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Five components of the ethylene-response pathway identified in a screen for weak ethylene-insensitive mutants in Arabidopsis

机译:在拟南芥中弱乙烯不敏感突变体的筛选中鉴定出乙烯反应途径的五个成分

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摘要

Five ethylene-insensitive loci (wei1–wei5) were identified by using a low-dose screen for “weak” ethylene-insensitive mutants. wei1, wei2, and wei3 seedlings showed hormone insensitivity only in roots, whereas wei4 and wei5 displayed insensitivity in both roots and hypocotyls. The genes corresponding to wei1, wei4, and wei5 were isolated using a positional cloning approach. The wei1 mutant harbored a recessive mutation in TIR1, which encodes a component of the SCF protein ubiquitin ligase involved in the auxin response. wei4, a dominant mutant, resulted from a mutation in the ethylene receptor ERS, whereas wei5, a semidominant mutant, was caused by a mutation in the EIN3-related transcription factor gene EIL1. The simultaneous loss of functional WEI5/EIL1 and EIN3 nearly completely abolished the ethylene response in etiolated seedlings, and adult plants were highly susceptible to infection by the necrotrophic fungal pathogen Botrytis cinerea. Moreover, wei5/eil1 ein3 double mutants were able to fully suppress constitutive signaling caused by ctr1, suggesting a synergistic interaction among these gene products. Unlike previously known root ethylene-insensitive mutants, wei2 and wei3 were not affected in their response to auxin and showed a normal response to gravity. Genetic mapping studies indicate that wei2 and wei3 correspond to previously unidentified ethylene pathway genes that may control cell-elongation processes functioning at the intersection of the ethylene and auxin response pathways.
机译:通过对“弱”乙烯不敏感突变体进行低剂量筛选,鉴定出五个对乙烯不敏感的基因座(wei1-wei5)。 wei1,wei2和wei3幼苗仅在根部显示激素不敏感,而wei4和wei5在根部和下胚轴均显示不敏感。使用位置克隆方法分离了与wei1,wei4和wei5相对应的基因。 wei1突变体在TIR1中具有隐性突变,该突变编码参与生长素应答的SCF蛋白泛素连接酶的一个成分。 wei4是一个显性突变体,是由乙烯受体ERS突变引起的,而wei5是半显性突变体,是由EIN3相关转录因子基因 EIL1 的突变引起的。功能性 WEI5 / EIL1 EIN3 的同时丧失几乎完全消除了黄化幼苗中的乙烯反应,成年植株高度易受感染坏死性真菌病原体灰葡萄孢。此外, wei5 / eil1 ein3 双重突变体能够完全抑制 ctr1 引起的组成性信号传导,表明这些基因产物之间存在协同作用。与以前已知的对乙烯不敏感的根突变体不同, wei2 wei3 对植物生长素的反应不受影响,对重力的反应正常。遗传图谱研究表明, wei2 wei3 对应于以前未鉴定的乙烯途径基因,这些基因可能控制在乙烯和生长素反应途径相交处起作用的细胞延伸过程。

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