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通过混合来自烟曲霉的水解酶来提高还原糖产量,以改善甘蔗渣的水解。

Enhanced reducing sugar production by blending hydrolytic enzymes from Aspergillus fumigatus to improve sugarcane bagasse hydrolysis.

机构信息

Department of Biotechnology, National Institute of Technology Warangal, Hanamkonda, 506004, Telangana, India.

Department of Biotechnology, National Institute of Technology Andhra Pradesh, Tadepalligudem, 534101, India.

出版信息

Environ Sci Pollut Res Int. 2024 Jul;31(35):48085-48102. doi: 10.1007/s11356-024-34246-1. Epub 2024 Jul 17.

Abstract

Biomass pretreatment for the production of second-generation (2G) ethanol and biochemical products is a challenging process. The present study investigated the synergistic efficiency of purified carboxymethyl cellulase (CMCase), β-glucosidase, and xylanase from Aspergillus fumigatus JCM 10253 in the hydrolysis of alkaline-pretreated sugarcane bagasse (SCB). The saccharification of pretreated SCB was optimised using a combination of CMCase and β-glucosidase (C + β; 1:1) and addition of xylanase (C + β + xyl; 1:1:1). Independent and dependent variables influencing enzymatic hydrolysis were investigated using response surface methodology (RSM). Hydrolysis using purified CMCase and β-glucosidase achieved yields of 18.72 mg/mL glucose and 6.98 mg/mL xylose. Incorporation of xylanase in saccharification increased the titres of glucose (22.83 mg/mL) and xylose (9.54 mg/mL). Furthermore, characterisation of SCB biomass by scanning electron microscopy, X-ray diffraction, and Fourier transform infrared spectroscopy respectively confirmed efficient structural disintegration and revealed the degree of crystallinity and spectral characteristics. Therefore, depolymerisation of lignin to produce high-value chemicals is essential for sustainable and competitive biorefinery development.

摘要

生物量预处理是生产第二代(2G)乙醇和生化产品的挑战性过程。本研究探讨了纯化的羧甲基纤维素酶(CMCase)、β-葡萄糖苷酶和木聚糖酶从烟曲霉 JCM 10253 在碱性预处理甘蔗渣(SCB)水解中的协同效率。使用 CMCase 和 β-葡萄糖苷酶(C + β;1:1)的组合以及添加木聚糖酶(C + β + 木聚糖;1:1:1)对预处理 SCB 的糖化进行了优化。使用响应面法(RSM)研究了影响酶水解的独立和依赖变量。使用纯化的 CMCase 和 β-葡萄糖苷酶进行水解,可获得 18.72mg/mL 葡萄糖和 6.98mg/mL 木糖的产率。在糖化过程中添加木聚糖酶可提高葡萄糖(22.83mg/mL)和木糖(9.54mg/mL)的产量。此外,通过扫描电子显微镜、X 射线衍射和傅里叶变换红外光谱分别对 SCB 生物质进行的特性分析证实了其结构的有效解体,并揭示了结晶度和光谱特征的程度。因此,将木质素解聚为生产高价值化学品对于可持续和有竞争力的生物精炼发展至关重要。

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