芳樟醇对牛乳腺炎病原菌无乳链球菌的抑菌活性及代谢组学分析。

T. Liang, G. Huo, Lele Chen, Ling Ding, Jian Wu, Ji Zhang, Rongmin Wang
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引用次数: 1

摘要

无乳链球菌是牛乳腺炎的主要致病菌之一,也是导致人类发病和死亡的重要病原体。芳樟醇是一种很有前途的天然抗菌剂,在医药和食品加工中有着广泛的应用。然而,其对无乳链球菌的抑菌作用尚不明确。本研究首次探讨了芳樟醇对牛乳腺炎无乳杆菌的抑菌活性及其作用机制。芳樟醇对无乳链球菌具有明显的抑菌活性,抑菌带直径为23 mm,最小抑菌浓度为1.875 μL/mL。此外,芳樟醇破坏了S. agalactiae的细胞结构完整性,导致细胞内成分(碱性磷酸酶、核酸和蛋白质)的泄漏。芳樟醇对生物膜也有清除作用。此外,非靶向代谢组学分析显示,芳樟醇应激实质上破坏了S. agalactiae的细胞内代谢。芳樟醇引起无乳葡萄球菌能量代谢紊乱,阻碍核酸合成。此外,氨基酸(如脯氨酸、丙氨酸)的下调和饱和脂肪酸的上调为芳樟醇诱导的细胞壁和细胞膜损伤提供了强有力的证据。总的来说,芳樟醇通过破坏细胞结构和破坏细胞内代谢,对无乳链球菌具有较强的抗菌活性。本研究为芳樟醇在预防无乳链球菌感染中的应用提供了新的见解和理论基础。
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Antibacterial activity and metabolomic analysis of linalool against bovine mastitis pathogen Streptococcus agalactiae.
Streptococcus agalactiae is among the major causative pathogens of bovine mastitis, as well as crucial pathogen leading to human morbidity and mortality. Being a promising natural antibacterial agent, linalool has been broadly applied in medicine and food processing. However, its antibacterial effect against S. agalactiae has barely been elucidated. This study is the first to investigate the antibacterial activity and action mechanism of linalool against S. agalactiae causing bovine mastitis. Linalool exhibited significant antibacterial activity against S. agalactiae, with an inhibition zone diameter of 23 mm and a minimum inhibitory concentration of 1.875 μL/mL. In addition, linalool damaged cell structural integrity of S. agalactiae, leading to the leakage of intracellular components (alkaline phosphatase, nucleic acids and protein). Linalool also exhibited a scavenging effect on biofilm. Moreover, untargeted metabolomics analysis revealed that linalool stress substantially disrupted intracellular metabolism of S. agalactiae. Linalool caused energy metabolism disorder, and obstructed nucleic acid synthesis in S. agalactiae. Furthermore, downregulation of amino acids (e.g., proline, alanine) and upregulation of saturated fatty acids provide strong evidence for linalool induced cell wall and membrane damage. Overall, linalool exhibited strong antibacterial activity against S. agalactiae by destroying the cell structure and disrupting intracellular metabolism. This study provides a new insight and theoretical foundation for linalool application in preventing S. agalactiae infection.
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