCbK bacteriophage receptors, and stalk formation, were isolated. These suppressors, which restored motility at 37°, simultaneously conferred a cold sensitive cell division phenotype and they were mapped to the three new cell division genes divJ, divL and divK. The cold-sensitive mutations in divL, and to a lesser extent divJ, exhibited a relatively narrow range of suppression. The cold-sensitive cell division mutation in divK, by contrast, suppressed all pleC mutations examined and behaved as a classical bypass suppressor. The direct role of this cell division gene in the regulation of motility is suggested by the observation that divK341 mapped to the same locus as pleD301, a pleiotropic mutation that prevents loss of motility and stalk formation. These results provide strong evidence that the cell division and developmental pathways are interconnected and they support our earlier conclusion that cell division is required for the regulation of polar morphogenesis and differentiation in C. crescentus.
机译:伪回归分析用于检查新月形杆菌中细胞分裂基因在极性形态发生中的作用。分离了pleC的温度敏感突变的外源抑制剂,pleC是细胞运动,极性φCbK噬菌体受体形成和茎形成所需的多效基因。这些抑制剂可在37°恢复活力,同时具有冷敏细胞分裂表型,并被定位到三个新的细胞分裂基因divJ,divL和divK。 divL和较小程度的divJ中的冷敏感突变表现出相对较窄的抑制范围。相比之下,divK中的冷敏感细胞分裂突变抑制了所有检测到的pleC突变,并起到了经典旁路抑制器的作用。该观察结果表明,divK341与pleD301定位在同一基因座上,这是一种多效性突变,可防止运动力丧失和茎形成,这表明该细胞分裂基因在运动性调节中的直接作用。这些结果提供了有力的证据,表明细胞分裂和发育途径是相互联系的,它们支持我们先前的结论,即新月形梭菌的极性形态发生和分化调控需要细胞分裂。

著录项

  • 期刊名称 Genetics
  • 作者

    J. M. Sommer; A. Newton;

  • 作者单位
  • 年(卷),期 1991(129),3
  • 年度 1991
  • 页码 623–630
  • 总页数 8
  • 原文格式 PDF
  • 正文语种
  • 中图分类 遗传学;
  • 关键词

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