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Using SWAF, a Generic Biophysical Model of Sugar and Water Accumulation to Analyze Fruit Development

机译:使用SWAF,糖和水积累的通用生物物理模型分析果实开发

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The SWAF (Sugar and Water Accumulation in the Fruit) model is based on the biophysical representation of water and sugar transport combined with the growth process stimulated by turgor pressure. Fruit flesh is described as one compartment separated from the atmosphere and parent plant by membranes. The parent plant supplies the fruit with water and sugars which are brought through xylem vessels and phloem sieve tubes. The fruit consumes sugars and water through the respiration and transpiration processes. 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 as a function of turgor pressure using the Lockhart (1965) equation. The hourly inputs of the model are temperature and relative humidity of the ambient atmosphere, water potential in xylem vessels, and sugar concentration in the phloem sap. The model fits fruit growth well for species as contrasted as peach, tomato, mango and grape. The model was used to analyse the variations in the main processes involved in fruit growth in response to carbon and water stresses. The conclusions are that this model is able to simulate the complex fruit behaviour in response to external or internal factors and may be a powerful tool to analyse fruit development.
机译:SWAF(果糖中的糖和水积累)模型基于水和糖传输的生物物理表示与托耳压刺激的生长过程相结合。果肉被描述为一室用膜与大气和亲本植物分离。母公厂用水和糖提供水果,通过木质血管和韧皮筛管带来。果实消耗糖和水通过呼吸和蒸腾过程。弹性果实生长的变化被建模为弹性模量的函数和磨削压力的变化。塑料果实生长的变化是使用锁骨(1965)方程的Turgor压力的函数。该模型的每小时输入是环境大气的温度和相对湿度,木质血管中的水电位,含有韧皮血液中的糖浓度。该模型适合桃子,番茄,芒果和葡萄的种类果实。该模型用于分析果实生长响应碳和水胁迫的主要过程的变化。结论是,该模型能够响应外部或内部因素来模拟复杂的水果行为,可能是分析水果开发的强大工具。

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