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拟南芥中依赖RPP7的抗病性需要EDM2,且EDM2会影响RPP7转录水平。

EDM2 is required for RPP7-dependent disease resistance in Arabidopsis and affects RPP7 transcript levels.

作者信息

Eulgem Thomas, Tsuchiya Tokuji, Wang Xiao-Jun, Beasley Britt, Cuzick Alayne, Tör Mahmut, Zhu Tong, McDowell John M, Holub Eric, Dangl Jeffery L

机构信息

Department of Biology, CB#3280 University of North Carolina at Chapel Hill, NC 27599, USA.

出版信息

Plant J. 2007 Mar;49(5):829-39. doi: 10.1111/j.1365-313X.2006.02999.x. Epub 2007 Jan 23.

Abstract

Specific disease resistance of Arabidopsis thaliana against the Hyaloperonospora parasitica isolate Hiks1 (HpHiks1) is mediated by RPP7. Although this disease resistance gene encodes a typical nucleotide binding site leucine-rich repeat (NB-LRR) disease resistance protein, its function is independent of the defense hormone salicylic acid and most known genes required for plant immune responses. We identified EDM2 (enhanced downy mildew 2) in a genetic screen for RPP7 suppressors. Mutations of EDM2 phenocopy RPP7 mutations, but do not affect other tested disease resistance genes. We isolated EDM2 by map-based cloning. The predicted EDM2 protein is structurally unrelated to previously identified components of the plant immune system, bears typical features of transcriptional regulators, including plant homeodomain (PHD)-finger-like domains, and defines a plant-specific protein family. In edm2 mutants both constitutive and HpHiks1-induced RPP7 transcript levels are reduced, suggesting that EDM2 is either a direct or an indirect regulator of RPP7 expression. Microarray analyses defined a set of defense-associated genes, the expression of which is suppressed during successful HpHiks1 colonization of either rpp7 or edm2 plants. This transcriptional phenotype is counteracted by an EDM2/RPP7-dependent mechanism.

摘要

拟南芥对寄生霜霉分离株Hiks1(HpHiks1)的特异性抗病性由RPP7介导。尽管该抗病基因编码一种典型的核苷酸结合位点富含亮氨酸重复序列(NB-LRR)抗病蛋白,但其功能独立于防御激素水杨酸以及植物免疫反应所需的大多数已知基因。我们在对RPP7抑制子的遗传筛选中鉴定出了EDM2(增强霜霉病2)。EDM2的突变模拟了RPP7的突变,但不影响其他测试的抗病基因。我们通过图位克隆分离出了EDM2。预测的EDM2蛋白在结构上与先前鉴定的植物免疫系统成分无关,具有转录调节因子的典型特征,包括植物同源结构域(PHD)-指状结构域,并定义了一个植物特异性蛋白家族。在edm2突变体中,组成型和HpHiks1诱导的RPP7转录水平均降低,这表明EDM2要么是RPP7表达的直接调节因子,要么是间接调节因子。微阵列分析确定了一组防御相关基因,在HpHiks1成功定殖于rpp7或edm2植物的过程中,这些基因的表达受到抑制。这种转录表型可通过一种EDM2/RPP7依赖性机制得到抵消。

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