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An analysis of elastic and plastic fruit growth of mango in response to various assimilate supplies

机译:芒果对各种同化物供给的弹力和塑性水果生长分析

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Changes in elastic and plastic components of mango (Mangifera indica L. cv 'Cogshall') fruit growth were analyzed with a model of fruit growth over time and in response to various assimilate supplies. The model is based on water relations (water potential and osmotic and turgor pressures) at the fruit level. Variation in elastic fruit growth was modeled as a function of the elastic modulus and variation in turgor pressure. Variation in plastic fruit growth was modeled using the Lockhart (1965) equation. In this model, plastic growth parameters (yield threshold pressure and cell wall extensibility) varied during fruit growth. Outputs of the model were diurnal and seasonal fruit growth, and fruit turgor pressure. These variables were simulated with good accuracy by the model, particularly the observed increase in fruit size with increasing availability of assimilate supply. Shrinkage was sensitive to the surface conductance of fruit peel, the elasticity modulus and the hydraulic conductivity of fruit, whereas fruit growth rate was highly sensitive to parameters linked to changes in wall extensibility and yield threshold pressure, regardless of the assimilate supply. According to the model, plastic growth was generally zero during the day and shrinkage and swelling were linked to the elastic behavior of the fruit. During the night, plastic and elastic growths were positive, resulting in fruit expansion.
机译:芒果(Mangifera indica L. cv'Cogshall')果实的弹性和塑性成分的变化采用模型随时间变化并响应各种同化物供应进行分析。该模型基于水果水平上的水关系(水势以及渗透压和膨胀压力)。将弹性果实生长的变化建模为弹性模量和膨胀压力变化的函数。使用Lockhart(1965)方程对塑料果实的生长变化进行建模。在该模型中,塑料生长参数(屈服阈值压力和细胞壁可扩展性)在水果生长过程中会发生变化。该模型的输出为昼夜和季节性水果生长以及水果膨大压力。通过模型可以很好地模拟这些变量,尤其是观察到的水果大小随着同化物供应量的增加而增加。收缩率对果皮的表面电导率,水果的弹性模量和水力传导率敏感,而水果的生长速率对与壁扩展性和产量阈值压力变化相关的参数高度敏感,而与同化物的供给无关。根据该模型,白天塑料的生长通常为零,而收缩和溶胀与果实的弹性行为有关。夜间,可塑性和弹性增长为正,导致果实膨胀。

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