Effect of magnetic field treatment on the softening of strawberries during cold storage

被引:0
|
作者
Zhang, Yiming [1 ]
Hong, Wanqi [1 ]
Jiang, Hanqian [1 ]
Shao, Dingchen [1 ]
Si, Xu [1 ]
Wang, Yanqun [1 ]
Li, Dongnan [1 ]
Li, Bin [1 ]
机构
[1] Shenyang Agr Univ, Coll Food Sci, Dong ling Rd 120, Shenyang 110866, Liaoning, Peoples R China
基金
中国国家自然科学基金;
关键词
Preservation; Quality; Firmness; Cell wall degradation; Gene expression; WALL DEGRADING ENZYMES; CELL-WALL; PECTATE LYASE; EXPRESSION; METABOLISM;
D O I
10.1016/j.postharvbio.2025.113584
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
This study investigated the effects of a 5 mT magnetic field (MF) treatment on strawberry storage using conventional refrigeration (CR) as a control. The effects of MF on the main qualities of strawberries, including firmness, color, weight loss, cell wall components, water distribution, cell wall structure, degradative enzyme activity, and related gene expression levels, were investigated during storage. MF treatment reduced strawberry firmness loss by 55.76 %, weight loss by 57.14 %, and color loss by 41.12 % and effectively alleviated surface spoilage compared with CR at 15 d. Low-field nuclear magnetic resonance analysis showed that the free water content of strawberries in the MF group was 17.93 % higher than that in the CR group. Transmission electron microscopy results indicated that MF better maintained the structural integrity of strawberry cell walls. MF significantly inhibited the expression of cell wall-degrading enzyme-related genes (FaPG, FaPME, FaPL, and FaEG) in strawberries. This inhibition slowed the elevation of polygalacturonase (PG), pectin methyl esterase (PME), pectin lysin (PL), and endoglucanase (EG) activities. MF preserved cell wall matrix (CWM), ionic pectin (ISP), covalent pectin (CSP), hemicellulose (HC), and cellulose (CE) contents in strawberries. Simultaneously, it attenuated the accumulation of water-soluble pectin (WSP) and inhibited the degradation of polysaccharide fractions during storage. In summary, MF treatment is an effective non-thermal preservation technique with potential applications in the food industry.
引用
收藏
页数:12
相关论文
共 50 条
  • [41] Postharvest acibenzolar-S-methyl treatment maintains storage quality and retards softening of apple fruit
    Li, Canying
    Zhang, Junhu
    Ge, Yonghong
    Li, Xiaoyan
    Wei, Meilin
    Hou, Jiabao
    Cheng, Yuan
    Lv, Jingyi
    JOURNAL OF FOOD BIOCHEMISTRY, 2020, 44 (03)
  • [42] Cold plasma treatment delays the texture softening of apricot fruit through PAPL-PL-pectin changes
    Liu, Mengpei
    Li, Ge
    Zhang, Libing
    Wu, Chenyang
    Wei, Xiaopeng
    Zhao, Guangyuan
    Wang, Lu
    Zong, Wei
    FOOD BIOSCIENCE, 2024, 61
  • [43] Effect of Ultra High Pressure on Softening of Fresh Cut Jujube Fruit during Storage
    Zong, W.
    An, G. J.
    I INTERNATIONAL JUJUBE SYMPOSIUM, 2009, 840 : 493 - 497
  • [44] PcPME63 is involved in fruit softening during post-cold storage process of European pear (Pyrus communis L.)
    Cao, Beibei
    Zhu, Rongxiang
    Sun, Manyi
    Song, Bobo
    Wu, Jun
    Li, Jiaming
    POSTHARVEST BIOLOGY AND TECHNOLOGY, 2024, 211
  • [45] Effect of Cold Plasma Treatment on the Quality of Fresh-Cut Hami Melons during Chilling Storage
    Zheng, Heyun
    Miao, Tenglong
    Shi, Jie
    Tian, Mengtian
    Wang, Libin
    Geng, Xinli
    Zhang, Qiuqin
    HORTICULTURAE, 2024, 10 (07)
  • [46] Effect of 1-MCP treatment on nutritive and functional properties of loquat fruit during cold storage
    Cao, S.
    Zheng, Y.
    Yang, Z.
    NEW ZEALAND JOURNAL OF CROP AND HORTICULTURAL SCIENCE, 2011, 39 (01) : 61 - 70
  • [47] The Effect of Ascorbic Acid Treatment on The Quality Changes of Fresh-Cut Leek During Cold Storage
    Gulal, Bekir
    Koyuncu, Mehmet Ali
    JOURNAL OF TEKIRDAG AGRICULTURE FACULTY-TEKIRDAG ZIRAAT FAKULTESI DERGISI, 2023, 20 (01): : 134 - 144
  • [48] Regulation of plum fruit cracking process during cold storage period by treatment of preharvest chitosan
    Hao, Xingwei
    Feng, Ying
    Li, Shanshan
    Jiang, Yongfeng
    Lu, Yuzhuo
    Zhou, Qian
    Hao, Yi
    LWT-FOOD SCIENCE AND TECHNOLOGY, 2024, 203
  • [49] Exogenous γ-aminobutyric acid treatment improves the cold tolerance of zucchini fruit during postharvest storage
    Palma, Francisco
    Carvajal, Fatima
    Jimenez-Munoz, Raquel
    Pulido, Amada
    Jamilena, Manuel
    Garrido, Dolores
    PLANT PHYSIOLOGY AND BIOCHEMISTRY, 2019, 136 : 188 - 195
  • [50] Effect of Short-Term High-CO2 Treatments on the Quality of Highbush and Rabbiteye Blueberries During Cold Storage
    Toledo-Guerrero, Jose David
    Alvarez, Maria Dolores
    Herranz, Beatriz
    Escribano, M. Isabel
    Merodio, Carmen
    Romero, Irene
    Sanchez-Ballesta, M. Teresa
    PLANTS-BASEL, 2024, 13 (23):