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Alteration in delayed fluorescence characterize the effect of heat stress on plant

机译:延迟荧光的变化表征了热胁迫对植物的影响

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High temperature affects the photosynthetic functions of plants by its effects on the rate of chemical reactions and on structural organization. Delayed fluorescence originated from the reaction center of photosystem Ⅱ (PS Ⅱ) during the photosynthesis process shortly after stopped illumination. With lamina of soybean as a testing model, the effects of high temperature stress on plant photosynthesis capability were studied with various spectral analysis methods. Experimental results show that DF spectrum and Excitation spectrum can probably characterize the changes of soybean photosynthesis capability after different high temperature treatments. Meanwhile, the injury and harm degree of heat stress on soybean leaves were further studied by the variability of its chloroplast absorption spectrum. DF spectroscopy method may provide a new approach for fast detection of the effects of environment stresses on plant photosynthesis capability.
机译:高温通过影响化学反应速率和结构组织而影响植物的光合功能。光照停止后不久,光合作用过程中的延迟荧光起源于光系统Ⅱ(PSⅡ)的反应中心。以大豆叶片为试验模型,采用多种光谱分析方法研究了高温胁迫对植物光合作用能力的影响。实验结果表明,不同的高温处理后,DF光谱和激发光谱都可以表征大豆光合作用能力的变化。同时,通过叶绿体吸收光谱的变异性,进一步研究了大豆叶片热应激的伤害程度。 DF光谱法可能为快速检测环境胁迫对植物光合作用能力的影响提供一种新方法。

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