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An Arabidopsis histone H2A mutant is deficient in Agrobacterium T-DNA integration

机译:拟南芥组蛋白H2A突变体缺乏农杆菌T-DNA整合

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摘要

Agrobacterium tumefaciens genetically transforms plant cells by transferring a portion of the bacterial Ti-plasmid, the T-DNA, to the plant and integrating the T-DNA into the plant genome. Little is known about the T-DNA integration process, and no plant genes involved in integration have yet been identified. We characterized an Arabidopsis mutant generated by T-DNA insertional mutagenesis, rat5, that is resistant to Agrobacterium root transformation. rat5 contains two copies of T-DNA integrated as a tandem direct repeat into the 3′ untranslated region of a histone H2A gene, upstream of the polyadenylation signal sequence. Transient and stable β-glucuronidase expression data and assessment of the amount of T-DNA integrated into the genomes of wild-type and rat5 Arabidopsis plants indicated that the rat5 mutant is deficient in T-DNA integration. We complemented the rat5 mutation by expressing the RAT5 histone H2A gene in the mutant plant. Overexpression of RAT5 in wild-type plants increased Agrobacterium transformation efficiency. Furthermore, transient expression of a RAT5 gene from the incoming T-DNA was sufficient to complement the rat5 mutant and to increase the transformation efficiency of wild-type Arabidopsis plants.
机译:根癌农杆菌通过将一部分细菌Ti质粒T-DNA转移到植物并将T-DNA整合到植物基因组中来遗传转化植物细胞。关于T-DNA整合的过程知之甚少,尚未发现参与整合的植物基因。我们表征了由T-DNA插入诱变产生的拟南芥突变体,rat5,它对农杆菌根转化具有抗性。 rat5包含两个拷贝的T-DNA,作为串联直接重复序列整合到组蛋白H2A基因的3'非翻译区域中,位于聚腺苷酸化信号序列的上游。瞬时和稳定的β-葡萄糖醛酸苷酶表达数据以及对整合入野生型和rat5拟南芥植物基因组中的T-DNA数量的评估表明,rat5突变体缺乏T-DNA整合。我们通过在突变植物中表达RAT5组蛋白H2A基因来补充rat5突变。 RAT5在野生型植物中的过表达提高了农杆菌转化效率。此外,从传入的T-DNA瞬时表达RAT5基因足以补充rat5突变体并提高野生型拟南芥植物的转化效率。

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