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外源一氧化氮熏蒸促进了长期冷藏后桃果实货架期内挥发性有机化合物的释放。

Exogenous nitric oxide fumigation promoted the emission of volatile organic compounds in peach fruit during shelf life after long-term cold storage.

作者信息

Cai Hongfang, Han Shuai, Yu Mingliang, Ma Ruijuan, Yu Zhifang

机构信息

College of Food Science and Technology, Nanjing Agricultural University, Nanjing, Jiangsu 210095, PR China.

Institute of Pomology, Jiangsu Academy of Agricultural Sciences/Jiangsu Key Laboratory for Horticultural Crop Genetic Improvement, Jiangsu 210014, PR China.

出版信息

Food Res Int. 2020 Jul;133:109135. doi: 10.1016/j.foodres.2020.109135. Epub 2020 Feb 27.

Abstract

Cold temperature is a common method to store peach after harvest. While long-term cold storage leads to the occurrence of chilling injury and loss of volatile organic compounds (VOCs) after transferring peach to shelf life. Nitric oxide (NO) treatment has been proven to alleviate peach chilling injury. However, the effect of NO treatment on peach VOCs during cold storage plus shelf life is still unknown. In this study, 10 μL L NO was used to fumigate peach before 4 °C cold storage. After cold storage for 21 days, peach were transferred to 20 °C for 3 days to simulate shelf life. Results showed that NO treatment promoted the emission of main VOCs including C6 aldehydes, C6 alcohols, straight-chain esters and lactones after cold storage, supported by the changes of fatty acids and genes expression of PpFADs, PpLOXs, PpHPL, PpADH, PpAATs and PpACXs. Besides, NO also alleviated the occurrence of chilling injury and promoted the recovery of respiration rate and ethylene production during shelf life. In conclusion, treatment with NO effectively prevented the loss of VOCs when transferring peach from cold temperature to shelf life in "Xiahui 6" peach and the possible mechanisms were discussed.

摘要

低温是桃采后常用的贮藏方法。然而,长期冷藏会导致桃在转入货架期后发生冷害并损失挥发性有机化合物(VOCs)。一氧化氮(NO)处理已被证明可减轻桃的冷害。然而,NO处理对冷藏加货架期桃VOCs的影响仍不清楚。在本研究中,在4℃冷藏前用10μL/L NO熏蒸桃。冷藏21天后,将桃转移到20℃下3天以模拟货架期。结果表明,NO处理促进了冷藏后包括C6醛、C6醇、直链酯和内酯在内的主要VOCs的释放,脂肪酸变化以及PpFADs、PpLOXs、PpHPL、PpADH、PpAATs和PpACXs的基因表达变化支持了这一点。此外,NO还减轻了冷害的发生,并促进了货架期呼吸速率和乙烯产生的恢复。总之,NO处理有效地防止了“夏晖6号”桃从低温转入货架期时VOCs的损失,并对可能的机制进行了讨论。

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