Subbaiyan Rubavathi, Ganesan Ayyappadasan
Department of Biotechnology, K. S. Rangasamy College of Technology, Tiruchengode, Tamil Nadu, India.
Biotechnol Appl Biochem. 2023 Oct;70(5):1616-1628. doi: 10.1002/bab.2457. Epub 2023 Mar 27.
One of the most commonly occurring bacteria, Bacillus subtilis, can produce a wide variety of secondary metabolites. In this study, the antimicrobial effect of B. subtilis KSRLAB3 against Vibrio alginolyticus was optimized using the Plackett-Burman design (PBD) method, response surface methodology (RSM), and genetic algorithm (GA). Initially, the effects of carbon source, nitrogen source, NaCl concentration, pH, temperature, and incubation time on antimicrobial effects were studied. Among the carbon and nitrogen sources investigated, mannose and peptone elicited maximum antimicrobial effect. Using PBD, the most significant variables that influence the antimicrobial effect were identified, including incubation time, peptone concentration, and temperature. The optimum conditions required for attaining maximum antimicrobial effect was identified using the RSM-GA hybrid method, and the optimum condition includes 49.999 h of incubation time, 4.39 g/L of peptone concentration, and 27.629°C of incubation temperature. The confirmatory experiments performed around the optimum condition showed a zone of inhibition of 35 ± 0.52 mm. Methanolic extract also proved the presence of antibacterial lipopeptide surfactin. Therefore, the RSM-GA hybrid method was successfully used in this study to model the antimicrobial effect of B. subtilis KSRLAB3 against V. alginolyticus. The effective inhibition of V. alginolyticus can be investigated further for the development of antifouling coatings.
最常见的细菌之一枯草芽孢杆菌能够产生多种次生代谢产物。在本研究中,利用Plackett-Burman设计(PBD)方法、响应面方法(RSM)和遗传算法(GA)对枯草芽孢杆菌KSRLAB3对溶藻弧菌的抗菌效果进行了优化。最初,研究了碳源、氮源、NaCl浓度、pH值、温度和培养时间对抗菌效果的影响。在所研究的碳源和氮源中,甘露糖和蛋白胨产生的抗菌效果最大。使用PBD确定了影响抗菌效果的最显著变量,包括培养时间、蛋白胨浓度和温度。使用RSM-GA混合方法确定了达到最大抗菌效果所需的最佳条件,最佳条件包括49.999小时的培养时间、4.39 g/L的蛋白胨浓度和27.629°C的培养温度。在最佳条件附近进行的验证实验显示抑菌圈为35±0.52 mm。甲醇提取物也证明了抗菌脂肽表面活性素的存在。因此,本研究成功地使用RSM-GA混合方法对枯草芽孢杆菌KSRLAB3对溶藻弧菌的抗菌效果进行了建模。对于防污涂层的开发,可以进一步研究溶藻弧菌的有效抑制作用。