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首页> 外文期刊>Frontiers in Plant Science >GmWRKY31 and GmHDL56 Enhances Resistance to Phytophthora sojae by Regulating Defense-Related Gene Expression in Soybean
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GmWRKY31 and GmHDL56 Enhances Resistance to Phytophthora sojae by Regulating Defense-Related Gene Expression in Soybean

机译:GmWrky31和GmHDL56通过调节大豆中的防御相关基因表达来增强对<斜视>植物>植物>植物>的抗性

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摘要

Phytophthora root and stem rot of soybean [ Glycine max (L.) Merr.] caused by the oomycete Phytophthora sojae , is a destructive disease worldwide. The molecular mechanism of the soybean response to P. sojae is largely unclear. We report a novel WRKY transcription factor (TF) in soybean, GmWRKY31, in the host response to P. sojae . Overexpression and RNA interference analysis demonstrated that GmWRKY31 enhanced resistance to P. sojae in transgenic soybean plants. GmWRKY31 was targeted to the nucleus, where it bound to the W-box and acted as an activator of gene transcription. Moreover, we determined that GmWRKY31 physically interacted with GmHDL56, which improved resistance to P. sojae in transgenic soybean roots. GmWRKY31 and GmHDL56 shared a common target GmNPR1 which was induced by P. sojae . Overexpression and RNA interference analysis demonstrated that GmNPR1 enhanced resistance to P. sojae in transgenic soybean plants. Several pathogenesis-related ( PR ) genes were constitutively activated, including GmPR1a , GmPR2 , GmPR3 , GmPR4 , GmPR5a , and GmPR10 , in soybean plants overexpressing GmNPR1 transcripts. By contrast, the induction of PR genes was compromised in transgenic GmNPR1 -RNAi lines. Taken together, these findings suggested that the interaction between GmWRKY31 and GmHDL56 enhances resistance to P. sojae by regulating defense-related gene expression in soybean.
机译:植物植物植物植物植物植物植物(甘氨酸Max(L.)Merr。)是全球的破坏性疾病引起的植物细胞瘤和茎腐烂。大豆对P. Sojae的响应的分子机制在很大程度上不清楚。我们在宿主对P. Sojae的宿主响应中报告了大豆Gmwrky31中的一种新型Wrky转录因子(TF)。过表达和RNA干扰分析表明Gmwrky31在转基因大豆植物中增强了对P. Sojae的抗性。 Gmwrky31靶向核,其中它与W盒结合并用作基因转录的激活剂。此外,我们确定了与GMHDL56物理相互作用的GmWrky31,其在转基因大豆根中改善了对P. Sojae的抗性。 GmWrky31和GMHDL56共享由P. Sojae诱导的常见目标GMNPR1。过表达和RNA干扰分析证明GMNPR1在转基因大豆植物中增强了对P. Sojae的抗性。在大豆植物过表达GMNPR1转录物的大豆植物中,组成型有关致病菌相关(PR)基因,包括GMPR1A,GMPR2,GMPR3,GMPR4,GMPR5A和GMPR10。相比之下,PR基因的诱导在转基因GMNPR1 -RNAI线中损害。在一起,这些研究结果表明,通过调节大豆中的防御相关基因表达,Gmwrky31和GmHDL56之间的相互作用增强了对P. Sojae的抗性。

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