水生细菌作为鱼类益生菌的体外评价

Mouna Jlidi, A. Akremi, Adel Haj Brahim, Houda Hmani, L. Daoud, M. Ali, N. Souissi, S. Bejar, Mamdouh Ben Ali
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引用次数: 0

摘要

水产养殖的快速发展、集约化以及养殖场鱼类健康问题的出现,促使人们开发出替代抗生素和化疗的方法来控制鱼类疾病。益生菌可能提供一种潜在的替代方法来保护鱼类免受机会性和病理性细菌的侵害,并促进平衡的环境。在这项工作中,我们评估了来自水生和鱼类的21种细菌的体外益生菌特性,以供其在水产养殖中的应用。筛选依据是其对鱼类病原菌的抑菌活性(细菌素)和体外安全性评价。这包括对它们的溶血、蛋白和黏液溶解活性、胆盐解结能力和抗生素敏感性的评价。其中12株对鸡乳球菌、鳗弧菌、哈维弧菌、嗜水气单胞菌和沙门氏菌气单胞菌等病原菌均有较强的抑菌活性,并通过部分16S rDNA基因测序进行了分类鉴定。这12株菌株的无细胞培养上清液用蛋白酶K (10 mg/ml;37ºC, 1小时),并进行热处理(100ºC, 10分钟),结果表明,由于产生和分泌热稳定的抗菌肽(即细菌素),11株菌株对鱼类病原体具有细胞外抗菌活性。试验菌株在安全性和抗生素敏感性方面表现出很大的异质性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of bacteria of aquatic origin as fish probiotic in vitro
: The rapid development of aquaculture, its intensification, and the occurrence of fish health problems on farms push to develop alternative methods to antibiotics and chemotherapy for controlling fish diseases. Probiotics may provide a potential alternative method to protect fish from opportunistic and pathologic bacteria and promote a balanced environment. In this work, we have assessed the in vitro probiotic properties of twenty one bacteria from aquatic and fish origin, for their application in aquaculture. Selection was based on their antimicrobial activity (Bacteriocin) against fish pathogens and their in vitro safety assessment. This includes the evaluation of their haemolytic, proteolytic and mucinolytic activities, bile salt deconjugation ability and antibiotic susceptibility. Twelve of the twenty one bacteria isolated from several showed strong antibacterial activity against several pathogenic species such as Lactococcus garvieae , Vibrio anguillarum , Vibrio harveyi , Aeromonas hydrophila and Aeromonas salmonicida , and were taxonomically identified by partial 16S rDNA gene sequencing. The cell-free culture supernatants from cultures of these twelve strains were treated with proteinase K (10 mg/ml; 37ºC, 1h) and submitted to heat treatment (100ºC, 10 min), which showed that eleven strains exert extracellular antimicrobial activity against fish pathogens due to the production and secretion of thermo-stable antimicrobial peptides (i.e., Bacteriocins). The tested strains showed a great heterogeneity respect to their safety and antibiotic susceptibility.
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