Vetriselvi P M, Narasimhan Manoj Kumar, Samuel Marcus, Arunraj Rex
Department of Genetic Engineering, School of Bioengineering, College of Engineering and Technology, SRM Institute of Science and Technology, Kattankulathur, Chengalpet, Tamil Nadu India.
Department of Biological Sciences, University of Calgary, Calgary, Canada.
3 Biotech. 2024 Oct;14(10):246. doi: 10.1007/s13205-024-04092-6. Epub 2024 Sep 25.
Whole-cell bacteria overexpressing a combo of enzymes capable of breaking down complex lignocellulosic components of cell wall is a path-breaking innovation that is eco-friendly for agricultural waste processing and sustainable environment. In this study, a whole-cell overexpressing the enzyme alpha-galactosidase is used to biodegrade sugarcane bagasse, presenting a sustainable approach for agricultural waste utilization. Alpha-galactosidase is an enzyme that breaks down alpha-D-galactose residues at the non-reducing ends of oligosaccharides (such as raffinose, stachyose, and verbascose), complex galactomannans, and galactolipids. Submerged and solid-state fermentation-mediated hydrolysis of bagasse waste using recombinant overexpressing α-galactosidase shows a decrease in the level of α-galactosides releasing sucrose and reducing sugars, indicating a continuous breakdown of the cell wall. Scanning electron microscopy indicates substantial disintegration of cell wall fibers under both submerged (12 h) and solid-state (7 days) fermentation, confirming the disruption of bagasse cell wall structural integrity. The 2XM9 media was found competent for both total protein and enzyme activity; the total protein concentration was 2553 µg/ml after 28 h of induction with an enzyme activity of 0.445 gal units/µg of protein after 16 h of induction at 24 °C. The results show that using whole-cell recombinant systems that express different cell wall-degrading enzymes could be a sustainable way to use agricultural waste, which would help with both waste management and protecting the environment.
过表达能够分解细胞壁复杂木质纤维素成分的酶组合的全细胞细菌是一项开创性的创新,对农业废弃物处理和可持续环境具有生态友好性。在本研究中,一种过表达α-半乳糖苷酶的全细胞被用于对甘蔗渣进行生物降解,为农业废弃物利用提供了一种可持续的方法。α-半乳糖苷酶是一种能够在寡糖(如棉子糖、水苏糖和毛蕊花糖)、复杂的半乳甘露聚糖和半乳糖脂的非还原端分解α-D-半乳糖残基的酶。使用过表达α-半乳糖苷酶的重组体通过深层发酵和固态发酵介导的甘蔗渣废弃物水解显示,α-半乳糖苷水平降低,释放出蔗糖和还原糖,表明细胞壁在持续分解。扫描电子显微镜显示,在深层发酵(12小时)和固态发酵(7天)条件下,细胞壁纤维均有大量解体,证实了甘蔗渣细胞壁结构完整性的破坏。发现2XM9培养基对总蛋白和酶活性均适用;在24℃诱导16小时后酶活性为0.445 gal单位/μg蛋白,诱导28小时后总蛋白浓度为2553μg/ml。结果表明,使用表达不同细胞壁降解酶的全细胞重组系统可能是利用农业废弃物的一种可持续方式,这将有助于废弃物管理和环境保护。