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Partitioning changes in photosynthetic rate into contributions from different variables

机译:将光合速率的变化分为不同变量的贡献

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Changes in net CO2 assimilation rate (A) are often partitioned into contributions from changes in different variables using an approach that is based on an expression from calculus: namely the definition of the exact differential of A, which states that an infinitesimal change in A (dA) is equal to the sum of infinitesimal changes in each of the underlying variables, each multiplied by the partial derivative of A with respect to the variable. Finite changes in A can thus be partitioned by integrating this sum across a finite interval. The most widely used method of estimating that integral is a coarse discrete approximation that uses partial derivatives of the natural logarithm of A rather than A itself. This yields biased and ambiguous estimates of partitioned changes in A. We present an alternative partitioning approach based on direct numerical integration of dA. The new approach does not require any partial derivatives to be computed, and it can be applied under any conditions to estimate the contributions from changes in any photosynthetic variable. We demonstrate this approach using field measurements of both seasonal and diurnal changes in assimilation rate, and we provide a spreadsheet implementing the new approach.
机译:净CO2同化率(A)的变化通常使用基于微积分表达式的方法划分为不同变量变化的贡献:即A的精确微分的定义,即A的无穷小变化( dA)等于每个基础变量的无穷小变化之和,每个变量都乘以A相对于变量的偏导数。因此,可以通过在有限间隔内积分该和来划分A中的有限变化。估计积分的最广泛使用的方法是使用A的自然对数的偏导数而不是A本身的粗离散近似。这产生了对A中分区变化的偏倚和模糊估计。我们提出了一种基于dA的直接数值积分的替代分区方法。新方法不需要计算任何偏导数,并且可以在任何条件下应用以估计任何光合作用变量变化的贡献。我们通过对同化率的季节性和昼夜变化进行现场测量来证明这种方法,并提供了一个电子表格来实现新方法。

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