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茶树精油抗沙门氏菌活性研究
匡秀华1, 王秋珍2, 樊克锋,等1
1.河南牧业经济学院 动物医药学院;2.河南牧业经济学院 动物医药学院,中国农业大学 动物医学院
摘要:
【目的】研究茶树精油对沙门氏菌的生长、碱性磷酸酶含量、胞外蛋白含量、电导率、生物膜形成、鞭毛动力等的影响,初步探讨其抑菌机理。【方法】分别检测茶树精油和多种抗生素对沙门氏菌最小抑菌浓度(minimum inhibitory concentration,MIC)及茶树精油对沙门氏菌最小杀菌浓度(minimum bactericidal concentration,MBC)。检测不同质量浓度茶树精油对沙门氏菌生长曲线、碱性磷酸酶活性和胞外蛋白质量浓度、电导率、生物膜、鞭毛动力的影响。【结果】茶树精油对沙门氏菌的MIC和MBC均为10 540 μg/mL。2 635,5 270,10 540 μg/mL茶树精油对沙门氏菌的生长均有抑制作用,且随着茶树精油质量浓度的增加,其对沙门氏菌的抑制作用增强,沙门氏菌的碱性磷酸酶活性和胞外蛋白质量浓度增加,电导率增强,生物膜形成受到抑制,鞭毛动力下降。【结论】茶树精油通过影响沙门氏菌的生长、碱性磷酸酶活性和胞外蛋白质量浓度、电导率、生物膜形成、鞭毛动力而发挥抑菌作用。
关键词:  沙门氏菌  茶树精油  抑菌活性  抗菌机理
DOI:
分类号:
基金项目:国家外国专家项目(G20200226019);河南省科技攻关项目(172102110193);河南牧业经济学院教改项目(14021606);河南牧业经济学院博士科研启动项目(53000155,M4030026)
Anti-Salmonella activity of essential oil from tea tree
KUANG Xiuhua,WANG Qiuzhen,FAN Kefeng,et al
Abstract:
【Objective】The influences of tea tree essential oil on Salmonella growth,alkaline phosphatase content,extracellular protein content,conductivity,biofilbrane formation and flagellum dynamics were investigated and its antibacterial mechanism was preliminarily explored.【Method】The minimum inhibitory concentrations (MIC) of tea tree essential oils and a variety of antibiotics against Salmonella and the minimum bactericidal concentrations (MBC) of tea tree essential oils against Salmonella were detected.Then,the effects of tea tree essential oil at different concentrations on Salmonella growth curve,alkaline phossphatase,extracellular protein content,electrical conductivity,biofilm and flagellum dynamics were analyzed.【Result】 Both MIC and MBC of tea tree essential oils were 10 540 μg/mL.The concentrations of 2 635,5 275 and 10 540 μg/mL inhibited the growth of Salmonella.With the increase of concentration,the inhibitory effects,contents of alkaline phosphatase and extracellular protein,and conductivity increased.The formation of Salmonella biofilbrane was also inhibited and the flagella dynamics declined.【Conclusion】The anti Salmonella activity of tea tree essential oil was accomplished by inhibiting growth of Salmonella,contents of alkaline phosphatase and extracellular protein,strength of electrical conductivity,biofilm formation and flagellum dynamics.
Key words:  Salmonella  tea tree essential oil  antibacterial activity  antibacterial mechanism