Deciphering the nature and statistical optimization of antimicrobial metabolites of two endophytic bacilli.

IF 3.5 3区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Raghda S Isleem, Ahmed M Eid, Saad El-Din Hassan, Khaled M Aboshanab, Ghadir S El-Housseiny
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Abstract

In this study, Allium sativum, garlic, was selected to isolate endophytic bacteria and to evaluate the antimicrobial, antiviral, antioxidant, and cytotoxic activities of their produced metabolites followed by identification of the biosynthetic gene cluster of the antimicrobial metabolites using Oxford Nanopore Technology (ONT). Two bacterial isolates, C6 and C11, were found to have a broad-spectrum antagonistic effect against four standard microbial strains and were molecularly identified using 16 S ribosomal RNA sequence analysis and deposited in a local culture collection as B. velezensis CCASU-C6, and B. subtilis CCASU-C11, respectively. Optimization for the maximum production of antimicrobial metabolites revealed that a four-day incubation period was optimal, with sucrose and tryptone serving as the best carbon and nitrogen sources for the fermentation media. Response surface methodology model using the central composite design was created resulting in a 1.2-fold and 1.8-fold improvement in antimicrobial metabolite(s) production of C6 and C11 isolates, respectively. The optimal production conditions were found to be a temperature of 33 °C, pH of 7, and an agitation rate of 200 rpm for C6 metabolite, and a temperature of 37 °C, pH of 7, and an agitation rate of 250 rpm for C11 metabolite. Both bacterial isolates displayed antioxidant and antiviral activity and mild cytotoxic action. Genomic sequence and antiSMASH analysis showed that the biosynthetic gene clusters of bacillomycin, mycosubtilin, fengycin, and macrolactin H in B. velezensis CCASU-C6 and bacillibactin and Macrolactin H in B. subtilis CCASU-C11 showed 100% conservation.

本研究选择大蒜(Allium sativum)分离内生细菌,并评估其产生的代谢物的抗菌、抗病毒、抗氧化和细胞毒性活性,然后利用牛津纳米孔技术(ONT)鉴定抗菌代谢物的生物合成基因簇。研究发现,C6 和 C11 这两种细菌分离物对四种标准微生物菌株具有广谱抗菌作用,并利用 16 S 核糖体 RNA 序列分析对其进行了分子鉴定,将其分别命名为 B. velezensis CCASU-C6 和 B. subtilis CCASU-C11,并将其保存在当地的培养物保藏中心。为最大限度地产生抗菌代谢物而进行的优化显示,四天的培养期是最佳的,蔗糖和胰蛋白胨是发酵培养基的最佳碳源和氮源。利用中央复合设计建立的响应面方法模型使 C6 和 C11 分离物的抗菌代谢物产量分别提高了 1.2 倍和 1.8 倍。研究发现,C6 代谢物的最佳生产条件为温度 33 °C、pH 值 7、搅拌速率 200 rpm;C11 代谢物的最佳生产条件为温度 37 °C、pH 值 7、搅拌速率 250 rpm。两种细菌分离物都具有抗氧化和抗病毒活性以及轻微的细胞毒性作用。基因组序列和反SMASH分析表明,B. velezensis CCASU-C6和B. subtilis CCASU-C11中的杆菌霉素、霉菌素、芬吉霉素和大内酯素H的生物合成基因簇显示出100%的保守性。
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来源期刊
AMB Express
AMB Express BIOTECHNOLOGY & APPLIED MICROBIOLOGY-
CiteScore
7.20
自引率
2.70%
发文量
141
审稿时长
13 weeks
期刊介绍: AMB Express is a high quality journal that brings together research in the area of Applied and Industrial Microbiology with a particular interest in ''White Biotechnology'' and ''Red Biotechnology''. The emphasis is on processes employing microorganisms, eukaryotic cell cultures or enzymes for the biosynthesis, transformation and degradation of compounds. This includes fine and bulk chemicals, polymeric compounds and enzymes or other proteins. Downstream processes are also considered. Integrated processes combining biochemical and chemical processes are also published.
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