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A new way to account for the effect of source-sink spatial relationships in whole plant carbon allocation models

机译:一种在整个植物碳分配模型中考虑源库空间关系影响的新方法

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摘要

To improve source-sink relationship based carbon-allocation models, the basic proportional model was extended to account for a well-known effect of individual source to sink distances: among different sinks of similar characteristics, the more distant from the source, the lower the allocation coefficient. This was achieved through multiplication of the sink strength value by a coefficient that is proportional to a decreasing, simple function of distance, f; the power form was chosen for both simplicity and theoretical reasons. The resulting model was parameterized and evaluated on the empirical allocation matrix of the ECOPHYS model, after grouping together several individual, small sinks of similar nature and close location to remove any phyllotaxy-related bias. Both goodness of fit and predictive value were significantly improved compared with the basic proportional model (f = constant). The f-extended model yielded even better results if segments of different nature or age on the source to sink pathway were assigned different weights in the expression of distance, whereas the default expression of f, with an exponent of -1 and no additive constant, was optimal with no further parameter required. Thus, only 7 parameters (3 for pathway segment weights and 4 for sink strength values) were sufficient to retrieve the original 68 independent experimental allocation coefficients with a reasonable degree of accuracy. Pathway segment weights likely reflect both intrinsic transport pathway properties and situation within the plant architecture; this is discussed in relation to the possibilities of generalization and practical use of the model.
机译:为了改善基于源库关系的碳分配模型,扩展了基本比例模型,以解决单个源到库之间距离的众所周知的影响:在具有相似特征的不同库之间,距源越远,则源越低。分配系数。这是通过将下沉强度值乘以与距离f的递减简单函数成比例的系数来实现的;选择功率形式是出于简单性和理论上的原因。在将几个具有相似性质和接近位置的单个,小汇聚在一起以消除任何与谱系相关的偏见后,对所得模型进行参数化并在ECOPHYS模型的经验分配矩阵上进行评估。与基本比例模型相比,拟合优度和预测值均得到了显着提高(f =常数)。如果在源到汇路径的不同性质或年龄段上的距离表示中分配了不同的权重,则f扩展模型会产生更好的结果,而f的默认表达式具有-1的指数且没有加性常数,是最佳的,不需要其他参数。因此,只有7个参数(3个路径段权重和4个汇点强度值)足以以合理的准确度检索原始的68个独立实验分配系数。通路片段的权重可能反映出内在运输通路的特性和工厂架构中的情况。讨论了有关模型的泛化和实际使用的可能性。

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