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首页> 外文期刊>Journal of Plant Physiology >Responses of citrus leaf photosynthesis, chlorophyll fluorescence,macronutrient and carbohydrate contents to elevated CO2
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Responses of citrus leaf photosynthesis, chlorophyll fluorescence,macronutrient and carbohydrate contents to elevated CO2

机译:柑橘叶片光合作用,叶绿素荧光,宏营养素和碳水化合物含量对CO2升高的响应

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摘要

Ninety days exposure to elevated atmospheric CO2 concentrations at and above 600 ppm resulted in(.)down-regulation, of leaf net photosynthesis rate (A) in completely expanded and old leaves of Citrus madurensis Loureiro (Calamondin). The decrease of A at high CO2 levels could be explained by a lower activity and/or concentration of Calvin cycle enzymes, which was accompanied by a reduced leaf N content. Nevertheless, C. madurensis did not suffer from nutrient deficiency. Instead, N was redistributed in the plant according to the sink capacity for this macronutrient, which changed at elevated CO2 levels. Mutual shading of older leaves, which occurred especially at elevated atmospheric CO2 concentrations due to the accelerated tree growth, and as a consequence, adaptation to a slightly darker environment may also have played a role for the(.)down-regulation, of A. A decrease of the chlorophyll fluorescence parameter Fv/Fm in completely expanded and old leaves of C. madurensis at and above 750 ppm CO2 is interpreted to indicate photoinhibition at high CO2 levels. Especially in young leaves of C. madurensis, but also in older ones, the increase of photosynthetic water use efficiency was an important effect of elevated atmospheric CO2 concentrations.
机译:90天或以上的大气CO2浓度高于600 ppm暴露导致完全膨胀和陈旧的柑橘柑橘叶片(Calamondin)的叶片净光合速率(A)下调。高CO2水平下A的减少可以用卡尔文循环酶的活性和/或浓度较低来解释,这伴随着叶片氮含量的降低。然而,马杜菌没有营养缺乏症。取而代之的是,根据这种大量养分的吸收能力,在植物体内重新分配了氮,氮的吸收能力随二氧化碳含量的升高而变化。较早叶片的相互遮蔽,尤其是由于树木加速生长,在大气中的二氧化碳浓度升高时尤其如此,因此,适应稍暗的环境也可能对A的下调具有一定作用。在高于或等于750 ppm CO2的情况下,马杜鹃的完全膨胀和老叶中叶绿素荧光参数Fv / Fm的降低被认为指示在高CO2水平下的光抑制作用。特别是在马杜鹃的幼叶中,在老叶中,光合水分利用效率的提高是大气中二氧化碳浓度升高的重要影响。

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