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首页> 外文期刊>Biotechnology for Biofuels >Development of a low-cost cellulase production process using Trichoderma reesei for Brazilian biorefineries
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Development of a low-cost cellulase production process using Trichoderma reesei for Brazilian biorefineries

机译:使用Trichoderma Reesei为巴西生物料理进行低成本纤维素酶生产过程的研制

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BackgroundDuring the past few years, the first industrial-scale cellulosic ethanol plants have been inaugurated. Although the performance of the commercial cellulase enzymes used in this process has greatly improved over the past decade, cellulases still represent a very significant operational cost. Depending on the region, transport of cellulases from a central production facility to a biorefinery may significantly add to enzyme cost. The aim of the present study was to develop a simple, cost-efficient cellulase production process that could be employed locally at a Brazilian sugarcane biorefinery. ResultsOur work focused on two main topics: growth medium formulation and strain improvement. We evaluated several Brazilian low-cost industrial residues for their potential in cellulase production. Among the solid residues evaluated, soybean hulls were found to display clearly the most desirable characteristics. We engineered a Trichoderma reesei strain to secrete cellulase in the presence of repressing sugars, enabling the use of sugarcane molasses as an additional carbon source. In addition, we added a heterologous β-glucosidase to improve the performance of the produced enzymes in hydrolysis. Finally, the addition of an invertase gene from Aspegillus niger into our strain allowed it to consume sucrose from sugarcane molasses directly. Preliminary cost analysis showed that the overall process can provide for very low-cost enzyme with good hydrolysis performance on industrially pre-treated sugarcane straw. ConclusionsIn this study, we showed that with relatively few genetic modifications and the right growth medium it is possible to produce considerable amounts of well-performing cellulase at very low cost in Brazil using T. reesei . With further enhancements and optimization, such a system could provide a viable alternative to delivered commercial cellulases.
机译:在过去的几年里,第一个工业规模的纤维素乙醇植物已落成。虽然在过去十年中,在该过程中使用的商业纤维素酶的性能大大提高,但纤维素酶仍然代表非常显着的操作成本。根据该地区,从中央生产设施到生物颗粒的纤维素酶的运输可以显着增加酶成本。本研究的目的是开发一种简单,具有成本效益的纤维素酶生产过程,可以在巴西甘蔗生物术中局部使用。结果我们的工作重点是两个主要主题:生长培养基配方和应变改善。我们评估了几个巴西低成本工业残留物,用于纤维素酶生产的潜力。在评估的固体残留物中,发现大豆壳体明显显示最期望的特征。我们在抑制糖的存在下,设计了一种Trichoderma Reesei菌株来分泌纤维素酶,使得使用甘蔗糖蜜作为额外的碳源。此外,我们加入了异源β-葡糖苷酶,以改善水解中产生的酶的性能。最后,将来自aspegillus niger的转化酶基因添加到我们的菌株中,使其能够直接消耗来自甘蔗糖蜜的蔗糖。初步成本分析表明,整个过程可以在工业预处理的甘蔗秸秆上提供具有良好水解性能的非常低成本的酶。结论本研究,我们表明,遗传修饰相对较少,良好的生长培养基可以在巴西使用T.Reesei在巴西的价格上产生相当大量的纤维素酶。通过进一步增强和优化,这种系统可以提供递送的商业纤维酶的可行替代品。

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