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首页> 外文期刊>Plant Biotechnology Journal >Expression of an Arabidopsis molybdenum cofactor sulphurase gene in soybean enhances drought tolerance and increases yield under field conditions
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Expression of an Arabidopsis molybdenum cofactor sulphurase gene in soybean enhances drought tolerance and increases yield under field conditions

机译:拟南芥醇糖蛋白酶硫磺酸酶基因在大豆中的表达增强了干旱耐受性,并在现场条件下提高产量

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LOS5/ABA3 gene encoding molybdenum cofactor sulphurase is involved in aldehyde oxidase (AO) activity in Arabidopsis, which indirectly regulates ABA biosynthesis and increased stress tolerance. Here, we used a constitutive super promoter to drive LOS5/ABA3 overexpression in soybean (Glycine max L.) to enhance drought tolerance in growth chamber and field conditions. Expression of LOS5/ABA3 was up-regulated by drought stress, which led to increasing AO activity and then a notable increase in ABA accumulation. Transgenic soybean under drought stress had reduced water loss by decreased stomatal aperture size and transpiration rate, which alleviated leaf wilting and maintained higher relative water content. Exposed to drought stress, transgenic soybean exhibited reduced cell membrane damage by reducing electrolyte leakage and production of malondialdehyde and promoting proline accumulation and antioxidant enzyme activities. Also, overexpression of LOS5/ABA3 enhanced expression of stress-up-regulated genes. Furthermore, the seed yield of transgenic plants is at least 21% higher than that of wide-type plants under drought stress conditions in the field. These data suggest that overexpression of LOS5/ABA3 could improve drought tolerance in transgenic soybean via enhanced ABA accumulation, which could activate expression of stress-up-regulated genes and cause a series of physiological and biochemical resistant responses.
机译:编码钼Cofactor硫酶的LOS5 / ABA3基因参与拟南芥中醛氧化酶(AO)活性,间接调节ABA生物合成和增加的应力耐受性。在这里,我们使用组成型超级启动子在大豆(Glycine Max L.)中驱动LOS5 / ABA3过表达,以增强生长室和现场条件下的耐旱性。 LOS5 / ABA3的表达由干旱胁迫上调,导致AO活性增加,然后在ABA积累中显着增加。经干旱胁迫下的转基因大豆通过降低的气孔孔径和蒸腾速率降低了水分损失,减轻了叶片萎缩并保持更高的相对含水量。暴露于干旱胁迫,转基因大豆通过降低电解质渗漏和丙二醛的产生以及促进脯氨酸积累和抗氧化酶活性而表现出降低的细胞膜损伤。此外,LOS5 / ABA3的过表达增强了应激上调基因的表达。此外,转基因植物的种子产量比田间干旱胁迫条件下的宽型植物高至少21%。这些数据表明LOS5 / ABA3的过表达可以通过增强的ABA积累改善转基因大豆的耐旱性,这可以激活应激上调基因的表达,并导致一系列生理和生化抗性反应。

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