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首页> 外文期刊>Plant and cell physiology >The MAMP-Responsive MYB Transcription Factors MYB30, MYB55 and MYB110 Activate the HCAA Synthesis Pathway and Enhance Immunity in Rice
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The MAMP-Responsive MYB Transcription Factors MYB30, MYB55 and MYB110 Activate the HCAA Synthesis Pathway and Enhance Immunity in Rice

机译:MAMP响应性MYB转录因子MYB30,MYB55和MYB110激活HCAA合成途径,增强水稻免疫力

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Phenylpropanoids, including diverse compounds, such as monolignols and hydroxycinnamic acids (HCAAs), are essential for land plants to protect them against abiotic stresses, and create physical and chemical barriers to pathogen infection. However, the control of production of these compounds in response to pathogens has been poorly understood. Previously we showed that a MAMP- (microbe-associated molecular pattern) responsive MAPK (mitogen-activated protein kinase) cascade (MKK4-MPK3/MPK6) comprehensively induced the expression of cinnamate/monolignol synthesis genes in rice cells. Here, we identified three MYB proteins, MYB30, MYB55 and MYB110, which are transcriptionally induced by MAMP treatment, MAPK activation and pathogen inoculation. Induced expression of these MYB genes systematically and specifically induced a large part of the genes encoding enzymes in the cinnamate/monolignol pathway. Furthermore, induced expression of the MYB genes caused accumulation of ferulic acid, one of the HCAAs, and enhanced resistance to both fungal and bacterial pathogens in planta. In conclusion, MYB30, MYB55 and MYB110 are involved in the signal pathway between MAMP perception and cinnamate/monolignol synthesis, and have important roles for plant immunity.
机译:苯丙醇,包括不同化合物,例如单氯酮和羟基氨基酸(HCAAs),对于陆地植物来说是必不可少的,以保护它们免受非生物应激,并为病原体感染产生物理和化学障碍。然而,对病原体的对这些化合物的生产的控制已经不知识理。此前,我们表明,MAMP-(微生物相关的分子模式)响应式MAPK(丝裂原激活的蛋白激酶)级联(MKK4-MPK3 / MPK6)综合地诱导了水稻细胞中肉桂酸酯/单烯醇合成基因的表达。在这里,我们确定了三种MyB蛋白,MyB30,MyB55和MyB110,其通过MAMP处理,MAPK激活和病原体接种而移动。系统地诱导这些MYB基因的表达,并且特异性地诱导了在肉桂酸盐/单氯单糖醇途径中编码酶的大部分基因。此外,诱导MyB基因的表达引起了阿魏酸的积累,其中一种HCAAs,并在Planta中增强了真菌和细菌病原体的抗性。总之,MyB30,MyB55和MyB110涉及MAMP认知和肉桂酸酯/单甘醇合成之间的信号途径,对植物免疫具有重要作用。

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