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首页> 外文期刊>Plant physiology >Regulation of plant disease resistance, stress responses, cell death, and ethylene signaling in Arabidopsis by the EDR1 protein kinase
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Regulation of plant disease resistance, stress responses, cell death, and ethylene signaling in Arabidopsis by the EDR1 protein kinase

机译:EDR1蛋白激酶对拟南芥中植物抗病性,胁迫响应,细胞死亡和乙烯信号传导的调节

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ENHANCED DISEASE RESISTANCE 1 (EDR1) encodes a CTR1-like kinase and was previously reported to function as a negative regulator of disease resistance and ethylene-induced senescence. Here, we report that the edr1 mutant displays enhanced stress responses and spontaneous necrotic lesions under drought conditions in the absence of pathogen, suggesting that EDR1 is also involved in stress response signaling and cell death regulation. Double mutant analysis revealed that these drought-induced phenotypes require salicylic acid but not ethylene signaling pathways. In addition, the edr1-mediated ethylene-induced senescence phenotype was suppressed by mutations in EIN2, but not by mutations in SID2, PAD4, EDS1, or NPR1, suggesting that EDR1 functions at a point of cross talk between ethylene and salicylic acid signaling that impinges on senescence and cell death. Two edr1-associated phenotypes, drought-induced growth inhibition and ethylene-induced senescence, were suppressed by mutations in ORE9, implicating ubiquitin-mediated protein degradation in the regulation of these phenotypes. However, the ore9 mutation did not suppress edr1-mediated enhanced disease resistance to powdery mildew or spontaneous lesions, indicating that these phenotypes are controlled by separate signaling pathways. To investigate the function of the EDR1 kinase domain, we expressed the C-terminal third of EDR1 in wild-type Columbia and edr1 backgrounds under the control of a dexamethasone-inducible promoter. Overexpression of the EDR1 kinase domain in an edr1 background had no obvious effect on edr1-associated phenotypes. However, overexpression of the EDR1 kinase domain in a wild-type Columbia background caused dominant negative phenotypes, including enhanced disease resistance to powdery mildew and enhanced ethylene-induced senescence; thus, the overexpressed EDR1 kinase domain alone does not exert EDR1 function, but rather negatively affects the function of native EDR1 protein.
机译:增强的抗病性1(EDR1)编码CTR1样激酶,以前被报道为抗病性和乙烯诱导的衰老的负调节剂。在这里,我们报道edr1突变体在干旱条件下没有病原体的情况下显示增强的应激反应和自发性坏死病变,表明EDR1也参与应激反应信号和细胞死亡调控。双重突变分析显示,这些干旱诱导的表型需要水杨酸,但不需要乙烯信号传导途径。此外,edr1介导的乙烯诱导的衰老表型受到EIN2突变的抑制,但不受SID2,PAD4,EDS1或NPR1突变的抑制,这表明EDR1在乙烯和水杨酸之间的相互干扰点起作用。影响衰老和细胞死亡。 ORE9中的突变抑制了两种与edr1相关的表型,干旱引起的生长抑制和乙烯引起的衰老,这牵涉到泛素介导的蛋白质降解调控这些表型。但是,ore9突变不能抑制edr1介导的对白粉病或自发性病害的抗病性增强,表明这些表型受单独的信号通路控制。为了调查EDR1激酶域的功能,我们在地塞米松诱导型启动子的控制下,在野生型Columbia和edr1背景中表达了EDR1的C末端三分之一。 EDR1激酶域在edr1背景中的过表达对edr1相关表型没有明显影响。然而,在野生型哥伦比亚背景中EDR1激酶结构域的过表达导致显性负表型,包括对白粉病的抗病性增强和乙烯诱导的衰老。因此,单独的过表达的EDR1激酶结构域不会发挥EDR1功能,而会对天然EDR1蛋白的功能产生负面影响。

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