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荔枝通过能量和糖代谢对采后能量缺乏的响应机制

Mechanisms of Litchi Response to Postharvest Energy Deficiency via Energy and Sugar Metabolisms.

作者信息

Zhao Kunkun, Gao Zhaoyin, Nizamani Mir Muhammad, Hu Meijiao, Li Min, Li Xiaohui, Wang Jiabao

机构信息

Tropical Crops Genetic Resources Institute, Chinese Academy of Tropical Agricultural Sciences, Haikou 571101, China.

Department of Plant Pathology, Agricultural College, Guizhou University, Guiyang 550025, China.

出版信息

Foods. 2024 Jul 20;13(14):2288. doi: 10.3390/foods13142288.

Abstract

In the post-harvest phase, fruit is inexorably subjected to extrinsic stressors that expedite energy expenditure and truncate the storage lifespan. The present study endeavors to elucidate the response strategies of litchi to the alterations of energy state caused by 2,4-Dinitrophenol (DNP) treatment through energy metabolism and sugar metabolism. It was observed that the DNP treatment reduced the energy state of the fruit, exacerbated membrane damage and triggered rapid browning in the pericarp after 24 h of storage. Furthermore, the expression of genes germane to energy metabolism (, , , , and, ) reached their peak within the initial 24 h of storage, accompanied by an elevation in the respiratory rate, which effectively suppressed the rise in browning index of litchi pericarp. The study also posits that, to cope with the decrease of energy levels and membrane damage, litchi may augment the concentrations of fructose, glucose, inositol, galactose, and sorbose, thus safeguarding the canonical metabolic functions of the fruit. Collectively, these findings suggest that litchi can modulate energy and sugar metabolism to cope with fruit senescence under conditions of energy deficiency. This study significantly advances the understanding of the physiological responses exhibited by litchi fruit to post-harvest external stressors.

摘要

在采后阶段,果实不可避免地会受到外部应激源的影响,这些应激源会加速能量消耗并缩短储存寿命。本研究旨在通过能量代谢和糖代谢阐明荔枝对2,4-二硝基苯酚(DNP)处理引起的能量状态变化的响应策略。观察到DNP处理降低了果实的能量状态,加剧了膜损伤,并在储存24小时后引发了果皮的快速褐变。此外,与能量代谢相关的基因(、、、和)的表达在储存的最初24小时内达到峰值,同时呼吸速率升高,这有效地抑制了荔枝果皮褐变指数的上升。该研究还认为,为了应对能量水平下降和膜损伤,荔枝可能会增加果糖、葡萄糖、肌醇、半乳糖和山梨糖的浓度,从而保障果实的正常代谢功能。总的来说,这些发现表明荔枝可以调节能量和糖代谢,以应对能量缺乏条件下的果实衰老。本研究显著推进了对荔枝果实采后对外界应激源所表现出的生理反应的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c746/11275267/528767a90362/foods-13-02288-g001.jpg

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