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Reasons for lower transformation efficiency in indica rice using Agrobacterium tumefaciens-mediated transformation: Lessons from transformation assays and genome-wide expression profiling

机译:利用根癌农杆菌介导的转化方法降低in稻转化效率的原因:转化试验和全基因组表达谱分析的经验教训

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Agrobacterium tumefaciens-mediated genetic transformation has been routinely used in rice for more than a decade. However, the transformation efficiency of the indica rice variety is still unsatisfactory and much lower than that of japonica cultivars. Further improvement on the transformation efficiency lies in the genetic manipulation of the plant itself, which requires a better understanding of the underlying process accounting for the susceptibility of plant cells to Agrobacterium infection as well as the identification of plant genes involved in the transformation process. In this study, transient and stable transformation assays using different japonica and indica cultivars showed that the lower transformation efficiency in indica rice was mainly due to the low efficiency in T-DNA integration into the plant genome. Analyses of the global gene expression patterns across the transformation process in different varieties revealed major differences in the expression of genes responding to Agrobacterium within the first 6 h after infection and more differentially expressed genes were observed in the indica cultivar Zhenshan 97 (ZS), with a number of genes repressed early during infection. Microarray analysis revealed an important effect of plant defense response on Agrobacterium-mediated transformation. It has been shown that some genes which may be necessary for the transformation process were down-regulated in the indica cultivar ZS. This dataset provided a versatile resource for plant genomic research to understand the regulatory network of transformation process, and showed great promise for improving indica rice transformation using genetic manipulation of the rice genome.
机译:根癌农杆菌介导的遗传转化已在水稻中常规使用了十多年。然而,in稻品种的转化效率仍然不能令人满意,并且远低于粳稻品种。转化效率的进一步提高在于对植物本身的遗传操作,这需要更好地了解基础过程,从而说明植物细胞对农杆菌感染的敏感性以及鉴定参与转化过程的植物基因。在这项研究中,使用不同粳稻和in稻品种的瞬时稳定转化试验表明,rice稻的较低转化效率主要是由于T-DNA整合入植物基因组的效率较低。对不同变种在整个转化过程中的全球基因表达模式的分析显示,感染后前6小时内,农杆菌响应基因的表达存在主要差异,而在稻振山97(ZS)中观察到更多差异表达基因。在感染的早期,许多基因被抑制。基因芯片分析揭示了植物防御反应对农杆菌介导的转化的重要影响。已经显示,在process品种ZS中下调了转化过程可能必需的一些基因。该数据集为植物基因组研究提供了丰富的资源,以了解转化过程的调控网络,并显示了利用水稻基因组的遗传操纵来改善rice稻转化的巨大前景。

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