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Molecular mechanism of dehydrin in response to environmental stress in plant

机译:脱水素响应植物环境胁迫的分子机制

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摘要

Dehydrins, known as the D-11 subgroup of late embryogenesis abundant (LEA) protein, are an immunologically distinct family of proteins, which typically accumulate in desiccation-tolerant seed embryo or in vegetative tissues in response to various environmental stresses such as drought, salinity and freezing. The existence of conservative sequences designated as K, S, and Y segments is a structural feature of dehydrins, and the K segment found in all dehydrins represents a highly conserved 15 amino acid motif (EKKGIMDKIKEKLPG) and forms an amphiphilic α-helix. According to the arrangement of these domains and clustering analysis, dehydrins are subdivided into 5 subtypes: YnSK, Kn, KnS, SKn and YnK. Different types of dehydrins are induced by different environmental stress in plants. Study results showed that dehydrins might play important protective roles under abiotic stress via a number of different mechanisms, including improving or protecting enzyme activities by the cryoprotective activity in responding to freeze/thaw or dehydration; stabilizing vesicles or other endomembrane structures by function as the membrane stabilizer during freeze induced dehydration, and preventing the membrane system from the oxidative damage induced by reactive oxygen radicals as the radical scavenger. Here, the gene expression and molecular mechanisms of dehydrin in response to stress in plants are discussed.
机译:脱水蛋白,被称为晚期胚胎发生丰富(LEA)蛋白的D-11子组,是免疫学上不同的蛋白家族,通常在耐干燥种子种子或植物组织中积累,以应对各种环境胁迫(如干旱,盐碱化)和冻结。命名为K,S和Y区段的保守序列的存在是脱水蛋白的结构特征,并且在所有脱水蛋白中发现的K区段代表高度保守的15个氨基酸基序(EKKGIMDKIKEKLPG)并形成两亲性α-螺旋。根据这些域的排列和聚类分析,脱水蛋白可分为5个亚型:YnSK,Kn,KnS,SKn和YnK。植物中不同的环境胁迫诱导不同类型的脱水素。研究结果表明,脱水醇可能通过多种不同的机制在非生物胁迫下发挥重要的保护作用,包括通过冷冻保护活性来改善或保护酶的活性,以应对冷冻/融化或脱水。通过在冷冻诱导的脱水过程中起膜稳定剂的作用来稳定囊泡或其他内膜结构,并防止膜系统受到作为自由基清除剂的反应性氧自由基引起的氧化损伤。在这里,讨论了脱水素在植物中响应胁迫的基因表达和分子机制。

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