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必需α-变形菌基因的鉴定揭示了保守发育和细胞周期系统中的操作变异性。

Identification of essential alphaproteobacterial genes reveals operational variability in conserved developmental and cell cycle systems.

作者信息

Curtis Patrick D, Brun Yves V

机构信息

Department of Biology, University of Mississippi, University, MS, 38677, USA.

出版信息

Mol Microbiol. 2014 Aug;93(4):713-35. doi: 10.1111/mmi.12686. Epub 2014 Jul 17.

Abstract

The cell cycle of Caulobacter crescentus is controlled by a complex signalling network that co-ordinates events. Genome sequencing has revealed many C. crescentus cell cycle genes are conserved in other Alphaproteobacteria, but it is not clear to what extent their function is conserved. As many cell cycle regulatory genes are essential in C. crescentus, the essential genes of two Alphaproteobacteria, Agrobacterium tumefaciens (Rhizobiales) and Brevundimonas subvibrioides (Caulobacterales), were elucidated to identify changes in cell cycle protein function over different phylogenetic distances as demonstrated by changes in essentiality. The results show the majority of conserved essential genes are involved in critical cell cycle processes. Changes in component essentiality reflect major changes in lifestyle, such as divisome components in A. tumefaciens resulting from that organism's different growth pattern. Larger variability of essentiality was observed in cell cycle regulators, suggesting regulatory mechanisms are more customizable than the processes they regulate. Examples include variability in the essentiality of divJ and divK spatial cell cycle regulators, and non-essentiality of the highly conserved and usually essential DNA methyltransferase CcrM. These results show that while essential cell functions are conserved across varying genetic distance, much of a given organism's essential gene pool is specific to that organism.

摘要

新月柄杆菌的细胞周期由一个协调各种事件的复杂信号网络控制。基因组测序表明,许多新月柄杆菌的细胞周期基因在其他α-变形菌中是保守的,但它们功能的保守程度尚不清楚。由于许多细胞周期调控基因在新月柄杆菌中是必需的,因此对两种α-变形菌——根癌土壤杆菌(根瘤菌目)和短波单胞菌(柄杆菌目)的必需基因进行了阐明,以通过必需性的变化来确定不同系统发育距离上细胞周期蛋白功能的变化。结果表明,大多数保守的必需基因参与关键的细胞周期过程。组成成分必需性的变化反映了生活方式的重大变化,例如根癌土壤杆菌中的分裂体成分因该生物体不同的生长模式而产生变化。在细胞周期调节因子中观察到必需性的更大变异性,这表明调节机制比它们所调节的过程更具可定制性。例子包括DivJ和DivK空间细胞周期调节因子必需性的变异性,以及高度保守且通常必需的DNA甲基转移酶CcrM的非必需性。这些结果表明,虽然基本细胞功能在不同的遗传距离上是保守的,但特定生物体的许多必需基因库是该生物体特有的。

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