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评估传信使植物激活剂作为一种在受控大气环境下的甜樱桃果实采前和采后处理方法。

Evaluation of messenger plant activator as a preharvest and postharvest treatment of sweet cherry fruit under a controlled atmosphere.

机构信息

Department of Horticulture, Faculty of Agriculture, University of Uludag, Gorukle Campus, Bursa, Turkey.

出版信息

Int J Food Sci Nutr. 2009 Aug;60(5):374-86. doi: 10.1080/09637480701712420.

Abstract

The preservation methods as an alternative to chemical control to prevent postharvest quality losses of sweet cherry were examined. The efficacy of preharvest and postharvest messenger (M) treatments on sweet cherry cv. '0900 Ziraat' was tested under a controlled atmosphere in 2004 and 2005. The factors investigated included the separate or combined effect of low oxygen, high carbon dioxide and M on the quality and fungal pathogens of sweet cherries in a normal atmosphere (NA) and in a controlled atmosphere (CA). Cherries were placed at six different atmosphere combinations (0.03%:21% [NA, control], 5%:5%, 10%:5%, 15%:5%, 20%:5% and 25%:5% CO(2):O(2)) at 0°C and 90% relative humidity for up to 8 weeks. Mass values were higher in cherries stored under NA compared with CA. Initial firmness was 1.45 kg and 1.41 kg in fruits without messenger (WM) and in M fruits, respectively; and was measured as 0.30-0.59 kg in WM and 0.57-0.95 kg in M at the end of the trials. The highest acidity and ascorbic acid values were recorded at the end of storage from the fruit stored under CA + M. The CA + M treatment proved the most effective with regard to delaying the maturity and preserving the fruit quality in sweet cherries during storage. Moreover, the CA + M treatments reduced the rotten fruit from 24.06% to 3.80% in cv. '0900 Ziraat'. Better fruit quality was obtained under CA + M compared with NA and CA. The fungi most frequently isolated from sweet cherries were Botrytis cinerea, Penicillium expansum, Monilinia fructicola, Alternaria alternata and Rhizopus stolonifer. It was concluded that sweet cherry cv. '0900 Ziraat' could be stored successfully under CA (20%:5%) + M, and partially under CA (25%:5%) + M, conditions for more than 60 days. Thus, it is recommended that CO(2) levels for sweet cherry storage can be increased above 15% with M.

摘要

为了防止甜樱桃采后品质下降,研究了替代化学控制的保鲜方法。2004 年和 2005 年,在受控气氛下测试了 0900 锡拉亚特甜樱桃品种的采前和采后信使 (M) 处理的效果。研究的因素包括低氧、高二氧化碳和 M 对正常大气 (NA) 和受控大气 (CA) 中甜樱桃品质和真菌病原体的单独或联合影响。樱桃在 0°C 和 90%相对湿度下置于 6 种不同的大气组合(0.03%:21%[NA,对照]、5%:5%、10%:5%、15%:5%、20%:5%和 25%:5%CO(2):O(2))中,最多可储存 8 周。在 NA 下储存的樱桃质量值高于 CA。初始硬度分别为无信使 (WM) 和 M 果实中的 1.45 公斤和 1.41 公斤,在试验结束时分别测量为 0.30-0.59 公斤和 0.57-0.95 公斤。在 CA 下储存的果实中,酸度和抗坏血酸值在储存结束时最高。在甜樱桃贮藏过程中,CA+M 处理对延迟成熟和保持果实品质最为有效。此外,CA+M 处理将腐烂水果的比例从 24.06%降低到 3.80%。与 NA 和 CA 相比,CA+M 处理获得了更好的果实品质。从甜樱桃中分离出的真菌最常见的是葡萄孢、扩展青霉、Monilinia fructicola、Alternaria alternata 和 Rhizopus stolonifer。结论是,0900 锡拉亚特甜樱桃品种可以在 CA(20%:5%)+M 条件下成功贮藏,在部分 CA(25%:5%)+M 条件下贮藏 60 天以上。因此,建议将甜樱桃贮藏的 CO(2)水平提高到 15%以上,并使用 M。

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