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Characterization of a Rice WRKY Gene Whose Expression Is Induced upon Pathogen Attack and Mechanical Wounding

机译:水稻WRKY基因表达的表征,该基因在病原菌侵袭和机械损伤后被诱导

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WRKY genes encode plant specific transcription factors that have been extensively studied in dicotyledonous plant species. To investigate the function of these genes in monocots, we isolated a full length cDNA clone of the rice WRKY gene which we tentatively named as OsiWRKY. The open reading frame of OsiWRKY cDNA encoded a polypeptide of 482 amino acid residues. The deduced primary structure of OsiWRKY contained a single WRKY domain of a typical C_2-H_2 zinc finger motif. A putative nuclear localization signal was also predicted in OsiWRKY. Potential targeting of OsiWRKY to the nucleus was confirmed by transient expression of an OsiWRKY::GFP fusion protein in rice cells. The recombinant OsiWRKY protein bound specifically to the W-box element in electrophoretic mobility shift assay. In inoculation experiments with Xanthomonas oryzae pv. oryzae, OsiWRKY transcription was increased more dramatically in the resistant variety IR-26 than in the susceptible variety Jingang 30. Interestingly, an increase in OsiWRKY transcription was also observed in the mock-inoculated control plants of both IR-26 and Jingang 30. However, the induction of OsiWRKY transcription occurred much earlier and more substantial in pathogen-infected plants than in mock-inoculated controls. These results suggest that OsiWRKY encodes a potential WRKY transcription factor that may function in responses of rice plants to both pathogen attack and mechanical wounding. But the mechanisms underlying the function of OsiWRKY in the two processes may be different.
机译:WRKY基因编码植物特异性转录因子,已在双子叶植物物种中进行了广泛研究。为了研究这些基因在单子叶植物中的功能,我们分离了水稻WRKY基因的全长cDNA克隆,我们暂时将其命名为OsiWRKY。 OsiWRKY cDNA的开放阅读框编码了482个氨基酸残基的多肽。推导的OsiWRKY的一级结构包含一个典型的C_2-H_2锌指基序的单个WRKY域。在OsiWRKY中还预测了一个假定的核定位信号。通过在水稻细胞中瞬时表达OsiWRKY :: GFP融合蛋白,证实了OsiWRKY潜在地靶向细胞核。重组OsiWRKY蛋白在电泳迁移率变动分析中与W-box元件特异性结合。在米黄单胞菌的接种实验中。水稻,抗病品种IR-26中的OsiWRKY转录比易感品种金刚30中的显着增加。有趣的是,在模拟接种的对照植物IR-26和金刚30中,也观察到了OsiWRKY转录的增加。 ,OsiWRKY转录的诱导发生在病原体感染的植物中,比模拟接种的对照发生得要早得多,而且意义更大。这些结果表明,OsiWRKY编码潜在的WRKY转录因子,该因子可能在水稻对病原体侵袭和机械伤害的反应中起作用。但是,在两个过程中,OsiWRKY的功能所基于的机制可能有所不同。

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