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EcoMeristem, a model of morphogenesis and competition among sinks in rice. 1. Concept, validation and sensitivity analysis

机译:EcoMeristem,一种形态发生和稻穗间竞争的模型。 1.概念,验证和敏感性分析

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Because of rapid advances in functional genomics there is an increasing demand for models simulating complex traits, such as the physiological and environmental controls of plant morphology. This paper describes, validates and explores the behaviour of the structural-functional model EcoMeristem, developed for cereals in the context of the Generation Challenge Program (GCP; CGIAR). EcoMeristem constructs the plant on the basis of an organogenetic body plan, driven by intrinsic (genetic) behavioural norms of meristems. These norms consist of phenological-topological rules for organ initiation and pre-dimensioning (sink creation) and rules enabling feedbacks of the plant's resource status on the organogenetic processes. Plant resource status is expressed by a state variable called Internal Competition Index (Ic) calculated daily as the ratio of assimilate source (supply) over the sum of active sinks (demand). Ic constitutes an internal signal analogous to sugar signalling. Ic affects potential phytomer size, tiller initiation, leaf senescence, and carbohydrate storage and mobilisation. The model was calibrated and tested on IR64 rice grown in controlled environments, and validated with field observations for the same cultivar (Philippines). Observeddistributions and dynamics of soluble sugars and starch in plant organs supported the model concepts of internal competition and the role of reserves as a buffer for Ic fluctuations. Model sensitivity analyses suggested that plant growth and developmentdepend not only on assimilate supply, but also on organogenesis-based demand. If true, this conclusion has important consequences for crop improvement strategies.
机译:由于功能基因组学的快速发展,对模拟复杂性状(例如植物形态的生理和环境控制)的模型的需求日益增长。本文描述,验证和探索了在世代挑战计划(GCP; CGIAR)的背景下为谷物开发的结构功能模型EcoMeristem的行为。 EcoMeristem在固有分生(遗传)行为规范的驱动下,根据有机遗传体计划构建植物。这些规范包括用于器官萌发和预先确定维度(水槽创建)的物候拓扑规则,以及能够对植物的有机状态过程的资源状态进行反馈的规则。植物资源状态由称为内部竞争指数(Ic)的状态变量表示,该变量每天计算为同化源(供应)与有效汇总量(需求)之比。 Ic构成类似于糖信号转导的内部信号。集成电路影响潜在的phytomer大小,分till启动,叶片衰老,以及碳水化合物的存储和动员。该模型在受控环境下种植的IR64水稻上进行了校准和测试,并通过对同一品种(菲律宾)的实地观察进行了验证。观察到的可溶性糖和淀粉在植物器官中的分布和动态支持了内部竞争的模型概念以及储备作为Ic波动缓冲剂的作用。模型敏感性分析表明,植物的生长和发育不仅取决于同化物供应,还取决于基于器官发生的需求。如果为真,则该结论对作物改良策略具有重要意义。

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