食品科学 ›› 2025, Vol. 46 ›› Issue (10): 51-58.doi: 10.7506/spkx1002-6630-20240708-081

• 基础研究 • 上一篇    下一篇

山苍子精油对枝孢菌的抑菌活性及其作用机制

彭媛媛,刘振钰,黄琪,谢莎,毕秀芳,黄梅桂,郝刚   

  1. (西南民族大学药学与食品学院,四川 成都 610041)
  • 出版日期:2025-05-25 发布日期:2025-05-07
  • 基金资助:
    西南民族大学创新创业科研项目(Yczd2024028)

Antimicrobial Activity and Mechanism of Action of Litsea cubeba Essential Oil against Cladosporium

PENG Yuanyuan, LIU Zhenyu, HUANG Qi, XIE Sha, BI Xiufang, HUANG Meigui, HAO Gang   

  1. (College of Pharmacy and Food, Southwest Minzu University, Chengdu 610041, China)
  • Online:2025-05-25 Published:2025-05-07

摘要: 通过水提法从山苍子中提取精油,采用气相色谱-质谱法分析精油的主要成分,通过枝孢菌抑菌率及菌丝体抑制率测定、脂质体渗漏实验、细胞内离子与大分子内容物泄漏及ATPase活力测定探究山苍子精油对枝孢菌的抑菌活性及其作用机制。结果表明:山苍子精油主要成分为柠檬醛等萜类化合物和单萜氧化物;山苍子精油对枝孢菌的最小抑菌浓度为0.64%(V/V);山苍子精油能够抑制枝孢菌菌丝体生长、改变其分子结构和功能基团;山苍子精油对枝孢菌的初始作用靶点为细胞膜,其以浓度依赖性方式增加磷脂双分子层渗透性,促使脂质体包裹的荧光素泄漏,但并未使磷脂双分子层崩塌;山苍子精油可引起枝孢菌胞内K+、Ca2+及核酸、蛋白质内容物泄漏,进而抑制枝孢菌生长繁殖,扫描电子显微镜观察也证实,山苍子精油可破坏枝孢菌菌丝体形态,促使其细胞内容物严重流失。

关键词: 枝孢菌;山苍子精油;抑菌活性;抑菌机理

Abstract: In this study, essential oil was extracted from the fruit of Litsea cubeba by hydrodistillation, and its major components were analyzed by gas chromatography-mass spectrometry (GC-MS). The antimicrobial activity of the essential oil against Cladosporium was determined and its mechanism of action was explored by examining the antibacterial rate and mycelium inhibition rate of Cladosporium, the liposome leakage assay, and the determination of leakage of intracellular ions and macromolecular contents and ATPase activity. The results indicated that the major components of L. cubeba essential oil were terpenoids such as citral and monoterpene oxides. Its minimum inhibitory concentration against Cladosporium was 0.64% (V/V). The essential oil was effective in inhibiting the growth of Cladosporium mycelium and altering its molecular structure and functional groups. The initial target for the antimicrobial activity of the essential oil was the cell membrane, where it increased the permeability of the phospholipid bilayer in a concentration-dependent manner, leading to the leakage of fluorescein encapsulated in liposomes without collapsing the bilayer. It also caused the leakage of intracellular K+, Ca2+, and macromolecules, thereby inhibiting the growth and reproduction of Cladosporium. Scanning electron microscope observation further confirmed that L. cubeba essential oil disrupted the morphology of Cladosporium mycelium, resulting in severe loss of intracellular contents.

Key words: Cladosporium; Litsea cubeba essential oil; antimicrobial activity; antimicrobial mechanism

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