首页> 外文OA文献 >Genetic and Physiological Analysis of a New Locus in Arabidopsis That Confers Resistance to 1-Aminocyclopropane-1-Carboxylic Acid and Ethylene and Specifically Affects the Ethylene Signal Transduction Pathway.
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Genetic and Physiological Analysis of a New Locus in Arabidopsis That Confers Resistance to 1-Aminocyclopropane-1-Carboxylic Acid and Ethylene and Specifically Affects the Ethylene Signal Transduction Pathway.

机译:遗传和生理分析的拟南芥中的一个新的基因座,赋予对1-氨基环丙烷-1-羧酸和乙烯的抗性,并特别影响乙烯信号传导途径。

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摘要

A population of M2 seedlings of Arabidopsis thaliana was screened for mutants that were insensitive to the ethylene precursor 1-aminocyclopropane-1-carboxylate (ACC). Several independent lines were obtained and proved insensitive to both ACC and ethylene. Two lines were identified as alleles of a single recessive mutation, designated ain1. Linkage analysis indicated that the ain1 gene is located on chromosome 1, adjacent to the cer5 marker and, therefore, genetically distinct from previously identified ethylene resistance loci. General phenotypic aspects of ain1 mutants were similar to wild type. For both alleles, the level of insensitivity to ethylene at the seedling stage was indistinguishable in terms of elongation growth. In contrast, the gravitropic response of ain1-1 seedlings was slower than that of wild-type and ain1-2 seedlings. At the adult stage, stress responses of mutants were similar to wild type. However, ethylene-induced leaf senescence was delayed in both mutants. In addition, we observed significant interallelic variation in ethylene production rates. Growth inhibition experiments showed that the ain1 mutation does not confer resistance to other hormones. Thus, ain1 most probably affects a step specific for the ethylene signal transduction pathway.
机译:筛选拟南芥M2幼苗种群中对乙烯前体1-氨基环丙烷-1-羧酸酯(ACC)不敏感的突变体。获得了几个独立的品系,并证明它们对ACC和乙烯均不敏感。两条线被鉴定为单个隐性突变的等位基因,命名为ain1。连锁分析表明ain1基因位于1号染色体上,与cer5标记相邻,因此在遗传上不同于先前鉴定的乙烯抗性基因座。 ain1突变体的一般表型方面与野生型相似。对于这两个等位基因,在苗期对乙烯的不敏感性水平在伸长生长方面是无法区分的。相比之下,ain1-1幼苗的重力运动响应慢于野生型和ain1-2幼苗。在成年阶段,突变体的应激反应与野生型相似。然而,乙烯诱导的叶片衰老在两个突变体中均被延迟。此外,我们观察到乙烯生产率的显着等位变异。生长抑制实验表明ain1突变不会赋予对其他激素的抗性。因此,ain1最有可能影响乙烯信号转导途径的特异性步骤。

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