首页> 外文OA文献 >Genetic Characterization of Mutants Resistant to the Antiauxin p-Chlorophenoxyisobutyric Acid Reveals That AAR3, a Gene Encoding a DCN1-Like Protein, Regulates Responses to the Synthetic Auxin 2,4-Dichlorophenoxyacetic Acid in Arabidopsis Roots1[C][W]
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Genetic Characterization of Mutants Resistant to the Antiauxin p-Chlorophenoxyisobutyric Acid Reveals That AAR3, a Gene Encoding a DCN1-Like Protein, Regulates Responses to the Synthetic Auxin 2,4-Dichlorophenoxyacetic Acid in Arabidopsis Roots1[C][W]

机译:抗抗生长素对氯苯氧基异丁酸的突变体的遗传特征表明,编码DCN1样蛋白的基因AAR3调节拟南芥Roots1中对合成的生长素2,4-二氯苯氧基乙酸的响应[C] [W]

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摘要

To isolate novel auxin-responsive mutants in Arabidopsis (Arabidopsis thaliana), we screened mutants for root growth resistance to a putative antiauxin, p-chlorophenoxyisobutyric acid (PCIB), which inhibits auxin action by interfering the upstream auxin-signaling events. Eleven PCIB-resistant mutants were obtained. Genetic mapping indicates that the mutations are located in at least five independent loci, including two known auxin-related loci, TRANSPORT INHIBITOR RESPONSE1 and Arabidopsis CULLIN1. antiauxin-resistant mutants (aars) aar3-1, aar4, and aar5 were also resistant to 2,4-dichlorophenoxyacetic acid as shown by a root growth assay. Positional cloning of aar3-1 revealed that the AAR3 gene encodes a protein with a domain of unknown function (DUF298), which has not previously been implicated in auxin signaling. The protein has a putative nuclear localization signal and shares homology with the DEFECTIVE IN CULLIN NEDDYLATION-1 protein through the DUF298 domain. The results also indicate that PCIB can facilitate the identification of factors involved in auxin or auxin-related signaling.
机译:为了在拟南芥(Arabidopsis thaliana)中分离新的生长素应答突变体,我们筛选了对推定的抗生长素对氯苯氧基异丁酸(PCIB)的根系生长抗性的突变体,后者通过干扰上游生长素信号传导事件抑制生长素的作用。获得了11个抗PCIB的突变体。遗传作图表明该突变位于至少五个独立的基因座,包括两个已知的生长素相关基因座,运输抑制剂响应1和拟南芥CULLIN1。根生长试验表明,抗生长素抗性的突变体(aars)aar3-1,aar4和aar5也对2,4-二氯苯氧基乙酸具有抗性。 aar3-1的位置克隆表明,AAR3基因编码的蛋白具有未知功能域(DUF298),以前尚未与生长素信号传导相关。该蛋白具有推定的核定位信号,并通过DUF298结构域与DELECTIVE IN CULLIN NEDDYLATION-1蛋白具有同源性。结果还表明,PCIB可以促进识别生长素或生长素相关信号传导中涉及的因素。

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