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首页> 外文期刊>Plant molecular biology reporter >Identification and Characterization of NADH Kinase-3 from a Stress-Tolerant Wild Mung Bean Species (Vigna luteola (Jacq.) Benth.) with a Possible Role in Waterlogging Tolerance
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Identification and Characterization of NADH Kinase-3 from a Stress-Tolerant Wild Mung Bean Species (Vigna luteola (Jacq.) Benth.) with a Possible Role in Waterlogging Tolerance

机译:来自耐胁迫野生绿豆(Vigna Luteola(Jacq.)Benth的NADH激酶-3的鉴定与表征

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In plants, reactive oxygen species accumulate to a toxic level under various abiotic stresses. Many antioxidant defense systems require NADPH as a principal reducing energy equivalent. However, the source of NADPH and the molecular mechanisms associated with the maintenance of cytoplasmic redox balance are still unknown. The present study describes Vigna NADH kinase (VlNADHK), an enzyme involved in NADPH synthesis and prefers NADH as a diphospho-nicotinamide nucleotide donor. We analyzed the enzymatic activity of a putative cytoplasmic NADH kinase during waterlogging in contrasting mung bean genotypes Vigna luteola (tolerant) and Vigna radiata cv. T44 (susceptible) under pot-culture condition. The tolerant cultivar showed higher enzymatic activity under waterlogging as well as after recovery. Similarly, the transcript level of waterlogging-induced NADHK expression was also studied and found to be upregulated in response to waterlogging in the roots of V. luteola and T44. PCR amplicons of partial and full-length sequences were cloned and sequenced from V. luteola. To the best of our knowledge, this is the first time an ATP-dependent NADH kinase gene has been recognized as a component of waterlogging stress tolerance in legumes. Our study indicated that this cytoplasmic NADH kinase is a primary source of the cytosolic NADPH and might have a role in waterlogging tolerance in legumes.
机译:在植物中,反应性氧物种在各种非生物胁迫下积聚到毒性水平。许多抗氧化防御系统需要NADPH作为主要的减少能量等同物。然而,NADPH的来源和与维持细胞质氧化还原平衡相关的分子机制仍然未知。本研究描述了Vigna Nadh激酶(Vlnadhk),一种参与NADPH合成的酶,并喜欢NADH作为二磷酰胺酰胺核苷酸供体。我们分析了在染色中染色细胞质NADH激酶的酶活性,在含有Mung Bean Genotypes Vigna Luteola(耐受)和Vigna radiata CV的含水过程中。 T44(易感)在培养条件下。耐盐栽培品种在疏水中显示出较高的酶活性以及恢复后。类似地,还研究了耐涝性诱导的NADHK表达的转录物水平,发现响应于V.Luteola和T44的根部的涝渍而上调。克隆了部分和全长序列的PCR扩增子并从V. luteola测序。据我们所知,这是ATP依赖性NADH激酶基因首次被认为是豆类植物耐受耐受性耐受性的组成部分。我们的研究表明,这种细胞质NADH激酶是细胞溶质NADPH的主要来源,并且可能在豆类中的疏水性耐受性中作用。

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