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Overexpression of Zm-HINT1 Confers Salt and Drought Tolerance in Arabidopsis thaliana

机译:ZM-HINT1的过度表达赋予拟南芥的盐和耐旱性

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Histidine triad nucleotide-binding protein 1 (HINT1) is highly conserved in many species and plays important roles in various biological processes. However, little is known about the responses of HINT1 to abiotic stress in plants. Salt and drought stress are major limiting factors for plant growth and development, and their negative effects on crop productivity may threaten the world's food supply. Previously, we identified a maize gene, Zm-HINT1, which encodes a 138-amino-acid protein containing conserved domains including the HIT motif, helical regions, and beta-strands. Here, we demonstrate that overexpression of Zm-HINT1 in Arabidopsis confers salt and drought tolerance to plants. Zm-HINT1 significantly regulated Na+ and K+ accumulation in plants under salt stress. The improve tolerance characteristics of Arabidopsis plants that were overexpressing Zm-HINT1 led to increased survival rates after salt and drought treatments. Compared with control plants, those plants that overexpressed Zm-HINT1 showed increased proline content and superoxide dismutase activity, as well as lower malondialdehyde and hydrogen peroxide accumulation under salt and drought treatments. The expression patterns of stress-responsive genes in Arabidopsis plants that overexpressed Zm-HINT1 significantly differed from those in control lines. Taken together, these results suggest that Zm-HINT1 has potential applications in breeding and genetic engineering strategies that are designed to produce new crop varieties with improved salt and drought tolerance.
机译:组氨酸三核苷酸结合蛋白1(Hint1)在许多物种中高度保守,并在各种生物过程中起重要作用。然而,关于Hint1对植物中非生物胁迫的反应很少。盐和干旱胁迫是植物生长和发展的主要限制因素,它们对作物生产力的负面影响可能会威胁到世界的粮食供应。以前,我们鉴定了玉米基因ZM-HINT1,其编码含有保守结构域的138-氨基酸蛋白,包括受击基序,螺旋区域和β-股。在这里,我们证明拟南芥中ZM-Hint1的过度表达将盐和耐旱对植物赋予。 ZM-HINT1在盐胁迫下显着调节Na +和K +积累。过表达ZM-Hint1的拟南芥植物的改善耐受性特性导致盐和干旱处理后增加存活率。与对照植物相比,过表达ZM-HINT1的那些植物显示出增加脯氨酸含量和超氧化物歧化酶活性,以及​​盐和干旱处理下的羟基醛和过氧化氢积累。拟南芥植物中应激响应基因的表达模式,其过表达ZM-HINT1与控制线中的ZM-HINT1显着不同。总之,这些结果表明,ZM-HINT1在繁殖和基因工程策略中具有潜在的应用,这些策略旨在产生具有改善的盐和耐旱性的新作物品种。

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