School of Life Sciences and Biopharmaceuticals, Guangdong Pharmaceutical University, Guangzhou, 511400, China.
Guangdong Key Laboratory of Bioactive Drug Research, Guangzhou, 511400, China.
Int Microbiol. 2021 Aug;24(3):337-349. doi: 10.1007/s10123-021-00170-4. Epub 2021 Mar 8.
Cellulose is the cheapest, natural, renewable organic substance that is used as a carbon source in various fields. Water hyacinth, an aquatic plant rich in cellulose, is often used as a raw material in fuel production. However, natural cellulase can be hardly used in industrial production on account of its low thermal stability and activity. In this study, a metagenomic library was constructed. Then, a new cellulase gene, cel1029, was screened by Congo red staining and expressed in the prokaryotic system. Enzymatic properties of Cel1029 were explored, including optimum temperature and pH, thermal and pH stability, and tolerance against organic solvents, metal ions, and salt solutions. Finally, its ability of degrading water hyacinth was identified and evaluated. Cel1029 displayed high homology with endoglucanase in the glycoside hydrolase family 5 (GH5) and had high stability across a broad temperature range. More than 86% of its enzymatic activities were retained between 4 and 60 °C after 24 h of incubation. Single-factor analysis and orthogonal design were further conducted to determine the optimal conditions for the highest reducing sugar yield of water hyacinth. Interestingly, Cel1029 efficiently transformed water hyacinth with a reducing sugar yield of 430.39 mg/g in 22 h. These findings may open the door for significant industrial applications of a novel GH5 cellulase (NCBI Reference Sequence: MK051001, Cel1029) and help identify more efficient methods to degrade cellulose-rich plants.
纤维素是一种廉价、天然、可再生的有机物质,可用作各种领域的碳源。水葫芦是一种富含纤维素的水生植物,常被用作燃料生产的原料。然而,由于天然纤维素酶的热稳定性和活性低,几乎无法在工业生产中使用。本研究构建了宏基因组文库,通过刚果红染色筛选到一个新的纤维素酶基因 cel1029,并在原核系统中进行表达。对 Cel1029 的酶学性质进行了研究,包括最适温度和 pH 值、热稳定性和 pH 稳定性以及对有机溶剂、金属离子和盐溶液的耐受性。最后,鉴定并评估了其降解水葫芦的能力。Cel1029 与糖苷水解酶家族 5(GH5)中的内切葡聚糖酶具有高度同源性,在较宽的温度范围内具有很高的稳定性。孵育 24 h 后,其酶活性在 4 至 60°C 之间仍保留超过 86%。通过单因素分析和正交设计进一步确定了水葫芦还原糖产量最高的最佳条件。有趣的是,Cel1029 能有效转化水葫芦,22 h 内还原糖产量为 430.39 mg/g。这些发现可能为新型 GH5 纤维素酶(NCBI 参考序列:MK051001,Cel1029)的重要工业应用开辟道路,并有助于发现更有效的方法来降解富含纤维素的植物。