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首页> 外文期刊>Plant Molecular Biology Reporter >Analyses of Arabidopsis trr14 T-DNA Insertion Mutants Reveal an Essential Role in Seed Germination
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Analyses of Arabidopsis trr14 T-DNA Insertion Mutants Reveal an Essential Role in Seed Germination

机译:拟南芥trr14 T-DNA插入突变体的分析揭示了种子发芽中的重要作用。

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TRR14 is an unknown protein that was first identified as a component of Arabidopsis responses to trehalose treatment. Phylogenic analysis showed that TRR14 belongs to a seven-gene family in Arabidopsis. Close homologues of TRR14 were found in plants and many cyanobacteria. GFP expression analysis showed that TRR14 is located in the chloroplast. GUS::TRR14 expression was found in leaves, flowers, stems and siliques. We investigated the functional roles of TRR14 in Arabidopsis thaliana under salt and drought stress. By a reverse genetic approach, two trr14 T-DNA insertion mutants were isolated from the SALK collection. Functional analysis of the trr14 mutants revealed enhanced sensitivity of the mutants to salt and drought stress, compared with the wild type plants. Further experiments indicated that the trr14 mutants have reduced seed germination, root length, survival rate and chlorophyll content under stress conditions. In addition activity of oxidative enzymes like peroxidase, catalase and polyphenol oxidase was reduced under salt and drought treatments. Thus, the present data indicate that a novel protein, TRR14, is involved in plant salt and drought tolerance.
机译:TRR14是一种未知的蛋白质,首先被鉴定为拟南芥对海藻糖治疗的反应成分。系统发育分析表明TRR14属于拟南芥中的七个基因家族。在植物和许多蓝细菌中发现了TRR14的紧密同源物。 GFP表达分析表明TRR14位于叶绿体中。在叶子,花朵,茎和果树中发现了GUS :: TRR14表达。我们研究了盐和干旱胁迫下拟南芥TRR14的功能作用。通过反向遗传方法,从SALK集合中分离了两个trr14 T-DNA插入突变体。 trr14突变体的功能分析表明,与野生型植物相比,该突变体对盐和干旱胁迫的敏感性增强。进一步的实验表明,trr14突变体在胁迫条件下具有降低的种子发芽,根长,存活率和叶绿素含量。另外,在盐和干旱处理下,过氧化物酶,过氧化氢酶和多酚氧化酶等氧化酶的活性降低。因此,目前的数据表明一种新的蛋白质TRR14参与了植物的盐和干旱耐受性。

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