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干旱胁迫下樱桃叶片到冠层尺度中叶肉导度的比较:可变 J 和糖的碳同位素组成方法

A Comparison of the Variable J and Carbon-Isotopic Composition of Sugars Methods to Assess Mesophyll Conductance from the Leaf to the Canopy Scale in Drought-Stressed Cherry.

机构信息

National Research Council of Italy-Institute of Sustainable Plant Protection (CNR-IPSP), Via Madonna del Piano 10, 50019 Sesto Fiorentino (FI), Italy.

National Research Council of Italy-Research Institute on Terrestrial Ecosystems (CNR-IRET), Via Moruzzi 1, 56124 Pisa, Italy.

出版信息

Int J Mol Sci. 2020 Feb 12;21(4):1222. doi: 10.3390/ijms21041222.

Abstract

Conductance of CO across the mesophyll () frequently constrains photosynthesis () but cannot be measured directly. We examined of cherry ( L) subjected to severe drought using the variable method and carbon-isotopic composition (C) of sugars from the centre of the leaf, the leaf petiole sap, and sap from the largest branch. Depending upon the location of the plant from which sugars are sampled, may be estimated over scales ranging from a portion of the leaf to a canopy of leaves. Both the variable and C of sugars methods showed a reduction in as soil water availability declined. The C of sugars further from the source of their synthesis within the leaf did not correspond as closely to the diffusive and C-isotopic discrimination conditions reflected in the instantaneous measurement of gas exchange and chlorophyll-fluorescence utilised by the variable approach. Post-photosynthetic fractionation processes and/or the release of sugars from stored carbohydrates (previously fixed under different environmental and C-isotopic discrimination conditions) may reduce the efficacy of the C of sugars from leaf petiole and branch sap in estimating in a short-term study. Consideration should be given to the spatial and temporal scales at which is under observation in any experimental analysis.

摘要

CO 通过质膜的传导()经常限制光合作用(),但不能直接测量。我们使用可变 方法检查了樱桃(L)在严重干旱下的情况,并测量了叶片中心、叶柄汁液和最大枝条汁液的糖的碳同位素组成(C)。取决于采样糖的植物位置,可根据叶片的一部分到叶片冠层的范围来估计。可变 方法和糖的 C 方法都表明,随着土壤水分供应的减少, 减少。在叶片内离合成源越远的 C 的糖并没有像可变 方法中使用的即时气体交换和叶绿素荧光测量所反映的扩散和 C 同位素歧视条件那样紧密对应。光合作用后的分馏过程和/或从储存的碳水化合物(以前在不同的环境和 C 同位素歧视条件下固定)中释放糖可能会降低叶柄和枝条汁液中的糖的 C 在短期研究中估计 的效果。在任何实验分析中,都应该考虑观察 的空间和时间尺度。

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