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Determination of the Optimum Harvest Window for Apples Using the Non-Destructive Biospeckle Method

机译:使用非破坏性生物散斑方法确定苹果的最佳收获窗口

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摘要

Determination of the optimum harvest window plays a key role in the agro-food chain as the quality of fruit depends on the right harvesting time and appropriate storage conditions during the postharvest period. Usually, indices based on destructive measurements are used for this purpose, like the De Jager Index (PFW-1), FARS index and the most popular Streif Index. In this study, we proposed a biospeckle method for the evaluation of the optimum harvest window (OHW) of the “Ligol” and “Szampion” apple cultivars. The experiment involved eight different maturity stages, of which four were followed by long cold storage and shelf life to assist the determination of the optimum harvest window. The biospeckle activity was studied in relation to standard quality attributes (firmness, acidity, starch, soluble solids content, Streif Index) and physiological parameters (respiration and ethylene emission) of both apple cultivars. Changes of biospeckle activity (BA) over time showed moderate relationships with biochemical changes during apple maturation and ripening. The harvest date suggested by the Streif Index and postharvest quality indicators matched with characteristic decrease in BA. The ability of biospeckle method to characterize the biological state of apples was confirmed by significant correlations of BA with firmness, starch index, total soluble solids and Streif Index, as well as good match with changes in carbon dioxide and ethylene emission. However, it should be noted that correlations between variables changing over time are not as meaningful as independent observations. Also, it is a well-known property of the Pearson’s correlation that its value is highly susceptible to outlier data. Due to its non-selective nature the BA reflected only the current biological state of the fruit and could be affected by many other factors. The investigations showed that the optimum harvest window for apples was indicated by the characteristic drop of BA during pre-harvest development. Despite this, at the current state of development the BA method cannot be used as an indicator alone. Due to rather poor results for prediction in OHW the BA measurements should be supported by other destructive methods to compensate its low selectivity.
机译:确定最佳收获窗口在农业食品链中起着关键作用,因为水果的质量取决于收获后时期的正确收获时间和适当的储存条件。通常,基于破坏性测量的索引用于此目的,例如De Jager索引(PFW-1),FARS索引和最受欢迎的Streif索引。在这项研究中,我们提出了一种生物斑点方法来评估“ Ligol”和“ Szampion”苹果品种的最佳收获期(OHW)。该实验涉及八个不同的成熟阶段,其中四个之后是长期冷藏和保质期,以帮助确定最佳的收获期。研究了两个苹果品种的生物斑点活性与标准品质属性(硬度,酸度,淀粉,可溶性固形物含量,斯特列夫指数)和生理参数(呼吸和乙烯释放)的关系。随着时间的流逝,生物斑点活性(BA)的变化与苹果成熟和成熟期间的生化变化呈中等程度的关系。 Streif指数和收获后质量指标建议的收获日期与BA的特征性下降相吻合。生物斑点法表征苹果生物状态的能力已通过BA与硬度,淀粉指数,总可溶性固形物和Streif指数之间的显着相关性以及与二氧化碳和乙烯排放变化的良好匹配得到了证实。但是,应该注意的是,变量之间随时间变化的相关性不如独立观察有意义。另外,皮尔逊相关性的一个众所周知的特性是其值极易受到异常数据的影响。由于其非选择性性质,BA仅反映了水果的当前生物学状态,并可能受到许多其他因素的影响。研究表明,在收获前发育过程中BA的特征性下降表明了苹果的最佳收获窗口。尽管如此,在目前的发展状态下,BA方法不能单独用作指标。由于在OHW中的预测结果相当差,因此应使用其他破坏性方法来支持BA测量,以补偿其低选择性。

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