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细胞间信号传导与根癌土壤杆菌Ti质粒拷贝数波动

Cell-cell signaling and the Agrobacterium tumefaciens Ti plasmid copy number fluctuations.

作者信息

Pappas Katherine M

机构信息

University of Athens, Faculty of Biology, Department of Genetics and Biotechnology, Ilissia, Athens 15701, Greece.

出版信息

Plasmid. 2008 Sep;60(2):89-107. doi: 10.1016/j.plasmid.2008.05.003. Epub 2008 Aug 12.

DOI:10.1016/j.plasmid.2008.05.003
PMID:18664372
Abstract

The Agrobacterium tumefaciens oncogenic Ti plasmids replicate and segregate to daughter cells via repABC cassettes, in which repA and repB are plasmid partitioning genes and repC encodes the replication initiator protein. repABC cassettes are encountered in a growing number of plasmids and chromosomes of the alpha-proteobacteria, and findings from particular representatives of agrobacteria, rhizobia and Paracoccus have began to shed light on their structure and functions. Amongst repABC replicons, Ti plasmids and particularly the octopine-type Ti have recently stood as model in regulation of repABC basal expression, which acts in plasmid copy number control, but also appear to undergo pronounced up-regulation of repABC, upon interbacterial and host-bacterial signaling. The last results in considerable Ti copy number increase and collective elevation of Ti gene expression. Inhibition of the Ti repABC is in turn conferred by a plant defense compound, which primarily affects Agrobacterium virulence and interferes with cell-density perception. Altogether, the above suggest that the entire Ti gene pool is subjected to the bacterium-eukaryote signaling network, a phenomenon quite unprecedented for replicons thought of as stringently controlled. It remains to be seen whether similar copy number variations characterize related replicons or if they are of even broader significance in plasmid biology.

摘要

根癌土壤杆菌致癌的Ti质粒通过repABC操纵子进行复制并分离到子细胞中,其中repA和repB是质粒分配基因,repC编码复制起始蛋白。在越来越多的α-变形菌的质粒和染色体中发现了repABC操纵子,来自土壤杆菌、根瘤菌和副球菌等特定代表菌的研究结果开始揭示它们的结构和功能。在repABC复制子中,Ti质粒尤其是章鱼碱型Ti质粒最近成为了repABC基础表达调控的模型,该调控作用于质粒拷贝数控制,但在细菌间和宿主-细菌信号传导时,repABC似乎也会发生显著上调。这最终导致Ti拷贝数大幅增加以及Ti基因表达的集体升高。植物防御化合物反过来会抑制Ti repABC,该化合物主要影响土壤杆菌的毒力并干扰细胞密度感知。综上所述,上述情况表明整个Ti基因库受到细菌-真核生物信号网络的影响,这一现象对于被认为受到严格控制的复制子来说是相当前所未有的。相关复制子是否具有类似的拷贝数变化特征,或者它们在质粒生物学中是否具有更广泛的意义,仍有待观察。

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