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首页> 外文期刊>Journal of the World Aquaculture Society >Assessment of aquatic Aeromonas spp. isolates' susceptibility to cinnamaldehyde, vanillin, and crude Kigelia africana fruit extracts.
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Assessment of aquatic Aeromonas spp. isolates' susceptibility to cinnamaldehyde, vanillin, and crude Kigelia africana fruit extracts.

机译:评估水生气单胞菌属。分离物对肉桂醛,香兰素和粗非洲奇异果提取物的敏感性。

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摘要

Aeromonas spp. are primary and opportunistic fish pathogens that are responsible for severe economic losses in aquaculture, and are exacerbated by their increasing incidence of antimicrobial resistance. Phytochemicals are being explored as alternatives to conventional antimicrobial agents since they have destressing, growth-promoting, immune-stimulating, and antimicrobial properties. The susceptibility of 93 aquatic Aeromonas spp. and six Plesiomonas shigelloides isolates (from cultured catfish, koi carp, tilapia, and seawater) to three phytochemicals, viz.: cinnamaldehyde (10-1250 micro g/mL), vanillin (5-250 micro g/mL), and crude Kigelia africana fruit extracts (4-10 mg/mL ethyl acetate, dichloromethane, methanol, and hexane) were assessed using the disk diffusion assay and compared to ampicillin and tetracycline, using activity indices. No zones of inhibition were obtained with 10 micro g/mL of cinnamaldehyde, or with 5-250 micro g/mL of vanillin. However, varying degrees of inhibition were observed with higher concentrations of cinnamaldehyde, as well as with the K. africana methanol extract. Cinnamaldehyde (>=500 micro g/mL) and the K. africana methanol extract displayed better antimicrobial activity against study isolates in comparison to vanillin and ampicillin. They appear to be promising and sustainable phytochemicals that might be useful as alternatives to the antimicrobial agents currently in use in aquaculture.
机译:气单胞菌是主要的和机会性的鱼病原体,它们在水产养殖中造成严重的经济损失,并因其增加的抗微生物剂耐药性而加剧。由于植物化学物质具有减压,促进生长,免疫刺激和抗微生物的特性,因此正在被研究作为常规抗微生物剂的替代品。 93种水生气单胞菌的易感性。以及六个分离的假单胞菌假单胞菌(从养殖的fish鱼,锦鲤,罗非鱼和海水中)到三种植物化学物质,即:肉桂醛(10-1250微克/毫升),香兰素(5-250微克/毫升)和粗制的吉兰使用圆盘扩散测定法评估非洲水果提取物(4-10 mg / mL乙酸乙酯,二氯甲烷,甲醇和己烷),并使用活性指数与氨苄青霉素和四环素进行比较。用10微克/毫升肉桂醛或5-250微克/毫升香兰素未获得抑制区域。但是,使用较高浓度的肉桂醛以及非洲K. africana甲醇提取物观察到不同程度的抑制作用。与香兰素和氨苄青霉素相比,肉桂醛(> = 500微克/毫升)和非洲肯尼迪酵母甲醇提取物对研究菌株表现出更好的抗菌活性。它们似乎是有前途的,可持续的植物化学物质,可以用作目前水产养殖中使用的抗菌剂的替代品。

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