Microbicidal effect of negative air ion against Penicillium citrinum and quality control of Chinese bayberry

被引:1
|
作者
Yang, Guiren [1 ]
Niu, Ben [1 ]
Zong, Zihao [1 ]
Wu, Weijie [1 ]
Fang, Xiangjun [1 ]
Chen, Huizhi [1 ]
Zhang, Yiqin [2 ]
Mu, Honglei [1 ]
Gao, Haiyan [1 ]
机构
[1] Zhejiang Acad Agr Sci, State Key Lab Managing Biot & Chem Threats Qual &, Key Lab Postharvest Fruit Proc, Key Lab Postharvest Vegetable Preservat & Proc,Min, Hangzhou 310021, Peoples R China
[2] China Agr Univ, Coll Food Sci & Nutr Engn, Beijing 100083, Peoples R China
基金
中国国家自然科学基金;
关键词
Negative air ion; Penicillium citrinum; Microbicidal activity; Membrane damage; ROS accumulation; Energy metabolism; MYRICA-RUBRA SIEB; PLASMA-JET; SHELF-LIFE; STORAGE; FRUIT; DECAY;
D O I
10.1016/j.foodcont.2024.110476
中图分类号
TS2 [食品工业];
学科分类号
0832 ;
摘要
Chinese bayberry is susceptible to decay caused by Penicillium citrinum infection, which will cause food safety problems. Negative air ion (NAI) is a novel type of non-thermal microbicidal technology. This study presented NAI treatment ' s inhibitory effect and antimicrobial mechanism on P . citrinum isolated from Chinese bayberry fruit. The results indicated that NAI treatment had the optimal inhibitory effect on P. citrinum . P. citrinum cell membrane appeared to have visible wrinkles and damage after NAI treatment, which was observed by scanning electron microscopy (SEM) and transmission electron microscope (TEM). The contents of malondialdehyde (MDA), relative conductivity, soluble protein, soluble carbohydrate, nucleic acid leakage, and lactate dehydrogenase (LDH) in the culture medium increased obviously, which indicated that the membrane permeability of P. citrinum increased. With the laser confocal assay, NAI increased reactive oxygen species (ROS) accumulation and caused oxidative damage to membrane lipids. The membrane lipidomics of P. citrinum hyphae was determined by LC-MS. The results revealed that NAI treatment can hydrolyze the glycerophospholipid into phosphatidic acid (PA) and lysophosphatidylinositol (LPI). Besides, the results of energy metabolism illustrated that NAI treatment reduced the mitochondrial membrane potential (MMP) and energy charge of P. citrinum hyphae. Overall, the microbicidal effect of NAI consisted of two pathways: 1) NAI induced the accumulation of ROS and damaged the membrane structures; 2) NAI reduced mitochondrial membrane potential and caused energy metabolism disorders. In addition, the storage experiment proved that NAI could maintain the quality of Chinese bayberry by inhibiting microbial growth and delaying fruit decay. Hence, NAI hold promises as a potential lowtemperature sterilization method for fruit and vegetable storage.
引用
收藏
页数:12
相关论文
共 50 条
  • [1] Inhibitory Effect of Cold Plasma on the Postharvest Pathogen Penicillium citrinum of Chinese Bayberry
    Zhang H.
    Chen Y.
    Sun C.
    Cao J.
    Sun C.
    Journal of Chinese Institute of Food Science and Technology, 2022, 22 (07) : 183 - 192
  • [2] Methyl jasmonate induces resistance against Penicillium citrinum in Chinese bayberry by priming of defense responses
    Wang, Kaituo
    Jin, Peng
    Han, Lin
    Shang, Haitao
    Tang, Shuangshuang
    Rui, Huaijin
    Duan, Yangfeng
    Kong, Fanyuan
    Kai, Xu
    Zheng, Yonghua
    POSTHARVEST BIOLOGY AND TECHNOLOGY, 2014, 98 : 90 - 97
  • [3] Effect of hot air treatment on quality and ripening of Chinese bayberry fruit
    Luo, Zisheng
    Xu, Tingqiao
    Xie, Jing
    Zhang, Li
    Xi, Yufang
    JOURNAL OF THE SCIENCE OF FOOD AND AGRICULTURE, 2009, 89 (03) : 443 - 448
  • [4] A rapid knockdown effect of Penicillium citrinum for control of the mosquito Culex quinquefasciatus in Thailand
    Maketon, Monchan
    Amnuaykanjanasin, Alongkorn
    Kaysorngup, Achirayar
    WORLD JOURNAL OF MICROBIOLOGY & BIOTECHNOLOGY, 2014, 30 (02): : 727 - 736
  • [5] A rapid knockdown effect of Penicillium citrinum for control of the mosquito Culex quinquefasciatus in Thailand
    Monchan Maketon
    Alongkorn Amnuaykanjanasin
    Achirayar Kaysorngup
    World Journal of Microbiology and Biotechnology, 2014, 30 : 727 - 736
  • [6] Expression of citrinin biosynthesis gene in Liupao tea and effect of Penicillium citrinum on tea quality
    Qin, Jiazhen
    Teng, Jianwen
    Li, Zhongyu
    Xia, Ning
    Wei, Baoyao
    Huang, Li
    FUNGAL GENETICS AND BIOLOGY, 2022, 163
  • [7] Effect of light intensity on negative air ion under phytotron control
    Guang-Yao Shi
    Cong-Hui Wang
    Lu-Lu Cai
    Xi-Lu Ni
    Ling-Tong Du
    Jin-Song Zhang
    Hai-Qing Yang
    Environmental Science and Pollution Research, 2023, 30 : 99666 - 99674
  • [8] Effect of light intensity on negative air ion under phytotron control
    Shi, Guang-Yao
    Wang, Cong-Hui
    Cai, Lu-Lu
    Ni, Xi-Lu
    Du, Ling-Tong
    Zhang, Jin-Song
    Yang, Hai-Qing
    ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH, 2023, 30 (44) : 99666 - 99674
  • [9] Effect of Chinese bayberry residue on quality of Chinese quinoa ( Chenopodium quinoa Willd.) Rice wine
    Ma, Jian
    Huang, Wuyang
    Ma, Yanhong
    Li, Jian
    Feng, Naihong
    Wen, Bo
    Jia, Feihong
    Wang, Yu
    Gao, Zhiqiang
    FOOD CHEMISTRY-X, 2024, 23
  • [10] Effect of Cinnamon Essential Oil-Loaded Nanostructured Lipid Carriers (NLC) Against Penicillium Citrinum and Penicillium Expansum Involved in Tangerine Decay
    Radi, Mohsen
    Ahmadi, Hanieh
    Amiri, Sedigheh
    FOOD AND BIOPROCESS TECHNOLOGY, 2022, 15 (02) : 306 - 318