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Modeling the Growth of Inflorescence

机译:模拟花序的生长

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In many herbaceous plants with inflorescence, the axillary flowering branches remain in a substantial dormant stage between their initiation and the start of expansion. The durations of dormant stage, called growth delay, are linked to the positions of branches in plant architecture. For modeling biomass production and partitioning, it is essential to describe the growth delay to obtain the number of organs in expansion competing for the assimilates. In this paper, position-dependent delay functions are proposed for herbaceous plants with different branching inflorescence. The delay intensities can change according to branch position or plant dynamic source-sink ratio, to simulate the apical dominance phenomena in plants with basipetal flowering sequences. Simulation results are given on the effect of delay parameters on plant architecture. By integrating the delay functions with GreenLab model, the growth process of chrysanthemum under two light levels were simulated. The current work provides a generic module for modeling the growth of individual organs in plants with inflorescence.
机译:在许多有花序的草本植物中,腋生花枝在它们的开始和开始扩张之间一直处于休眠的阶段。休眠阶段的持续时间(称为生长延迟)与工厂结构中分支的位置相关。为了模拟生物质的产生和分配,描述生长延迟以获得竞争中的同化物的器官数量至关重要。本文提出了具有不同分枝花序的草本植物的位置相关延迟函数。延迟强度可以根据分支位置或植物动态源/库比而变化,以模拟具有基花序开花序列的植物的顶端优势现象。仿真结果给出了延迟参数对工厂架构的影响。通过将延迟函数与GreenLab模型集成,模拟了菊花在两个光照水平下的生长过程。当前的工作提供了一个通用模块,用于模拟具有花序的植物中单个器官的生长。

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