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虚拟分析:一种分析表型的新方法。

Virtual profiling: a new way to analyse phenotypes.

机构信息

UR1115, Plantes et Systèmes de Culture Horticoles, INRA, F-84000 Avignon, France.

出版信息

Plant J. 2010 Apr;62(2):344-55. doi: 10.1111/j.1365-313X.2010.04152.x. Epub 2010 Jan 25.

Abstract

Simulation models can be used to perform virtual profiling in order to analyse eco-physiological processes controlling plant phenotype. To illustrate this, an eco-physiological model has been used to compare and contrast the status of a virtual fruit system under two situations of carbon supply. The model simulates fruit growth, accumulation of sugar, citric acid and water, transpiration, respiration and ethylene emission, and was successfully tested on peach (Prunus persica L. Batsch) for two leaf-to-fruit ratios (6 and 18 leaves per fruit). The development stage and the variation in leaf number had large effects of the fruit model variables dealing with growth, metabolism and fruit quality. A sensitivity analysis showed that changing a single parameter value, which could correspond to a genotypic change induced by a mutation, either strongly affects most of the processes, or affects a specific process or none. Correlation analysis showed that, in a complex system such as fruit, the intensity of many physiological processes and quality traits co-varies. It also showed unexpected co-variations resulting from emergent properties of the system. This virtual profiling approach opens a new route to explore the impact of mutations, or naturally occurring genetic variations, under differing environmental conditions.

摘要

模拟模型可用于进行虚拟分析,以分析控制植物表型的生态生理过程。为了说明这一点,使用生态生理模型比较和对比了在两种碳供应情况下虚拟果实系统的状态。该模型模拟了果实生长、糖、柠檬酸和水分的积累、蒸腾、呼吸和乙烯排放,并且已经成功地在桃(Prunus persica L. Batsch)上进行了两种叶果比(每果 6 片和 18 片叶)的测试。发育阶段和叶片数量的变化对涉及生长、代谢和果实品质的果实模型变量有很大影响。敏感性分析表明,改变单个参数值(可能对应于突变引起的基因型变化)会强烈影响大多数过程,或者仅影响特定过程或不影响任何过程。相关分析表明,在果实等复杂系统中,许多生理过程和质量特性的强度共同变化。它还显示出由于系统的涌现特性而产生的意外共同变化。这种虚拟分析方法为探索在不同环境条件下突变或自然发生的遗传变异的影响开辟了一条新途径。

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