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Utilisation of wheat bran as a substrate for bioethanol production using recombinant cellulases and amylolytic yeast

机译:利用麦麸作为底物,利用重组纤维素酶和淀粉分解酵母生产生物乙醇

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摘要

Wheat bran, generated from the milling of wheat, represents a promising feedstock for the production of bioethanol. This substrate consists of three main components: starch, hemicellulose and cellulose. The optimal conditions for wheat bran hydrolysis have been determined using a recombinant cellulase cocktail (RCC), which contains two cellobiohydrolases, an endoglucanase and a beta-glucosidase. The 10% (w/v, expressed in terms of dry matter) substrate loading yielded the most glucose, while the 2% loading gave the best hydrolysis efficiency (degree of saccharification) using unmilled wheat bran. The ethanol production of two industrial amylolytic Saccharomyces cerevisiae strains, MEL2[TLG1-SFA1] and M2n [TLG1-SFA1], were compared in a simultaneous saccharification and fermentation (SSF) for 10% wheat bran loading with or without the supplementation of optimised RCC. The recombinant yeasts. cerevisiae MEL2[TLG1-SFA1] and M2n[TLG1-SFA1] completely hydrolysed wheat bran's starch producing similar amounts of ethanol (5.3 +/- 0.14 g/L and 5.0 +/- 0.09 g/L, respectively). Supplementing SSF with RCC resulted in additional ethanol production of about 2.0 g/L. Scanning electron microscopy confirmed the effectiveness of both RCC and engineered amylolytic strains in terms of cellulose and starch depolymerisation.
机译:小麦制粉所产生的麦麸是生产生物乙醇的有前途的原料。该底物由三个主要成分组成:淀粉,半纤维素和纤维素。使用重组纤维素酶混合物(RCC)确定了麦麸水解的最佳条件,该混合物包含两个纤维二糖水解酶,一个内切葡聚糖酶和一个β-葡萄糖苷酶。 10%(w / v,以干物质表示)的底物负载量产生最多的葡萄糖,而2%的负载量使用未磨碎的麦麸则具有最佳的水解效率(糖化度)。在同时糖化和发酵(SSF)的情况下,比较了两种工业淀粉酶酿酒酵母菌株MEL2 [TLG1-SFA1]和M2n [TLG1-SFA1]的乙醇生产情况,其中添加或不添加优化RCC的麦麸含量为10% 。重组酵母。啤酒MEL2 [TLG1-SFA1]和M2n [TLG1-SFA1]完全水解麦麸淀粉,产生相似量的乙醇(分别为5.3 +/- 0.14 g / L和5.0 +/- 0.09 g / L)。用RCC补充SSF可以额外产生约2.0 g / L的乙醇。扫描电子显微镜证实了RCC和工程淀粉分解菌株在纤维素和淀粉解聚方面的有效性。

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