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Inaugural Article: Global analysis of cell cycle gene expression of the legume symbiont Sinorhizobium meliloti

机译:就职文章:豆类共生菌Sinorhizobium meliloti细胞周期基因表达的整体分析

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摘要

In α-proteobacteria, strict regulation of cell cycle progression is necessary for the specific cellular differentiation required for adaptation to diverse environmental niches. The symbiotic lifestyle of Sinorhizobium meliloti requires a drastic cellular differentiation that includes genome amplification. To achieve polyploidy, the S. meliloti cell cycle program must be altered to uncouple DNA replication from cell division. In the α-proteobacterium Caulobacter crescentus, cell cycle-regulated transcription plays an important role in the control of cell cycle progression but this has not been demonstrated in other α-proteobacteria. Here we describe a robust method for synchronizing cell growth that enabled global analysis of S. meliloti cell cycle-regulated gene expression. This analysis identified 462 genes with cell cycle-regulated transcripts, including several key cell cycle regulators, and genes involved in motility, attachment, and cell division. Only 28% of the 462 S. meliloti cell cycle-regulated genes were also transcriptionally cell cycle-regulated in C. crescentus. Furthermore, CtrA- and DnaA-binding motif analysis revealed little overlap between the cell cycle-dependent regulons of CtrA and DnaA in S. meliloti and C. crescentus. The predicted S. meliloti cell cycle regulon of CtrA, but not that of DnaA, was strongly conserved in more closely related α-proteobacteria with similar ecological niches as S. meliloti, suggesting that the CtrA cell cycle regulatory network may control functions of central importance to the specific lifestyles of α-proteobacteria.
机译:在α-变形杆菌中,细胞周期进程的严格调节对于适应各种环境环境所需的特定细胞分化是必需的。苜蓿中华根瘤菌的共生生活方式要求细胞急剧分化,包括基因组扩增。为了实现多倍体性,必须改变苜蓿链球菌的细胞周期程序,以使DNA复制与细胞分裂脱钩。在α-变形杆菌Caulobacter crescentus中,细胞周期调控的转录在细胞周期进程的控制中起着重要作用,但这在其他α-变形杆菌中尚未得到证实。在这里,我们描述了一种同步细胞生长的可靠方法,该方法能够对苜蓿链球菌细胞周期调控的基因表达进行全局分析。这项分析确定了462个具有细胞周期调节转录本的基因,包括几个关键的细胞周期调节子,以及涉及运动性,附着力和细胞分裂的基因。在462个S.meliloti细胞周期调控的基因中,只有28%在C.crescentus中也被转录细胞周期调控。此外,CtrA和DnaA结合的基序分析显示在S.meliloti和C.crescentus中,CtrA和DnaA的细胞周期依赖性调节子之间几乎没有重叠。预测的CtrA而不是DnaA的S. meliloti细胞周期调控在与S. meliloti具有相似生态位的更紧密相关的α-变形杆菌中高度保守,这表明CtrA细胞周期调控网络可能控制着重要的功能特定于α-蛋白细菌的生活方式。

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