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首页> 外文期刊>Journal of Experimental Botany >Integrating mixed-effect models into an architectural plant model to simulate inter- and intra-progeny variability: a case study on oil palm (Elaeis guineensis Jacq.)
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Integrating mixed-effect models into an architectural plant model to simulate inter- and intra-progeny variability: a case study on oil palm (Elaeis guineensis Jacq.)

机译:将混合效应模型集成到建筑植物模型中,以模拟组间和内部内部变异性:油棕(ElaeisGuineensis Jacq)的案例研究。

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Genetic variability impacts plant architecture, and a modelling approach can be used to account for architectural variability in three-dimensional reconstructions of plants.Three-dimensional (3D) reconstruction of plants is time-consuming and involves considerable levels of data acquisition. This is possibly one reason why the integration of genetic variability into 3D architectural models has so far been largely overlooked. In this study, an allometry-based approach was developed to account for architectural variability in 3D architectural models of oil palm (Elaeis guineensis Jacq.) as a case study. Allometric relationships were used to model architectural traits from individual leaflets to the entire crown while accounting for ontogenetic and morphogenetic gradients. Inter- and intra-progeny variabilities were evaluated for each trait and mixed-effect models were used to estimate the mean and variance parameters required for complete 3D virtual plants. Significant differences in leaf geometry (petiole length, density of leaflets, and rachis curvature) and leaflet morphology (gradients of leaflet length and width) were detected between and within progenies and were modelled in order to generate populations of plants that were consistent with the observed populations. The application of mixed-effect models on allometric relationships highlighted an interesting trade-off between model accuracy and ease of defining parameters for the 3D reconstruction of plants while at the same time integrating their observed variability. Future research will be dedicated to sensitivity analyses coupling the structural model presented here with a radiative balance model in order to identify the key architectural traits involved in light interception efficiency.
机译:遗传可变性影响植物架构和建模方法可用于考虑植物三维重建的架构变异。植物的三维(3D)重建是耗时的,并且涉及相当大的数据采集。这可能是遗传变异成3D架构模型的整合到目前为止的一个原因在很大程度上被忽视了。在这项研究中,开发了一种基于各种的方法,以考虑油棕(ElaeisGuineensis Jacq)的3D架构模型中的架构变异。作为案例研究。同时使用各种关系将各个小叶的架构性质模拟到整个冠的同时核算植入和形态发生梯度。对每个性状和混合效应模型评估了组间和内部后代变形性来估计完整3D虚拟植物所需的平均值和方差参数。在后部和在后部和在后叶几何形状(叶柄长度,小叶,叶片密度和轴曲率和宽度的渐变长度和宽度)的显着差异,并进行了建模,以产生与观察到的植物群体的群体人口。混合效应模型在各种关系上的应用突出了模型准确性与植物3D重建的易于定义参数之间的有趣权衡,同时整合其观察到的可变性。未来的研究将专用于敏感性分析,耦合具有辐射平衡模型的结构模型,以识别光拦截效率所涉及的关键架构性状。

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