李朝, 柯常亮, 古小莉, 李惠青, 黎智广, 黄珂, 李刘冬, 李来好. 麻醉剂丁香酚对鳗弧菌抑菌效果初步研究[J]. 南方水产科学, 2019, 15(2): 58-63. DOI: 10.12131/20180194
引用本文: 李朝, 柯常亮, 古小莉, 李惠青, 黎智广, 黄珂, 李刘冬, 李来好. 麻醉剂丁香酚对鳗弧菌抑菌效果初步研究[J]. 南方水产科学, 2019, 15(2): 58-63. DOI: 10.12131/20180194
LI Chao, KE Changliang, GU Xiaoli, LI Huiqing, LI Zhiguang, HUANG Ke, LI Liudong, LI Laihao. Preliminary study of antibacterial effects of fish anesthetic eugenol on Vibrio anguillarum[J]. South China Fisheries Science, 2019, 15(2): 58-63. DOI: 10.12131/20180194
Citation: LI Chao, KE Changliang, GU Xiaoli, LI Huiqing, LI Zhiguang, HUANG Ke, LI Liudong, LI Laihao. Preliminary study of antibacterial effects of fish anesthetic eugenol on Vibrio anguillarum[J]. South China Fisheries Science, 2019, 15(2): 58-63. DOI: 10.12131/20180194

麻醉剂丁香酚对鳗弧菌抑菌效果初步研究

Preliminary study of antibacterial effects of fish anesthetic eugenol on Vibrio anguillarum

  • 摘要: 水产麻醉剂丁香酚具有良好的抑菌和杀菌作用,不仅对食源性致病菌具有良好的抑制作用,也对水产致病菌具有潜在的抑菌效力。为探讨丁香酚对水产养殖业主要致病菌的抑菌作用,文章初步开展了丁香酚对鳗弧菌(Vibrio anguillarum)的抑菌效果研究。丁香酚质量浓度为6 400 μg·mL–1时,鳗弧菌培养平板中抑菌圈直径为(21.13±0.74) mm,表明鳗弧菌对此浓度的丁香酚表现为极敏。吸光度测定结果显示微孔中丁香酚质量浓度≥400 μg·mL–1时弧菌没有生长,表明丁香酚对鳗弧菌的最低抑菌浓度(MIC)为400 μg·mL–1。取400 μg·mL–1、800 μg·mL–1和1 600 μg·mL–1微孔中溶液涂抹于培养平板继续培养24 h,质量浓度≥800 μg·mL–1时鳗弧菌没有生长,表明最小杀菌浓度(MBC)为800 μg·mL–1。研究结果表明丁香酚对鳗弧菌具有良好的抑菌作用。

     

    Abstract: Fish anesthetic eugenol, which has good antibacterial and bactericidal effects, has presented great efficacy on the food borne pathogens as well as the pathogenic bacteria in aquaculture. In order to investigate the antibacterial effect of eugenol on the typical pathogenic bacteria in aquaculture, we studied the antibacterial effect of eugenol on Vibrio anguillarum. After 24-hour incubation, the diameter of the inhibition zone was (21.13±0.74) mm at 6 400 μg·mL–1 of eugenol, indicating that V. anguillarum was extremely sensitive to eugenol. It is shown that V. anguillarum did not grow while the eugenol concentration was over 400 μg·mL–1. Hence, the minimum inhibitory concentration (MIC) was 400 μg·mL–1 of eugenol against the bacteria. The solution in the cells of 400 μg·mL–1, 800 μg·mL–1 and 1 600 μg·mL–1 were continually incubated for 24 h after being scribbled on the plate surface. When the concentration of eugenol were over 800 μg·mL–1, no V. anguillarum grew in the plates. It is indicated that the minimum bactericidal concentration (MBC) of eugenol against V. anguillarum was 800 μg·mL–1, and eugenol has excellent antibacterial effects on V. anguillarum.

     

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