首页> 美国卫生研究院文献>Journal of Bacteriology >Turning off flagellum rotation requires the pleiotropic gene pleD: pleA pleC and pleD define two morphogenic pathways in Caulobacter crescentus.
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Turning off flagellum rotation requires the pleiotropic gene pleD: pleA pleC and pleD define two morphogenic pathways in Caulobacter crescentus.

机译:关闭鞭毛旋转需要多效性基因pleD:pleApleC和pleD定义了新月形杆菌中的两个形态发生途径。

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摘要

We have identified mutations in three pleiotropic genes, pleA, pleC, and pleD, that are required for differentiation in Caulobacter crescentus. pleA and pleC mutants were isolated in an extensive screen for strains defective in both motility and adsorption of polar bacteriophage phi CbK; using temperature-sensitive alleles, we determined the time at which the two genes act. pleA was required for a short period at 0.7 of the swarmer cell cycle for flagellum biosynthesis, whereas pleC was required during an overlapping period from 0.6 to 0.95 of the cell cycle to activate flagellum rotation as well as to enable loss of the flagellum and stalk formation by swarmer cells after division. The third pleiotropic gene, pleD, is described here for the first time. A pleD mutation was identified as a bypass suppressor of a temperature-sensitive pleC allele. Strains containing this mutation were highly motile, did not shed the flagellum or form stalks, and retained motility throughout the cell cycle. Since pleD was required to turn off motility and was a bypass suppressor of pleC, we conclude that it acts after the pleA and pleC gene functions in the cell cycle. No mutants defective in both flagellum biosynthesis and stalk formation were identified. Consequently, we propose that the steps required for formation of swarmer cells and subsequent development into stalked cells are organized into at least two developmental pathways: a pleA-dependent sequence of events, responsible for flagellum biosynthesis in predivisional cells, and a pleC-pleD-dependent sequence, responsible for flagellum activation in predivisional cells and loss of motility and stalk formation in progeny swarmer cells.
机译:我们已经确定了三个多效性基因pleA,pleC和pleD中的突变,这些突变是在新月形杆菌中分化所必需的。在广泛的筛选中分离了pleA和pleC突变体,以筛选在极性噬菌体phi CbK的运动性和吸附性方面均存在缺陷的菌株。使用对温度敏感的等位基因,我们确定了这两个基因起作用的时间。在鞭毛生物合成的群体细胞周期为0.7的短时间内需要pleA,而在细胞周期的0.6到0.95的重叠期间需要pleC以激活鞭毛旋转以及使鞭毛和茎形成丧失被分裂后的细胞组成第三个多效性基因pleD首次在此描述。 pleD突变被鉴定为温度敏感pleC等位基因的旁路抑制剂。含有这种突变的菌株具有很高的运动力,不会脱落鞭毛或形成茎,并且在整个细胞周期中都保持活力。由于pleD是关闭运动性所必需的,并且是pleC的旁路抑制剂,因此我们得出结论,它在pleA和pleC基因在细胞周期中起作用后起作用。没有发现鞭毛生物合成和茎形成均存在缺陷的突变体。因此,我们建议将形成群体细胞和随后发育成茎细胞所需的步骤组织为至少两个发育途径:依赖pleA的事件序列(负责前细胞的鞭毛生物合成)和pleC-pleD-依赖序列,负责前房细胞鞭毛的活化以及后代群体细胞中的活力丧失和茎形成。

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