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首页> 外文期刊>Molecular Plant-Microbe Interactions >OsGF14b Positively Regulates Panicle Blast Resistance but Negatively Regulates Leaf Blast Resistance in Rice
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OsGF14b Positively Regulates Panicle Blast Resistance but Negatively Regulates Leaf Blast Resistance in Rice

机译:OsGF14b积极调控水稻穗爆抗性,但负调控稻瘟病抗性

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摘要

Although 14-3-3 proteins have been reported to be involved in responses to biotic stresses in plants, their functions in rice blast, the most destructive disease in rice, are largely unknown. Only GF14e has been confirmed to negatively regulate leaf blast. We report that GF14b is highly expressed in seedlings and panicles during blast infection. Rice plants overexpressing GF14b show enhanced resistance to panicle blast but are susceptible to leaf blast. In contrast, GF14b-silenced plants show increased susceptibility to panicle blast but enhanced resistance to leaf blast. Yeast one-hybrid assays demonstrate that WRKY71 binds to the promoter of GF14b and modulates its expression. Overexpression of GF14b induces expression of jasmonic acid (JA) synthesis-related genes but suppresses expression of salicylic acid (SA) synthesis-related genes. In contrast, suppressed GF14b expression causes decreased expression of JA synthesis-related genes but activation of SA synthesis related genes. These results suggest that GF14b positively regulates panicle blast resistance but negatively regulates leaf blast resistance, and that GF14b-mediated disease resistance is associated with the JA- and SA-dependent pathway. The different functions for 14-3-3 proteins in leaf and panicle blast provide new evidence that leaf and panicle blast resistance are controlled by different mechanisms.
机译:尽管据报道14-3-3蛋白参与了植物对生物胁迫的反应,但是在稻瘟病(水稻中最具破坏性的疾病)中的功能尚不清楚。已确认只有GF14e对叶胚负调控。我们报告说,GF14b在爆炸感染期间在幼苗和穗中高表达。过量表达GF14b的水稻植株对穗瘟的抗性增强,但对叶瘟很敏感。相反,GF14b沉默的植物显示出对穗瘟的敏感性增加,但是对叶瘟的抵抗力增强。酵母一杂交试验证明WRKY71与GF14b的启动子结合并调节其表达。 GF14b的过表达诱导茉莉酸(JA)合成相关基因的表达,但抑制水杨酸(SA)合成相关基因的表达。相反,抑制的GF14b表达导致JA合成相关基因表达降低,但激活SA合成相关基因。这些结果表明,GF14b积极调节穗瘟抗性,但负调节叶瘟抗性,并且GF14b介导的疾病抗性与JA和SA依赖性途径相关。 14-3-3蛋白在叶和穗瘟中的不同功能提供了新的证据,表明叶和穗瘟的抗性受不同机制控制。

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