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Effects of Heat Shock on Photosynthetic Properties Antioxidant Enzyme Activity and Downy Mildew of Cucumber (Cucumis sativus L.)

机译:热激对黄瓜(Cucumis sativus L.)光合特性抗氧化酶活性和霜霉病的影响

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摘要

Heat shock is considered an abiotic stress for plant growth, but the effects of heat shock on physiological responses of cucumber plant leaves with and without downy mildew disease are still not clear. In this study, cucumber seedlings were exposed to heat shock in greenhouses, and the responses of photosynthetic properties, carbohydrate metabolism, antioxidant enzyme activity, osmolytes, and disease severity index of leaves with or without the downy mildew disease were measured. Results showed that heat shock significantly decreased the net photosynthetic rate, actual photochemical efficiency, photochemical quenching coefficient, and starch content. Heat shock caused an increase in the stomatal conductance, transpiration rate, antioxidant enzyme activities, total soluble sugar content, sucrose content, soluble protein content and proline content for both healthy leaves and downy mildew infected leaves. These results demonstrate that heat shock activated the transpiration pathway to protect the photosystem from damage due to excess energy in cucumber leaves. Potential resistance mechanisms of plants exposed to heat stress may involve higher osmotic regulation capacity related to an increase of total accumulations of soluble sugar, proline and soluble protein, as well as higher antioxidant enzymes activity in stressed leaves. Heat shock reduced downy mildew disease severity index by more than 50%, and clearly alleviated downy mildew development in the greenhouses. These findings indicate that cucumber may have a complex physiological change to resist short-term heat shock, and suppress the development of the downy mildew disease.
机译:热休克被认为是植物生长的非生物胁迫,但是热休克对有霜霉病和无霜霉病黄瓜黄瓜叶片生理反应的影响仍不清楚。在这项研究中,黄瓜幼苗在温室中受到热激,并测量了有或没有霜霉病叶片的光合特性,碳水化合物代谢,抗氧化酶活性,渗透压和病害严重程度指数的响应。结果表明,热激显着降低了净光合速率,实际光化学效率,光化学猝灭系数和淀粉含量。热激导致健康叶片和霜霉病感染叶片的气孔导度,蒸腾速率,抗氧化酶活性,总可溶性糖含量,蔗糖含量,可溶性蛋白含量和脯氨酸含量增加。这些结果表明,热激激活了蒸腾路径,以保护光系统免受黄瓜叶中过多能量所造成的损害。暴露于热胁迫下的植物的潜在抗性机制可能涉及较高的渗透调节能力,这与可溶性糖,脯氨酸和可溶性蛋白的总积累增加以及胁迫叶片中较高的抗氧化酶活性有关。热休克使霜霉病疾病严重程度指数降低了50%以上,并明显减轻了温室中霜霉病的发生。这些发现表明黄瓜可能具有复杂的生理变化以抵抗短期热激,并抑制霜霉病的发展。

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