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Building a mutant resource for the study of disease resistance in rice reveals the pivotal role of several genes involved in defence

机译:为水稻抗病抗病的研究建立突变资源揭示了涉及防御的几种基因的关键作用

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摘要

In Arabidopsis, gene expression studies and analysis of knock-out (KO) mutants have been instrumental in building an integrated view of disease resistance pathways. Such an integrated view is missing in rice where shared tools, including genes and mutants, must be assembled. This work provides a tool kit consisting of informative genes for the molecular characterization of the interaction of rice with the major fungal pathogen Magnaporthe oryzae. It also provides for a set of eight KO mutants, all in the same genotypic background, in genes involved in key steps of the rice disease resistance pathway. This study demonstrates the involvement of three genes, OsWRKY28, rTGA2.1 and NH1, in the establishment of full basal resistance to rice blast. The transcription factor OsWRKY28 acts as a negative regulator of basal resistance, like the orthologous barley gene. Finally, the up-regulation of the negative regulator OsWRKY28 and the down-regulation of PR gene expression early during M. oryzae infection suggest that the fungus possesses infection mechanisms that enable it to block host defences. (Résumé d'auteur)
机译:在拟南芥中,基因表达研究和敲除(KO)突变体的分析已经有助于构建疾病抵抗途径的综合图。在稻米中缺少这种综合视图,其中必须组装共享工具,包括基因和突变体。这项工作提供了一种工具套件,该工具套件组成的信息基因,用于分子表征水稻与主要真菌病原体Magnaporthe oryzae的相互作用。它还提供了一组8个KO突变体,所有在相同的基因型背景中,参与水稻抗病途径关键步骤的基因。本研究表明,三种基因,OSWRKY28,RTGA2.1和NH1的参与建立了对水稻爆炸的全基础抗性。转录因子OSWRKY28用作基底抗性的负调节器,如局部大麦基因。最后,在M. oryzae感染期间,在M. Oryzae感染期间,阴性调节器OSWrky28的上调和PR基因表达的下调表明,真菌具有能够阻止宿主防御的感染机制。 (Résuméd'Auteur)

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