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首页> 外文期刊>Molecular biotechnology >The Xerophyta viscosa aldose reductase (ALDRXV4) confers enhanced drought and salinity tolerance to transgenic tobacco plants by scavenging methylglyoxal and reducing the membrane damage
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The Xerophyta viscosa aldose reductase (ALDRXV4) confers enhanced drought and salinity tolerance to transgenic tobacco plants by scavenging methylglyoxal and reducing the membrane damage

机译:Xerophyta viscosa醛糖还原酶(ALDRXV4)通过清除甲基乙二醛并减少膜损伤,增强了转基因烟草植物的干旱和盐分耐受性

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摘要

We report the efficacy of an aldose reductase (ALDRXV4) enzyme from Xerophyta viscosa Baker in enhancing the prospects of plant's survival under abiotic stress. Transgenic tobacco plants overexpressing ALDRXV4 cDNA showed alleviation of NaCl and mannitol-induced abiotic stress. The transgenic plants survived longer periods of water deficiency and salinity stress and exhibited improved recovery after rehydration as compared to the wild type plants. The increased synthesis of aldose reductase in transgenic plants correlated with reduced methylglyoxal and malondialdehyde accumulation and an elevated level of sorbitol under stress conditions. In addition, the transgenic lines showed better photosynthetic efficiency, less electrolyte damage, greater water retention, higher proline accumulation, and favorable ionic balance under stress conditions. Together, these findings suggest the potential of engineering aldose reductase levels for better performance of crop plants growing under drought and salt stress conditions.
机译:我们报告了Xerophyta viscosa Baker醛糖还原酶(ALDRXV4)酶在增强非生物胁迫下植物存活前景方面的功效。过表达ALDRXV4 cDNA的转基因烟草植物显示出NaCl和甘露醇诱导的非生物胁迫的缓解。与野生型植物相比,转基因植物在缺水和盐碱胁迫下存活更长的时间,并且在补液后表现出改善的恢复。在转基因植物中醛糖还原酶合成的增加与在压力条件下甲基乙二醛和丙二醛积累减少以及山梨醇水平升高有关。另外,转基因品系在胁迫条件下显示出更好的光合作用效率,更少的电解质破坏,更大的保水性,更高的脯氨酸积累和有利的离子平衡。总之,这些发现表明工程醛糖还原酶水平对于在干旱和盐胁迫条件下生长的农作物具有更好性能的潜力。

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