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Functional-structural plant modeling to support complex trait phenotyping: Case of rice early vigour and drought tolerance using ecomeristem model

机译:支持复杂性状表型的功能结构植物建模:使用生态共生模型的水稻早期活力和耐旱性案例

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Early vigour and drought tolerance are essential for rice (Oryza sativa L.) crop establishment and final yield in rainfed, vegetative drought prone environments. However, recently, a negative linkage between these complex traits was pointed out within the rice genetic diversity, making the seedling performance under drought dependent on complex, dynamic trade-offs among several elemental traits difficult to separate experimentally. This study explored the way Ecomeristem, a FSPM of rice morphogenesis and phenotypic plasticity, can support the analysis of the genetic and environmental control of traits underlying rice genetic diversity in terms of early vigour and drought tolerance. Once validated, the model was calibrated for 176 genotypes within a diversity panel studied in a drought phenotyping, greenhouse experiment. Model parameters controlling early vigour were heritable and thus relevant for genetic studies. Parameters reproduced the negative linkages pointed out experimentally among vigour and drought tolerance traits and clustered genotypes consistently according to experimental results. The need to improve model formalisms regarding C assimilation and gas exchanges is pointed out. Opportunities and limits to support the phenotyping and genetic study of complex traits and the exploration of rice ideotypes for drought prone environments are discussed.
机译:在雨育,植物干旱易生的环境中,早期的活力和耐旱性对于水稻(Oryza sativa L.)作物的建立和最终产量至关重要。然而,最近在水稻遗传多样性中指出了这些复杂性状之间的负相关关系,这使得干旱条件下的幼苗性能依赖于几个基本性状之间复杂,动态的权衡而难以通过实验分离。这项研究探索了Ecomeristem,一种水稻形态发生和表型可塑性的FSPM,可以从早期活力和干旱耐受性方面支持对水稻遗传多样性基础性状的遗传和环境控制进行分析。一旦验证成功,就在干旱表型温室实验中研究的多样性面板内,针对176个基因型对模型进行了校准。控制早期活力的模型参数是可遗传的,因此与遗传研究相关。根据实验结果,参数再现了在活力和耐旱性状以及簇状基因型之间实验指出的负向联系。指出了需要改善有关C同化和气体交换的模型形式主义的需要。讨论了支持性状表型和遗传研究的机会和局限性,以及干旱易发环境下水稻表型的探索。

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