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Arabidopsis VIRE2 INTERACTING PROTEIN2 is required for Agrobacterium T-DNA integration in plants

机译:拟南芥VIRE2相互作用蛋白2是农杆菌T-DNA在植物中整合所必需的

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Agrobacterium tumefaciens-mediated genetic transformation is an efficient tool for genetic engineering of plants. VirE2 is a single-stranded DNA binding Agrobacterium protein that is transported into the plant cell and presumably protects the T-DNA from degradation. Using a yeast two-hybrid system, we identified Arabidopsis thaliana VIRE2-INTERACTING PROTEIN2 (VIP2) with a NOT domain that is conserved in both plants and animals. Furthermore, we provide evidence supporting VIP2 interaction with VIP1, a basic domain/leucine zipper motif-containing protein required for nuclear import and integration of T-DNA. Virus-induced gene silencing of VIP2 in Nicotiana benthamiana and characterization of the Arabidopsis vip2 mutant (At vip2) demonstrate that VIP2 is required for Agrobacterium-mediated stable transformation but not for transient transformation. Assays based upon a promoter-trap vector and quantification of T-DNA integration further confirmed VIP2 involvement in T-DNA integration. Interestingly, VIP2 transcripts were induced to a greater extent over prolonged periods after infection with a T-DNA transfer-competent Agrobacterium strain compared with the transfer-deficient Agrobacterium strain. Transcriptome analyses of At vip2 suggest that VIP2 is likely a transcriptional regulator, and the recalcitrancy to transformation in At vip2 is probably due to the combination of muted gene expression response upon Agrobacterium infection and repression of histone genes resulting in decreased T-DNA integration events.
机译:农杆菌介导的遗传转化是植物基因工程的有效工具。 VirE2是一种结合农杆菌的单链DNA蛋白质,被转运到植物细胞中并可能保护T-DNA免受降解。使用酵母双杂交系统,我们鉴定了拟南芥VIRE2-相互作用蛋白2(VIP2),其NOT结构域在植物和动物中均保守。此外,我们提供了支持VIP2与VIP1相互作用的证据,VIP1是核输入和T-DNA整合所需的基本域/亮氨酸拉链基序蛋白。烟草对本氏烟草中VIP2的病毒诱导的基因沉默和拟南芥vip2突变体(At vip2)的表征证明,VIP2是农杆菌介导的稳定转化所必需的,而不是瞬时转化所必需的。基于启动子-诱捕载体和T-DNA整合的定量分析进一步证实了VIP2参与T-DNA整合。有趣的是,与具有转移缺陷的土壤杆菌菌株相比,在具有T-DNA转移能力的土壤杆菌菌株感染后,在更长的时间内更大程度地诱导了VIP2转录物。 At vip2的转录组分析表明VIP2可能是转录调节子,而对At vip2转化的顽固性很可能是由于农杆菌感染后基因表达沉默响应和组蛋白基因抑制导致T-DNA整合事件减少的结合。

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