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首页> 外文期刊>The Plant Cell >Proteomics and Functional Analyses of Pepper Abscisic Acid-Responsive 1 (ABR1), Which Is Involved in Cell Death and Defense Signaling
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Proteomics and Functional Analyses of Pepper Abscisic Acid-Responsive 1 (ABR1), Which Is Involved in Cell Death and Defense Signaling

机译:辣椒脱落酸反应1(ABR1),涉及细胞死亡和防御信号转导的蛋白质组学和功能分析。

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摘要

Abscisic acid (ABA) is a key regulator of plant growth and development, as well as plant defense responses. A high-throughput in planta proteome screen identified the pepper (Capsicum annuum) GRAM (for glucosyltransferases, Rab-like GTPase activators, and myotubularins) domain-containing ABA-RESPONSIVE1 (ABR1), which is highly induced by infection with avirulent Xanthomonas campestris pv vesicatoria and also by treatment with ABA. The GRAM domain is essential for the cell death response and for the nuclear localization of ABR1. ABR1 is required for priming cell death and reactive oxygen species production, as well as ABA-salicylic acid (SA) antagonism. Silencing of ABR1 significantly compromised the hypersensitive response but enhanced bacterial pathogen growth and ABA levels in pepper. High levels of ABA in ABR1-silenced plants antagonized the SA levels induced by pathogen infection. Heterologous transgenic expression of ABR1 in Arabidopsis thaliana conferred enhanced resistance to Pseudomonas syringae pv tomato and Hyaloperonospora arabidopsidis infection. The susceptibility of the Arabidopsis ABR1 putative ortholog mutant, abr1, to these pathogens also supports the involvement of ABR1 in disease resistance. Together, these results reveal ABR1 as a novel negative regulator of ABA signaling and suggest that the nuclear ABR1 pool is essential for the cell death induction associated with ABA-SA antagonism.
机译:脱落酸(ABA)是植物生长与发育以及植物防御反应的关键调节剂。高通量的植物蛋白质组筛查结果确定了辣椒(Capsicum annuum)GRAM(用于葡萄糖基转移酶,Rab样GTPase激活剂和肌微管蛋白)结构域中的ABA-RESPONSIVE1(ABR1),这是由无毒的Xanthomonas campestris pv感染引起的。 vesicatoria,也可通过ABA处理。 GRAM域对于细胞死亡反应和ABR1的核定位至关重要。 ABR1是引发细胞死亡和产生活性氧以及ABA-水杨酸(SA)拮抗作用所必需的。 ABR1的沉默显着损害了过敏反应,但增强了辣椒中细菌病原体的生长和ABA的水平。 ABR1沉默的植物中高水平的ABA拮抗病原体感染诱导的SA水平。拟南芥中ABR1的异源转基因表达增强了对丁香假单胞菌PV番茄和透明质酸假单胞菌感染的抗性。拟南芥ABR1假定直系同源突变体abr1对这些病原体的敏感性也支持ABR1参与抗病性。总之,这些结果揭示了ABR1是ABA信号的新型负调节剂,并表明核ABR1库对于与ABA-SA拮抗作用相关的细胞死亡诱导至关重要。

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