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The ankyrin-repeat transmembrane protein BDA1 functions downstream of the receptor-like protein SNC2 to regulate plant immunity

机译:锚蛋白重复跨膜蛋白BDA1在受体样蛋白SNC2的下游调节植物免疫力

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摘要

Plants utilize a large number of immune receptors to recognize pathogens and activate defense responses. A small number of these receptors belong to the receptor-like protein family. Previously, we showed that a gain-of-function mutation in the receptor-like protein SNC2 (for Suppressor of NPR1, Constitutive2) leads to constitutive activation of defense responses in snc2-1D mutant plants. To identify defense signaling components downstream of SNC2, we carried out a suppressor screen in the snc2-1D mutant background of Arabidopsis (Arabidopsis thaliana). Map-based cloning of one of the suppressor genes, BDA1 (for bian da; "becoming big" in Chinese), showed that it encodes a protein with amino-terminal ankyrin repeats and carboxyl-terminal transmembrane domains. Loss-of-function mutations in BDA1 suppress the dwarf morphology and constitutive defense responses in snc2-1D npr1-1 (for nonexpressor of pathogenesis-related genes1,1) and also result in enhanced susceptibility to bacterial pathogens. In contrast, a gain-of-function allele of bda1 isolated from a separate genetic screen to search for mutants with enhanced pathogen resistance was found to constitutively activate cell death and defense responses. These data suggest that BDA1 is a critical signaling component that functions downstream of SNC2 to regulate plant immunity.
机译:植物利用大量的免疫受体来识别病原体并激活防御反应。这些受体中的少数属于受体样蛋白家族。以前,我们表明受体样蛋白SNC2(对于NPR1的抑制剂,Constitutive2)的功能获得性突变导致snc2-1D突变植物中防御反应的组成型激活。为了鉴定SNC2下游的防御信号转导成分,我们在拟南芥(Arabidopsis thaliana)的snc2-1D突变体背景中进行了抑制子筛选。基于图谱的抑制基因之一BDA1的克隆(针对变态,中文为“变大”)表明,它编码的蛋白具有氨基末端锚蛋白重复序列​​和羧基末端跨膜结构域。 BDA1的功能丧失突变抑制了snc2-1D npr1-1(对于与病程相关的基因的非表达者1,1)中的矮小形态和本构防御反应,还导致细菌病原体的易感性增强。相比之下,发现从单独的遗传筛选中分离出功能增强的bda1等位基因,以寻找具有增强的病原体抗性的突变体,可以组成性激活细胞死亡和防御反应。这些数据表明,BDA1是一个关键的信号传导组件,在SNC2的下游起作用,以调节植物的免疫力。

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