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控制气氛作为冷链支持,延长白菜的采后寿命。

Controlled atmosphere as cold chain support for extending postharvest life in cabbage.

机构信息

Plant Science Laboratory, Cranfield University, Bedfordshire, MK43 0AL, UK.

Plant Science Laboratory, Cranfield University, Bedfordshire, MK43 0AL, UK.

出版信息

Plant Physiol Biochem. 2024 Nov;216:109094. doi: 10.1016/j.plaphy.2024.109094. Epub 2024 Sep 3.

Abstract

Postharvest management of cabbage relies on high-intensity cooling to control postharvest physiology, minimising quality loss despite incurring significant energy and environmental costs. As an alternative, we hypothesised that controlled atmosphere (CA) could allow increased storage temperature by supporting physiological regulation, while maintaining quality and reducing energy demand. This study examined the effect CA (1.5 kPa CO and 6 kPa O) at 5 or 10 °C on cabbage quality, with the aim of proposing a more sustainable and resilient supply chain. CA treatment was effective at reducing head respiration at higher temperature, with CA/10 °C treatment achieving lower respiration rates than Control/5 °C. Improved head colour retention and maintenance of stump quality were observed in cabbage under CA conditions. CA effects were seen also at a regulatory level; CA promoted an average of 25.4% reduction in abscisic acid accumulation potentially as part of a wider hypoxia stress response and was successful in decreasing expression of the senescence-coordinating transcription factor BoORE15. This finding was linked with a lower in downstream expression of pheophytinase and subtilisin protease. These results demonstrated that CA treatment fundamentally modified postharvest physiology in cabbage, which can be exploited to enable storage at warmer temperatures, contributing to supply chains with lower energy demand and its associated environmental benefits.

摘要

白菜的采后管理依赖于高强度的冷却来控制采后生理,尽管会产生巨大的能源和环境成本,但最大限度地减少了质量损失。作为替代方法,我们假设控制气氛(CA)可以通过支持生理调节来允许增加储存温度,同时保持质量并降低能源需求。本研究探讨了 CA(1.5 kPa CO 和 6 kPa O)在 5 或 10°C 下对白菜质量的影响,旨在提出更可持续和有弹性的供应链。CA 处理在较高温度下有效降低了头部呼吸,CA/10°C 处理的呼吸速率低于对照/5°C。在 CA 条件下,白菜的头部颜色保持和残茬质量得到了改善。在调控水平上也观察到了 CA 的作用;CA 促进了脱落酸积累平均减少 25.4%,可能是缺氧应激反应的一部分,成功降低了衰老协调转录因子 BoORE15 的表达。这一发现与脱植基叶绿素酶和枯草杆菌蛋白酶的下游表达降低有关。这些结果表明,CA 处理从根本上改变了白菜的采后生理,可以利用它在较温暖的温度下储存,为能源需求较低的供应链做出贡献,并带来相关的环境效益。

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