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首页> 外文期刊>Plant physiology >ASCORBATE FREE RADICAL REDUCTASE MRNA LEVELS ARE INDUCED BY WOUNDING
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ASCORBATE FREE RADICAL REDUCTASE MRNA LEVELS ARE INDUCED BY WOUNDING

机译:伤口诱发抗坏血酸自由基还原酶mRNA水平

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摘要

A cDNA clone encoding ascorbate free radical (AFR) reductase (EC 1.6.5.4) was isolated from tomato (Lycopersicon esculentum Mill.) and its mRNA levels were analyzed. The cDNA encoded a deduced protein of 433 amino acids and possessed amino acid domains characteristic of flavin adenine dinucleotide- and NAD(P)H-binding proteins but did not possess typical eukaryotic targeting sequences, suggesting that it encodes a cytosolic form of AFR reductase. Low-stringency genomic DNA gel blot analysis indicated that a single nuclear gene encoded this enzyme. Total ascorbate contents were greatest in leaves, with decreasing amounts in stems and roots and relatively constant levels in all stages of fruit. AFR reductase activity was inversely correlated with total ascorbate content, whereas the relative abundance of AFR reductase mRNA was directly correlated with enzyme activity in tissues examined. AFR reductase mRNA abundance increased dramatically in response to wounding, a treatment that is known to also induce ascorbate-dependent prolyl hydroxylation required for the accumulation of hydroxyproline-rich glycoproteins. In addition, AFR reductase may contribute to maintaining levels of ascorbic acid for protection against wound-induced free radical-mediated damage. Collectively, the results suggest that AFR reductase activity is regulated at the level of mRNA abundance by low ascorbate contents or by factors that promote ascorbate utilization. [References: 47]
机译:从番茄(Lycopersicon esculentum Mill。)中分离出编码抗坏血酸自由基(AFR)还原酶(EC 1.6.5.4)的cDNA克隆,并分析其mRNA水平。该cDNA编码一个433个氨基酸的推导蛋白,并具有黄素腺嘌呤二核苷酸和NAD(P)H结合蛋白的特征性氨基酸结构域,但不具有典型的真核靶向序列,表明它编码AFR还原酶的胞质形式。低严格性基因组DNA凝胶印迹分析表明,单个核基因编码该酶。叶中的总抗坏血酸含量最高,茎和根中的抗坏血酸含量下降,并且在果实的各个阶段中抗坏血酸含量相对恒定。 AFR还原酶活性与总抗坏血酸含量呈负相关,而AFR还原酶mRNA的相对丰度与被检组织中的酶活性直接相关。响应伤口,AFR还原酶mRNA的丰度急剧增加,已知这种治疗还可以诱导富含羟脯氨酸的糖蛋白积累所需的抗坏血酸依赖性脯氨酰羟化。此外,AFR还原酶可能有助于维持抗坏血酸水平,以防止伤口引起的自由基介导的损伤。总体而言,这些结果表明,低抗坏血酸含量或促进抗坏血酸利用的因素可在mRNA丰度水平上调节AFR还原酶的活性。 [参考:47]

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