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Physiological and biochemical changes relating to postharvest splitting of sweet cherries affected by calcium application in hydrocooling water

机译:受水冷钙施用影响的甜樱桃采后分裂相关的生理生化变化

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Hydrocooling sweet cherries shortly after harvest (4 h) and then transporting fruit in cold flume water during packing are used to maximize postharvest quality, but can cause fruit splitting. This study demonstrated that cherry fruit (two splitting-susceptible cultivars) absorbed Ca in a quadratic polynomial manner with increasing CaCl2 concentration from 0.2% to 2.0% in cold water (0 degrees C) for 5 min, but did not take up Cl. The enhanced tissue Ca content reduced splitting potential by decreasing fruit soluble pectin release and increasing the splitting threshold. In contrast, depleting Ca from fruit tissue by EDTA or low pH, increased soluble pectin release and splitting potential. In a simulated commercial procedure, hydrocooling cherry fruit in appropriate CaCl2 solutions (i.e., 0.2-0.5%) for 5 min and then passing the fruit in cold flume water for 15 min increased fruit firmness, retarded losses in ascorbic acid, titratable acidity, and skin color, and reduced splitting and decay following 4 weeks of cold storage. (C) 2015 Elsevier Ltd. All rights reserved.
机译:采摘后不久(4小时)进行水冷甜樱桃,然后在包装过程中在冷水槽中运输水果,以最大限度地提高采后质量,但会导致水果分裂。这项研究表明,樱桃果实(两个易分裂的品种)以二次多项式的方式吸收钙,在冷水(0摄氏度)下5分钟内CaCl2的浓度从0.2%增加到2.0%,但没有吸收Cl。增加的组织钙含量通过减少水果可溶性果胶的释放和增加分裂阈值而降低了分裂潜力。相反,通过EDTA或低pH值从水果组织中耗竭Ca会增加可溶性果胶的释放和分裂的可能性。在模拟的商业程序中,将樱桃果实在适当的CaCl2溶液(即0.2-0.5%)中水冷5分钟,然后将其在冷水槽水中通过15分钟,以增加果实的硬度,延缓抗坏血酸的损失,可滴定的酸度和冷藏4周后,皮肤颜色会减少,并且减少分裂和腐烂。 (C)2015 Elsevier Ltd.保留所有权利。

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