采后UV-C处理及不同贮藏条件对大溪地酸橙品质的影响

P. Pristijono, M. Bowyer, C. Scarlett, Q. Vuong, C. Stathopoulos, J. Golding
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摘要

大溪地酸橙(Citrus latifolia)分别暴露于0和7.2 kkm -2 UV-C下。处理后,在20℃、80% RH(对照)、<0.005或0.1 μL空气中保存28 d。L−1乙烯,20℃,100% RH。对其失重、果皮颜色、花萼脱落、乙烯产量、呼吸速率、可溶性固形物含量(SSC)、可滴定酸度(TA)和可接受性指数进行了评价。UV-C光处理对石灰贮藏质量有显著影响。在所有贮藏条件下,UV-C处理均显著影响20°C条件下酸橙的果皮去脂,而处理酸橙的果皮去脂显著低于对照。除了浓度<0.005 μL的果实外,这些效应随着贮藏时间的延长而降低。L-1乙烯在贮藏21天后的色相值仍显著高于对照。UV-C处理影响了所有储存条件下的乙烯产量。这种效应也随着储存时间的延长而减弱。在所有贮藏条件下,UV-C处理均不影响呼吸速率、SSC和TA。在20℃条件下,经过UV-C处理的酸橙可接受性指数高于未经处理的酸橙。贮藏条件对乙烯的产生有显著影响,在空气中贮藏的酸橙比在<0.005 μL和0.1 μL的空气中贮藏的水果产生更多的乙烯。L-1乙烯气氛。储存条件也会显著影响水果的减重,与其他储存条件相比,空气中储存的水果减重更大。结果表明:贮藏前UV-C处理,贮藏后浓度小于0.1 μL;L-1乙烯气氛可改善酸橙采后品质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Effect of Postharvest UV-C Treatment and Associated with Different Storage Conditions on the Quality of Tahitian Limes (Citrus latifolia)
Tahitian limes (Citrus latifolia) were exposed to 0 and 7.2 kJm-2 UV-C. After treatments, it was stored for 28 days in air at 20°C, 80% RH (control) and in air containing <0.005 or 0.1 μL.L−1 ethylene at 20°C and 100% RH. Weight loss, peel colour, calyx abscission, ethylene production, respiration rate, soluble solids content (SSC), titratable acidity (TA) and acceptability index were assessed. The UV-C light treatment  significantly affected the quality of lime during storage. UV-C treatment significantly affected peel degreening at 20°C in all storage conditions, whereas treated limes showed significantly lower in peel degreening than the control. These effects reduced over the storage time, with the exception of fruits stored in <0.005 μL.L-1 ethylene which still produced a significantly higher in Hue value after 21 days storage relative to the control. UV-C treatment affected ethylene production during storage under all storage conditions. This effect also diminished with storage time. UV-C treatment did not affect the respiration rate, SSC or TA for all storage conditions. The UV-C treated limes had higher acceptability index than untreated limes up to 14 days storage at 20°C. Storage conditions significantly affected ethylene production, with limes that stored in air exhibiting higher ethylene production than fruits stored in the <0.005 or 0.1 μL.L-1 ethylene atmosphere. Storage conditions also significantly affected weight loss, with fruits stored in air showing greater weight loss compared to the other storage conditions. The results suggest that a pre-storage UV-C treatment, followed by storage in less than 0.1 μL.L-1 ethylene atmosphere improves the quality of limes postharvest.
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