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基因型对苹果果实内部气体梯度的影响。

Genotype effects on internal gas gradients in apple fruit.

机构信息

Flanders Centre of Postharvest Technology/BIOSYST-MeBioS, Faculty of Bioscience Engineering, Katholieke Universiteit Leuven, Willem de Croylaan 42, Leuven, Belgium.

出版信息

J Exp Bot. 2010 Jun;61(10):2745-55. doi: 10.1093/jxb/erq108. Epub 2010 May 6.

Abstract

A permeation-diffusion-reaction model was applied to study gas exchange of apple fruit (Kanzi, Jonagold, and Braeburn) as effected by morphology and respiratory metabolism. The gas exchange properties and respiration parameters of the fruit organ tissues were measured. The actual internal tissue geometry of the fruit was reconstructed from digital fruit images and the model was solved over this geometry using the finite element method. The model was validated based on measurements of internal gas concentrations and the gas flux of the fruit to its environment. Both measurements and an in silico study revealed that gradients of metabolic gases exist in apple fruit, depending on diffusion properties and respiration of the different cultivars. Macroscale simulation confirmed that Jonagold has large potential for controlled atmosphere (CA) storage while low diffusion properties of cortex tissue in Braeburn indicated a risk of storage disorder development. Kanzi had less O(2) anoxia at CA storage compared with Braeburn.

摘要

应用渗透-扩散-反应模型研究了形态和呼吸代谢对苹果果实(金冠、乔纳金和布瑞本)气体交换的影响。测量了果实器官组织的气体交换特性和呼吸参数。利用数字果实图像重建了果实的实际内部组织几何形状,并使用有限元法在该几何形状上求解了模型。根据对果实内部气体浓度和气体通量的测量对模型进行了验证。测量结果和计算机模拟都表明,代谢气体的梯度存在于苹果果实中,这取决于不同品种的扩散特性和呼吸作用。宏观模拟证实,乔纳金具有很大的潜力用于气调(CA)贮藏,而布瑞本皮层组织的低扩散特性表明存在贮藏障碍发展的风险。与布瑞本相比,金冠在 CA 贮藏中 O(2)缺氧较少。

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