首页> 外文期刊>Environmental Science and Pollution Research >Multipurpose efficacy of the lyophilized cell-free supernatant of Salmonella bongori isolated from the freshwater fish, Devario aequipinnatus: toxicity against microbial pathogens and mosquito vectors
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Multipurpose efficacy of the lyophilized cell-free supernatant of Salmonella bongori isolated from the freshwater fish, Devario aequipinnatus: toxicity against microbial pathogens and mosquito vectors

机译:<重点型=“斜体”>淡水鱼类的无冻干细胞上清液的多功能疗效从淡水鱼中分离出来,<重点型=“斜体”> Devario Aequipinnatus:对微生物病原体的毒性和毒性 蚊子载体

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Presently, the discovery of effective drugs and pesticides from eco-friendly biological sources is an important challenge in the field of life sciences. The present research was aimed for standardizing an innovative approach in the evaluation of the biological potentiality of the metabolites of fish-associated bacteria. We have identified 17 skin-associated bacteria from the freshwater fish, giant danio, Devario aquipinnatus. They were screened through biofilm forming and extracellular enzyme producing ability. The results of preliminary antibacterial evaluation of the bacterial supernatants underlined the importance of three potential strains (BH8, BH10 and BH11) for further applied research. Hence, such strains were subsequently subjected to a novel extraction procedure to overcome the difficulties found in polar solvents mixed with the supernatant. The lyophilized cell-free supernatant (LCFS) of 3 isolates were individually extracted by using methanol. During the testing of LCFS’s methanolic extract (LCFS-ME) of 3 isolates, only the extract of BH11-strain exhibited potent inhibitory activity against the pathogenic bacteria and fungi. Furthermore, the larvicidal and mosquitocidal assays on the filariasis vector, Culex quinquefasciatus also showed its potent toxicity on both the adults and developmental instars of mosquito . Through molecular and phylogenetic analyses, the BH11 strain was identified as Salmonella bongori (KR350635). The present finding emphasized that the S. bongori could be an important novel source of effective antimicrobials and mosquitocidal agents.
机译:目前,有效的药物和农药从环保的生物源的发现是在生命科学领域的一个重要挑战。本研究的目的在鱼相关的细菌的代谢产物的生物潜力的评估规范的创新方法。我们已经确定了从淡水鱼,巨斑马,Devario aquipinnatus 17皮肤相关的细菌。他们通过生物膜的形成和胞外酶的产生能力进行了筛选。细菌上清液的初步抗菌评价结果强调了进一步的应用研究三个潜在的毒株(BH8,BH10和BH11)的重要性。因此,这样的菌株随后进行一种新颖的提取过程,以克服与上清液混合的极性溶剂中的困难。的3株的冻干无细胞上清液(LCFS)单独用甲醇萃取。期间LCFS的甲醇提取物的3株(LCFS-ME)的检测,仅BH11-菌株的提取物表现出对致病细菌和真菌有效的抑制活性。此外,在丝虫病矢量的杀幼虫和杀蚊测定,致倦库蚊也表现出对成人和蚊子的发育龄其两个有效的毒性。通过分子和系统发育分析,所述BH11菌株鉴定为沙门氏菌bongori(KR350635)。本发现强调,S. bongori可能是有效的抗微生物剂和杀蚊剂的一个重要的新来源。

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