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首页> 外文期刊>Journal of plant interactions >Drought stress revealed physiological, biochemical and gene-expressional variations in ‘Yoshihime’ peach ( Prunus Persica L) cultivar
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Drought stress revealed physiological, biochemical and gene-expressional variations in ‘Yoshihime’ peach ( Prunus Persica L) cultivar

机译:干旱胁迫显示“yoshihime”桃子(Prunus persica l)栽培品种的生理,生化和基因表达变化

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It is indispensable to comprehend the mechanism that regulates plant responses to drought conditions to intensify the water use efficiency of stone fruits. The physiological, biochemical and molecular responses of drought-treated peach leaves were investigated. Results revealed that drought-treated plants manifested a significant attenuation in water potential as compared to control plants. Furthermore, sorbitol and proline contents were accumulated contrary to glucose, fructose, and sucrose that were dwindled significantly throughout the drought period. Similarly, the activities of antioxidant enzymes and expression pattern of related genes were hoisted to counter the lipid peroxidation in drought-treated plants. Moreover, reduced stomatal conductance has repressed the photosynthesis process and linked genes during drought stress. The expression level of regulatory genes ( dehydration-responsive element-bindings and WRKYs ) exhibited up-regulation in the drought-treated group. Overall, this study asserts that ‘Yoshihime’ peach cultivar possesses unique physiological, biochemical, and molecular responses under different spells of drought stress.
机译:理解调节植物对干旱条件的机制是不可或缺的,以加强石材水果的用水效率。研究了干旱处理过的桃叶的生理学,生化和分子反应。结果表明,与对照植物相比,干旱处理的植物表现出水力潜力的显着衰减。此外,山梨糖醇和脯氨酸含量与葡萄糖,果糖和蔗糖相反,在整个干旱期中显着减少。类似地,将抗氧化酶和相关基因的表达模式的活性升温以对抗干旱处理植物中的脂质过氧化。此外,降低的气孔导度在干旱胁迫下抑制了光合作用过程和连接基因。调节基因(脱水响应元件结合和Wrkys)的表达水平在干旱处理基团中表现出上调。总体而言,这项研究称为“Yoshihime”的桃子品种在不同的干旱胁迫下具有独特的生理生理学,生化和分子反应。

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