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Agrobacterium May Delay Plant Nonhomologous End-Joining DNA Repair via XRCC4 to Favor T-DNA Integration

机译:农杆菌可能会延迟通过XRCC4促进T-DNA整合的植物非同源末端连接DNA修复

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摘要

Agrobacterium tumefaciens is a soilborne pathogen that causes crown gall disease in many dicotyledonous plants by transfer of a portion of its tumor-inducing plasmid (T-DNA) into the plant genome. Several plant factors that play a role in Agrobacterium attachment to plant cells and transport of T-DNA to the nucleus have been identified, but the T-DNA integration step during transformation is poorly understood and has been proposed to occur via nonhomologous end-joining ()–mediated double-strand DNA break () repair. Here, we report a negative role of X-RAY CROSS COMPLEMENTATION GROUP4 (XRCC4), one of the key proteins required for , in Agrobacterium T-DNA integration. Downregulation of XRCC4 in Arabidopsis and Nicotiana benthamiana increased stable transformation due to increased T-DNA integration. Overexpression of XRCC4 in Arabidopsis decreased stable transformation due to decreased T-DNA integration. Interestingly, XRCC4 directly interacted with Agrobacterium protein VirE2 in a yeast two-hybrid system and in planta. VirE2-expressing Arabidopsis plants were more susceptible to the DNA damaging chemical bleomycin and showed increased stable transformation. We hypothesize that VirE2 titrates or excludes active XRCC4 protein available for repair, thus delaying the closure of in the chromosome, providing greater opportunity for T-DNA to integrate.
机译:根癌土壤杆菌是一种土壤传播的病原体,通过将其部分肿瘤诱导质粒(T-DNA)转移到植物基因组中,在许多双子叶植物中引起冠crown病。已经确定了几种在土壤杆菌附着到植物细胞和T-DNA转运到细胞核中起作用的植物因子,但是人们对转化过程中T-DNA整合的步骤了解甚少,并已提出通过非同源末端连接( )介导的双链DNA断裂()修复。在这里,我们报告X射线交叉互补组4(XRCC4),在农杆菌T-DNA整合中所需的关键蛋白质之一的负面作用。由于拟南芥和本氏烟草中XRCC4的下调,由于T-DNA整合度的增加而增加了稳定的转化。由于减少的T-DNA整合,拟南芥中XRCC4的过表达降低了稳定的转化。有趣的是,XRCC4在酵母双杂交系统和植物中直接与农杆菌蛋白VirE2相互作用。表达VirE2的拟南芥植物对DNA破坏性化学博来霉素更敏感,并显示出增加的稳定转化。我们假设VirE2滴定或排除了可用于修复的活性XRCC4蛋白,从而延迟了染色体中的闭合,为T-DNA整合提供了更大的机会。

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