Schreiner M, Peters P, Krumbein A
Dept. Quality, Inst. of Vegetable and Ornamental Crops Grossbeeren/Erfurt e.V., Theodor-Echtermeyer-Weg 1, 14979 Grossbeeren, Germany.
J Food Sci. 2007 Oct;72(8):S585-9. doi: 10.1111/j.1750-3841.2007.00506.x.
Glucosinolates of broccoli and cauliflower florets were assessed to determine the effect of modified-atmosphere packaging on postharvest glucosinolate dynamics in mixed florets of Brassica vegetables. Mixed-packaged broccoli and cauliflower florets stored in food trays sealed with 2 different microperforated biaxial-oriented polypropylene films for up to 7 d at 8 degrees C were analyzed. Both applied modified atmospheres (1% O(2)+ 21% CO(2); 8% O(2)+ 14% CO(2)) maintained aliphatic glucosinolates in cauliflower florets, whereas in broccoli florets, the aliphatic glucosinolate concentration decreased slightly in each modified atmosphere. In addition, total indole glucosinolate concentration for both broccoli and cauliflower florets was maintained, and even increased in cauliflower florets at 1% O(2)+ 21% CO(2) due to rising neoglucobrassicin concentration. Thus, to simultaneously maintain glucosinolates and external appearance as well as to prevent off-odor, a modified atmosphere of 1% O(2)+ 21% CO(2) provides a suitable environment for storage of this Brassica floret medley for up to 7 d at 8 degrees C.
对西兰花和花椰菜小花中的硫代葡萄糖苷进行了评估,以确定气调包装对十字花科蔬菜混合小花采后硫代葡萄糖苷动态变化的影响。分析了用两种不同的微孔双向拉伸聚丙烯薄膜密封的食品托盘包装的混合西兰花和花椰菜小花,在8℃下储存长达7天的情况。两种应用的气调环境(1%氧气 + 21%二氧化碳;8%氧气 + 14%二氧化碳)都能保持花椰菜小花中的脂肪族硫代葡萄糖苷,而在西兰花小花中,每种气调环境下脂肪族硫代葡萄糖苷的浓度都略有下降。此外,西兰花和花椰菜小花中的总吲哚硫代葡萄糖苷浓度均保持稳定,由于新葡萄糖芥苷浓度的上升,在1%氧气 + 21%二氧化碳的气调环境下,花椰菜小花中的总吲哚硫代葡萄糖苷浓度甚至有所增加。因此,为了同时保持硫代葡萄糖苷和外观,并防止产生异味,1%氧气 + 21%二氧化碳的气调环境为这种十字花科小花混合物在8℃下储存长达7天提供了适宜的环境。