食品科学 ›› 2026, Vol. 47 ›› Issue (13): 17-30.doi: 10.7506/spkx1002-6630-20251105-025

• 基础研究 • 上一篇    下一篇

低温贮藏调控枸杞果实软化机制及关键基因分析

刘展飞,李治刚,郑国琦,周甜甜,寇莉蓉,杨涓,朱金忠,郝爱华   

  1. (1.宁夏大学食品科学与工程学院,宁夏 银川 750021;2.宁夏大学生命科学学院,宁夏 银川 750021;3.林木资源高效生产全国重点实验室,宁夏 银川 750021;4.宁夏杞鑫种业有限公司,宁夏 中卫 755100)
  • 出版日期:2026-07-15 发布日期:2026-07-17
  • 基金资助:
    国家自然科学基金地区科学基金项目(32260409);宁夏自然科学基金项目(2025AAC020034)

Regulatory Mechanisms of Low-Temperature Storage on Fruit Softening and Key Gene Analysis in Lycium barbarum

LIU Zhanfei, LI Zhigang, ZHENG Guoqi, ZHOU Tiantian, KOU Lirong, YANG Juan, ZHU Jinzhong, HAO Aihua   

  1. (1. College of Food Science and Engineering, Ningxia University, Yinchuan 750021, China; 2. College of Life Sciences, Ningxia University, Yinchuan 750021, China; 3. National Key Laboratory of Efficient Production of Forest Resources, Yinchuan 750021, China; 4. Ningxia Qixin Seed Industry Co. Ltd., Zhongwei 755100, China)
  • Online:2026-07-15 Published:2026-07-17

摘要: 为探究鲜枸杞采后低温贮藏过程中果实软化规律,挖掘相关调控基因,揭示枸杞鲜果贮藏期间的软化机制。以宁夏主栽大果型枸杞品种‘宁杞5号’与‘宁杞7号’为材料,采用4 ℃与13 ℃贮藏处理,测定果实硬度、乙烯释放率、细胞壁组分含量及其代谢相关酶活性,并对果实进行转录组分析。结果表明,4 ℃贮藏枸杞果实硬度及纤维素、半纤维素含量高于13 ℃,乙烯释放率与可溶性果胶含量低于13 ℃;果胶酯酶、多聚半乳糖醛酸酶、纤维素酶和果胶裂解酶活性均受到抑制。4 ℃贮藏条件下枸杞果实生理指标较13 ℃表现出更强的相关性,其中硬度与乙烯释放率、纤维素含量、半纤维素含量、可溶性果胶含量、果胶酯酶活性、果胶裂解酶活性呈显著相关(P<0.05),乙烯释放率与纤维素含量、半纤维素含量、可溶性果胶含量、多聚半乳糖醛酸酶活性呈显著相关(P<0.05)。主成分分析(principal component analysis,PCA)表明,PC1主要以细胞壁组分(纤维素等)含量为代表,PC2主要以细胞壁相关酶(多聚半乳糖醛酸酶等)活性为代表。转录组测序共确定6 770 个差异表达基因,其中上调3 116 个、下调3 654 个,主要富集在乙烯合成与代谢及木质素合成、生物代谢与调控等过程。加权基因共表达网络分析共鉴定出4 个关键候选基因(LbACO3、LbPME2.1、LbACS5、LbWRKY),可能在枸杞果实采后软化过程中发挥关键调控作用。其中,LbACO3与LbACS5基因参与乙烯生物合成与释放调控,LbPME2.1基因调控果胶酯酶活性,而LbWRKY参与调控细胞壁代谢。本研究结果可为揭示宁夏枸杞果实采后软化机制提供理论指导。

关键词: 枸杞;低温贮藏;果实软化;细胞壁降解;乙烯代谢;关键基因;转录组测序

Abstract: To investigate the pattern of softening of fresh wolfberry fruits during postharvest low-temperature storage, identify relevant regulatory genes, and clarify the underlying mechanism of softening, two large-fruited cultivars of Lycium barbarum L., ‘Ningqi 5’ and ‘Ningqi 7’, were used as experimental materials. Fruit firmness, ethylene production rate, cell wall component contents, and activities of cell wall metabolism-related enzymes were determined during storage at 4 or 13 ℃. Transcriptome sequencing was further performed on fruits under different storage conditions. Results showed that fruit firmness, cellulose, and hemicellulose contents were higher, and ethylene release rate and soluble pectin content were lower in fruits stored at 4 ℃ than at 13 ℃. During storage at 4 ℃, the activities of pectinesterase (PME), polygalacturonase (PG), cellulose, and pectolyase (PL) were all inhibited. Stronger correlations between physiological indices were observed at 4 ℃ than at 13 ℃: fruit firmness was significantly correlated with ethylene production rate, cellulose, hemicellulose and soluble pectin contents, PME and PL activities (P < 0.05), while ethylene production rate showed significant correlations with cellulose, hemicellulose and soluble pectin contents, and PG activity (P < 0.05). Principal component analysis (PCA) indicated that the first principal component was dominated by cell wall components (e.g., cellulose), and the second principal component was primarily characterized by cell wall-related enzymes (e.g., PG). Transcriptome sequencing identified a total of 6 770 differentially expressed genes (DEGs), including 3 116 up-regulated genes and 3 654 down-regulated genes. Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) enrichment analyses revealed that these DEGs were mainly enriched in biological processes such as ethylene synthesis and metabolism, lignin synthesis, and biological metabolism and regulation. Weighted gene co-expression network analysis (WGCNA) identified four key candidate genes (LbACO3, LbPME2.1, LbACS5, and LbWRKY), possibly playing a key regulatory role in the postharvest softening of wolfberry fruits. LbACO3 and LbACS5 were involved in the regulation of ethylene biosynthesis and release, LbPME2.1 regulated PME activity, and LbWRKY participated in the regulation of cell wall metabolism. The results of this study provide theoretical insights into the mechanism of postharvest softening in wolfberry fruits.

Key words: Lycium barbarum; low-temperature storage; fruit softening; cell wall degradation; ethylene metabolism; key genes; transcriptome sequencing

中图分类号: