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Effects of dual stress (high salt and high temperature) on the photochemical efficiency of wheat leaves (Triticum aestivum)

机译:双重胁迫(高盐和高温)对小麦叶片(Triticum aestivum)光化学效率的影响

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摘要

In this study, we have focused on those components of Photosystem (PS) II which are significantly affected by dual stress (high salt and temperature) on wheat as measured by Plant Efficiency Analyser (PEA). It was observed that some of the chlorophyll a fluorescence parameters were temperature dominated, while some other parameters were salt dominated. We have also observed additive effects for parameters like antenna size heterogeneity. An important observation was that in high temperature alone, the K-step was observed at 40 °C, while in case of dual stress, the K-step was observed at 45 °C, while the Chl a fluorescence transient of 40 °C + 0.5 M NaCl was quite similar to 35 °C transient curve. In the presence of salt, K-step was observed at higher temperature suggesting a protection of OEC by salt. Plants are under dual stress, but effect of temperature stress is less severe in presence of salt stress. Thus, we can say that salt stress caused partial prevention from high temperature stress but it did not cause complete protection of PS II.
机译:在这项研究中,我们着重研究了用植物效率分析仪(PEA)测得的光系统(PS)II受到小麦双重胁迫(高盐和高温)严重影响的那些成分。观察到,一些叶绿素a荧光参数是温度主导的,而另一些参数是盐主导的。我们还观察到了天线尺寸异质性等参数的累加效应。一个重要的观察结果是,仅在高温下,在40°C下观察到K阶跃,而在双重应力的情况下,在45°C下观察到K阶跃,而Chl的荧光瞬变为40°C°+ 0.5 M NaCl与35°C的瞬态曲线非常相似。在盐的存在下,在较高的温度下观察到K-阶跃,表明盐对OEC的保护。植物处于双重胁迫下,但是在盐胁迫下温度胁迫的影响较小。因此,可以说盐胁迫引起了部分防止高温胁迫的作用,但并没有完全保护PS II。

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