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Improving the estimation of mesophyll conductance to CO2: on the role of electron transport rate correction and respiration

机译:改善对叶肉对CO2的电导率的估计:关于电子传输速率校正和呼吸的作用

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Mesophyll conductance (g(m)) can markedly limit photosynthetic CO2 assimilation and is required to estimate the parameters of the Farquharvon CaemmererBerry (FvCB) model properly. The variable J (electron transport rate) is the most frequently used method for estimating g(m), and the correct determination of J is one of its requirements. Recent evidence has shown that calibrating J can lead to some errors in estimating g(m), but to what extent the parameterization of the FvCB model is affected by calibrations is not well known. In addition to determining the FvCB parameters, variants of the J calibration method were tested to address whether varying CO2 or light levels, possible alternative electron sinks, or contrasting leaf structural properties might play a role in determining differences in , the product of the leaf absorptance () and the photosystem II optical cross-section (). It was shown that differences in were mainly attributed to the use of A/C-i or A/PPFD curves to calibrate J. The different values greatly influenced g(m), leading to a high number of unrealistic values in addition to affecting the estimates of the FvCB model parameters. A new approach was devised to retrieve leaf respiration in the light from combined A/C-i and A/C-c curves and a framework to understand the high variation in observed g(m) values. Overall, a background is provided to decrease the noise in g(m), facilitating data reporting and allowing better retrieval of the information presented in A/C-i and A/C-c curves.
机译:叶肉电导(g(m))可以显着限制光合作用CO2的吸收,并且需要适当地估计Farquharvon CaemmererBerry(FvCB)模型的参数。变量J(电子传输速率)是估算g(m)的最常用方法,正确确定J是其要求之一。最近的证据表明,校准J会导致估计g(m)时出现一些错误,但是FvCB模型的参数设置受校准影响的程度尚不清楚。除了确定FvCB参数外,还测试了J校准方法的变体,以解决变化的CO2或光照水平,可能的替代电子吸收体或对比的叶片结构特性是否可能在确定叶片吸光度差异方面发挥作用。 ()和光系统II的光学横截面()。结果表明,的差异主要归因于使用A / Ci或A / PPFD曲线来校准J。不同的值极大地影响了g(m),除了影响估计值外还导致大量不切实际的值。 FvCB模型参数。设计了一种新方法来从组合的A / C-i和A / C-c曲线的光线中检索叶片的呼吸作用,并了解理解的g(m)值存在较大差异的框架。总体而言,提供了降低g(m)噪声的背景,有助于数据报告并允许更好地检索A / C-i和A / C-c曲线中显示的信息。

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