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首页> 外文期刊>Indian Journal of Fisheries >Antibacterial activity of cinnamon (Cinnamomum zeylanicum) essential oil and cinnamaldehyde against fish pathogenic bacteria isolated from cultured olive flounder Paralichthys olivaceus
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Antibacterial activity of cinnamon (Cinnamomum zeylanicum) essential oil and cinnamaldehyde against fish pathogenic bacteria isolated from cultured olive flounder Paralichthys olivaceus

机译:肉桂(Cinnamomum Zeylanicum)精油和肉桂醛的抗菌活性对来自培养的橄榄鼠Paralichthys olivaceus的鱼致病细菌

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摘要

Antibacterial activity of cinnamon (Cinnamomum zeylanicum) essential oil (CEO) and cinnamaldehyde was tested against seven Gram negative and nine Gram positive fish pathogenic bacteria isolated from cultured olive flounder (Paralichthys olivaceus) in Korea. Disk diffusion assay, MIC (minimum inhibitory concentration) and MBC (minimum bactericidal concentration) tests were done. Cinnamon and cinnamaldehyde inhibited the growth of both Gram negative and Gram positive bacteria. Cinnamaldehyde showed lower MIC values than CEO which ranged from 0.001 to 0.015% (V/V). CEO (MBC/MIC 2-4) was bactericidal for all tested strains while cinnamaldehyde was bactericidal for all except 6 strains. For all fish pathogenic bacteria, the inhibition zone diameter (IZD) increased in proportion to the oil concentration and the maximum effect was found at 100% (V/V) concentration of CEO and cinnamaldehyde. The antibiogram pattern indicated that all the bacterial strains excluding three strains of Streptococcus iniae (S186, S530 and S131) showed resistance to one or more antibiotics. Higher percentages of relative inhibition zone diameter (RIZD %) were exhibited at higher concentrations of CEO and cinnamaldehyde. Since antibacterial activities of CEO and cinnamaldehyde were considerably effective against fish pathogenic bacteria, these could be used as alternatives to treat bacterial infections in aquaculture.
机译:肉桂(Cinnamomum Zeylanicum)精油(CEO)和肉桂醛的抗菌活性对韩国培养的橄榄野生(Paralichthys Olivaceus)分离的七克阴性和九克阳性鱼致病菌进行了测试。磁盘扩散测定,MIC(最小抑制浓度)和MBC(最小杀菌浓度)试验。肉桂和肉桂醛抑制革兰氏阴性和革兰氏阳性细菌的生长。 Cinnamaldehyde显示比CEO更低的MIC值,从0.001到0.015%(v / v)。 CEO(MBC / MIC 2-4)是所有测试菌株的杀菌剂,而肉桂醛被杀菌除6株。对于所有鱼类病原细菌,抑制区直径(IZD)与油浓度成比例地增加,最大效果在100%(v / v)浓度为CeO和肉桂醛。抗诊断图案表明,除了三种链球菌中的所有细菌菌株(S186,S530和S131)显示出对一种或多种抗生素的抗性。在较高浓度的CeO和肉桂醛上表现出更高百分比的相对抑制区直径(Rizd%)。由于CeO和肉桂醛的抗菌活性对鱼病原菌的抗菌活性相当有效,因此这些可以用作治疗水产养殖中细菌感染的替代方案。

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