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首页> 外文期刊>The Plant Cell >ABA is an essential signal for plant resistance to pathogens affecting JA biosynthesis and the activation of defenses in Arabidopsis
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ABA is an essential signal for plant resistance to pathogens affecting JA biosynthesis and the activation of defenses in Arabidopsis

机译:ABA是植物抵抗病原体影响JA生物合成和激活拟南芥防御的重要信号。

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Analyses of Arabidopsis thaliana defense response to the damping-off oomycete pathogen Pythium irregulare show that resistance to P. irregulare requires a multicomponent defense strategy. Penetration represents a first layer, as indicated by the susceptibility of pen2 mutants, followed by recognition, likely mediated by ERECTA receptor-like kinases. Subsequent signaling of inducible defenses is predominantly mediated by jasmonic acid (JA), with insensitive coil mutants showing extreme susceptibility. In contrast with the generally accepted roles of ethylene and salicylic acid cooperating with or antagonizing, respectively, JA in the activation of defenses against necrotrophs, both are required to prevent disease progression, although much less so than JA. Meta-analysis of transcriptome profiles confirmed the predominant role of JA in activation of P. irregulare-induced defenses and uncovered abscisic acid (ABA) as an important regulator of defense gene expression. Analysis of cis-regulatory sequences also revealed an unexpected overrepresentation of ABA response elements in promoters of P. irregulare-responsive genes. Subsequent infections of ABA-related and callose-deficient mutants confirmed the importance of ABA in defense, acting partly through an undescribed mechanism. The results support a model for ABA affecting JA biosynthesis in the activation of defenses against this oomycete.
机译:分析拟南芥对抑制卵菌病原体腐霉菌的防御反应表明,对拟杆菌的抗性需要多组分防御策略。渗透表示第一层,如pen2突变体的敏感性所指示,然后是识别,可能是由ERECTA受体样激酶介导的。诱导防御的后续信号主要由茉莉酸(JA)介导,不敏感的线圈突变体表现出极高的敏感性。与通常公认的乙烯和水杨酸分别与JA协同作用或拮抗JA来激活抗坏死菌的防御作用相反,两者都需要预防疾病的发展,尽管远低于JA。转录组图谱的荟萃分析证实了JA在激活不规则假单胞菌诱导的防御中的主要作用,并发现脱落酸(ABA)是防御基因表达的重要调节剂。顺式调节序列的分析还显示,在不规则疟原虫响应基因的启动子中,ABA响应元件出乎意料的过度表达。随后感染的ABA相关和缺乏call的突变体证实了ABA在防御中的重要性,部分原因是通过一种未知的机制起作用的。结果支持了ABA在影响卵菌防御系统中影响JA生物合成的模型。

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