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Investigating the influence of geometrical traits on light interception efficiency of apple trees: A modelling study with MAppleT

机译:调查几何特征对苹果树轻拦截效率的影响:Mapplet的建模研究

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MAppleT is a functional-structural plant model that has been built for simulating architectural development of apple trees. It has the capability of representing tree growth within a virtual space where the development of individual organs depends on geometrical traits. The purpose of this research is to investigate the influence of apple trees' architectural variability on their light interception efficiency. The STAR, i.e. the silhouette to total area ratio, of leaves, was chosen to evaluate the level of such efficiency. The strategy is to integrate MAppleT with the light interception model provided by the Fractalysis module of the VPlants software library. Target values of four major traits (internode length, leaf area, branching angle and top shoot diameter), are varied in range previously observed in a segregating population of apple hybrids. A sensitivity analysis based on polynomial and generalized additive models was performed for highlighting the most influential trait on light interception. The contribution of stochastic processes that control tree topology in MAppleT is also investigated in the sensitivity analysis. This study not only provides a time- and resource-saving alternative for data collection, but also sets a methodology for ideotype definition and further genetic improvement of apple trees.
机译:Mapplet是一种功能性结构植物模型,它是为模拟苹果树的建筑开发而建立的。它具有在虚拟空间内代表树生长的能力,其中单个器官的发展取决于几何特征。本研究的目的是调查苹果树'架构变异性对光拦截效率的影响。选择恒星,即叶子的剪影,叶子的总面积比为评估这种效率的水平。该策略是将Mapplet与Vplants软件库分离模块提供的光拦截模型集成。在苹果杂交种群的分离群体中,四个主要特征(节间长度,叶面积,分支角度和顶枝和顶枝)的目标值在苹果杂交种群中的范围内变化。进行了基于多项式和广义添加剂模型的灵敏度分析,以突出最有影响力的拦截性状。在敏感性分析中还研究了控制树拓扑结构的随机过程的贡献。这项研究不仅为数据收集提供了节省时间和资源节约的替代方案,而且还为苹果树的识别型定义和进一步的遗传改进设置了一种方法论。

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