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两种哈密瓜在低温贮藏中的生理与转录组分析

Physiological and Transcriptomic Analysis of Two Types of Hami Melons in Low-Temperature Storage.

作者信息

Liao Wanqin, Xiao Linlu, Hao Xiangshuai, Shan Chunhui, Zhou Zhongkai, Ning Ming, Tang Fengxian

机构信息

Engineering Research Center of Storage and Processing of Xinjiang Characteristic Fruits and Vegetables, Ministry of Education, School of Food Science, Shihezi University, Shihezi 832000, China.

Key Laboratory of Processing and Quality and Safety Control of Specialty Agricultural Products (Co-Construction by Ministry and Province), Ministry of Agriculture and Rural Affairs, School of Food Science, Shihezi University, Shihezi 832000, China.

出版信息

Plants (Basel). 2025 Apr 8;14(8):1153. doi: 10.3390/plants14081153.

Abstract

The Hami melon is a characteristic economic crop in Xinjiang. Long-term storage at low temperatures can cause cold damage and significantly impact the storage quality of Hami melon fruits. This study investigated the cold resistance of two Hami melon varieties under low temperatures, screened key genes, and further explored their resistance mechanisms. By comparing and analyzing the relationship between phenotypic morphology, physiological indicators, and storage time, it was found that the symptoms of cold damage in Hami melons are related to both storage time and variety. To analyze the response mechanisms of Hami melons to cold stress at the molecular level, we conducted transcriptome sequencing analysis on the cold-sensitive Hami melon variety Gold Queen and the cold-resistant variety Jia Shi. The analysis shows that cold stress induces the expression of these differentially expressed genes, which participate in the AsA-GSH cycling system, form the NADPH-P450 pathway, and establish the ERF-WRKY cold resistance pathway. This, in turn, increases the content of free proline in the fruits, clears denatured proteins within the fruit, maintains the stability of the redox system, and inhibits certain differentially expressed genes that regulate cell wall metabolism, thereby alleviating fruit softening and improving cold resistance.

摘要

哈密瓜是新疆特色经济作物。低温长期贮藏会导致冷害,显著影响哈密瓜果实的贮藏品质。本研究调查了两个哈密瓜品种在低温下的抗寒性,筛选关键基因,并进一步探究其抗性机制。通过比较分析表型形态、生理指标与贮藏时间之间的关系,发现哈密瓜冷害症状与贮藏时间和品种均有关。为在分子水平分析哈密瓜对冷胁迫的响应机制,我们对冷敏感哈密瓜品种金皇后和抗寒品种伽师进行了转录组测序分析。分析表明,冷胁迫诱导这些差异表达基因表达,这些基因参与AsA-GSH循环系统,形成NADPH-P450途径,建立ERF-WRKY抗寒途径。进而增加果实中游离脯氨酸含量,清除果实内变性蛋白,维持氧化还原系统稳定性,抑制某些调控细胞壁代谢的差异表达基因,从而减轻果实软化,提高抗寒性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b00/12030232/8509f6a3573c/plants-14-01153-g0A1.jpg

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