Isolation, optimization and production of antimicrobial agent from a novel producer Bacillus badius strain AAUM

A. Farag, A. Mohammed, M. Afifi, Usama M. Abdel Raouf
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引用次数: 2

Abstract

Eighteen bacterial strains were isolated from Sea water collected from different sites of Red Sea, Egypt. They were screened for antagonistic activity against many bacterial pathogens. The most active antimicrobial producer (R6) which isolated from Safaga middle was identified as Bacillus badius strain AAUM using 16S rRNA phylogenetic analysis. The most control variables were selected from Plackett–Burman (PB) factorial design for the production of antimicrobial agent from Bacillus badius strain AAUM. It achieved 1.56-fold fold increase (against S. aureus) when grown in medium composed of g/l: peptone, 2.5; yeast extract, 5.0; sea water, 25ml; size of inoculum (3ml/50ml), adjusted to pH 9 and incubation period 20 hrs at 45oC. Immobilization using entrapment and adsorption techniques were applied to improve the productivity of cells. B. badius strain AAUM adsorbed on polyurethane foam realized 1.4-fold increase than the free cells. Reused of the adsorbed culture caused an increase of antimicrobial agent production by 1.14-fold than the free cells. The predicted crude antimicrobial spectra suggested that the B. badius strain AAUM can produce important and novel antimicrobial drugs.
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新型病原菌坏芽孢杆菌AAUM的分离、优化及抗菌剂的生产
从埃及红海不同地点采集的海水中分离出18株细菌。筛选了它们对多种致病菌的拮抗活性。通过16S rRNA系统发育分析,从萨法加中部分离得到的最具活性的抑菌菌R6为坏芽孢杆菌AAUM菌株。采用Plackett-Burman (PB)析因设计对病原菌AAUM的抑菌效果进行控制。在由g/l蛋白胨组成的培养基中生长时,达到1.56倍(相对于金黄色葡萄球菌);酵母浸膏,5.0;海水25ml;接种量(3ml/50ml),调整至pH 9, 45℃孵育20小时。利用包埋和吸附技术进行固定化以提高细胞的生产率。吸附在聚氨酯泡沫上的B. badius菌株AAUM比游离细胞增加了1.4倍。吸附培养物的重复利用使抗菌剂产量比游离细胞增加1.14倍。预测的粗抗菌谱表明,该菌株可生产重要的新型抗菌药物。
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