Department of Biochemistry, Faculty of Life Sciences, Aligarh Muslim University, Aligarh, India.
Department of Biochemistry, Faculty of Life Sciences, Aligarh Muslim University, Aligarh, India.
Int J Biol Macromol. 2024 Apr;263(Pt 2):130415. doi: 10.1016/j.ijbiomac.2024.130415. Epub 2024 Feb 23.
Microbial diversity from indigenous cultures has the potential to accelerate lignocellulose degradation through enzymes and make composting economically feasible. Therefore, this study is designed to boost cellulase output from a bacterial strain obtained from soil using a one-variable-at-a-time approach and response surface methodology. The bacteria recognized as Bacillus tequilensis (ON754229) produced the maximum cellulase at a temperature of 37 °C, pH -7.0, and incubation time of 72 h. A major contribution was anticipated by glucose (17 %) and ammonium sulfate (11 %) with cellulase activity of 0.56 U/mL in the optimized medium. The enzyme possessed activity of CMCase, FPase, and amylase of 0.589 μmol/min, 1.22 μmol/min, and 0.92 μmol/min respectively. SDS-PAGE showed a 65 kDa molecular weight of the enzyme capable of degrading cellulose, as confirmed by zymogram analysis. The enzyme showed relatively moderate thermo-stability towards neutral pH conditions possessing optimum conditions at pH 6.5 and temperature of 50 °C. The Km and Vmax values were 11.44 mM and 0.643 μmol/min respectively. The presence of MgSO, ZnSO, and Triton X- 100 increased the enzymatic reaction however AgNO, EDTA, and HgCl altered the activation process. These results showed cellulase from B. tequilensis SB125 would be suitable for conventional industrial processes that convert biomass into biofuels.
土著文化中的微生物多样性具有通过酶加速木质纤维素降解的潜力,并使堆肥在经济上可行。因此,本研究旨在通过单变量分析和响应面法提高从土壤中获得的细菌菌株的纤维素酶产量。该细菌被鉴定为 Bacillus tequilensis(ON754229),在 37°C、pH-7.0 和 72 h 的孵育时间下产生最大的纤维素酶。在优化的培养基中,葡萄糖(17%)和硫酸铵(11%)预计会有很大的贡献,纤维素酶活性为 0.56 U/mL。该酶具有 CMCase、FPase 和淀粉酶的活性,分别为 0.589 μmol/min、1.22 μmol/min 和 0.92 μmol/min。SDS-PAGE 显示该酶的分子量为 65 kDa,能够降解纤维素,通过酶谱分析得到证实。该酶对中性 pH 条件具有相对适中的热稳定性,在 pH 6.5 和 50°C 的最佳条件下具有最佳条件。Km 和 Vmax 值分别为 11.44 mM 和 0.643 μmol/min。MgSO、ZnSO 和 Triton X-100 的存在增加了酶反应,但 AgNO、EDTA 和 HgCl 改变了激活过程。这些结果表明,B. tequilensis SB125 的纤维素酶将适合于将生物质转化为生物燃料的常规工业过程。