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Assessing the Effects of Water Deficit on Photosynthesis Using Parameters Derived from Measurements of Leaf Gas Exchange and of Chlorophyll a Fluorescence

机译:使用从叶片气体交换和叶绿素a荧光测量值得出的参数评估水分亏缺对光合作用的影响

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摘要

Water deficit (WD) is expected to increase in intensity, frequency and duration in many parts of the world as a consequence of global change, with potential negative effects on plant gas exchange and growth. We review here the parameters that can be derived from measurements made on leaves, in the field, and that can be used to assess the effects of WD on the components of plant photosynthetic rate, including stomatal conductance, mesophyll conductance, photosynthetic capacity, light absorbance, and efficiency of absorbed light conversion into photosynthetic electron transport. We also review some of the parameters related to dissipation of excess energy and to rerouting of electron fluxes. Our focus is mainly on the techniques of gas exchange measurements and of measurements of chlorophyll a fluorescence (ChlF), either alone or combined. But we put also emphasis on some of the parameters derived from analysis of the induction phase of maximal ChlF, notably because they could be used to assess damage to photosystem II. Eventually we briefly present the non-destructive methods based on the ChlF excitation ratio method which can be used to evaluate non-destructively leaf contents in anthocyanins and flavonols.
机译:由于全球变化,预计世界许多地方缺水(WD)的强度,频率和持续时间将增加,并对植物气体交换和生长产生潜在的负面影响。我们在这里回顾了可以从田间在叶片上进行的测量得出的参数,这些参数可以用来评估WD对植物光合速率成分的影响,包括气孔导度,叶肉导度,光合能力,光吸收率,以及吸收光转换为光合电子传输的效率。我们还将回顾一些与多余能量的耗散和电子通量的重新路由有关的参数。我们的重点主要是气体交换测量和叶绿素a荧光(ChlF)测量技术,无论是单独使用还是结合使用。但是,我们也强调从最大ChlF的诱导期分析中得出的一些参数,特别是因为它们可用于评估对光系统II的损害。最终,我们简要介绍了基于ChlF激发比方法的非破坏性方法,该方法可用于评估花色苷和黄酮醇中的非破坏性叶片含量。

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