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既不是 1G 也不是 2G 燃料乙醇:使用 iSUCCELL 酵母平台为基于甘蔗的生物炼制厂奠定基础。

Neither 1G nor 2G fuel ethanol: setting the ground for a sugarcane-based biorefinery using an iSUCCELL yeast platform.

机构信息

School of Food Engineering, University of Campinas, Campinas, SP 13083-862, Brazil.

Department of Molecular Biology and Biotechnology, University of Sheffield, Firth Court, Western Bank, Sheffield S10 2TN, UK.

出版信息

FEMS Yeast Res. 2020 Jun 1;20(4). doi: 10.1093/femsyr/foaa027.

Abstract

First-generation (1G) fuel ethanol production in sugarcane-based biorefineries is an established economic enterprise in Brazil. Second-generation (2G) fuel ethanol from lignocellulosic materials, though extensively investigated, is currently facing severe difficulties to become economically viable. Some of the challenges inherent to these processes could be resolved by efficiently separating and partially hydrolysing the cellulosic fraction of the lignocellulosic materials into the disaccharide cellobiose. Here, we propose an alternative biorefinery, where the sucrose-rich stream from the 1G process is mixed with a cellobiose-rich stream in the fermentation step. The advantages of mixing are 3-fold: (i) decreased concentrations of metabolic inhibitors that are typically produced during pretreatment and hydrolysis of lignocellulosic materials; (ii) decreased cooling times after enzymatic hydrolysis prior to fermentation; and (iii) decreased availability of free glucose for contaminating microorganisms and undesired glucose repression effects. The iSUCCELL platform will be built upon the robust Saccharomyces cerevisiae strains currently present in 1G biorefineries, which offer competitive advantage in non-aseptic environments, and into which intracellular hydrolyses of sucrose and cellobiose will be engineered. It is expected that high yields of ethanol can be achieved in a process with cell recycling, lower contamination levels and decreased antibiotic use, when compared to current 2G technologies.

摘要

甘蔗基生物炼制厂的第一代(1G)燃料乙醇生产是巴西一项成熟的经济产业。虽然第二代(2G)燃料乙醇来自木质纤维素材料,但目前在经济上可行方面面临着严峻的困难。这些工艺中固有的一些挑战可以通过有效地分离和部分水解木质纤维素材料的纤维素部分成二糖纤维二糖来解决。在这里,我们提出了一种替代的生物炼制厂,其中 1G 工艺的富含蔗糖的物流与发酵步骤中富含纤维二糖的物流混合。混合的优点有三:(i)减少了在木质纤维素材料的预处理和水解过程中通常产生的代谢抑制剂的浓度;(ii)在发酵前进行酶水解后的冷却时间减少;和(iii)游离葡萄糖对污染微生物和不良葡萄糖抑制作用的可用性降低。iSUCCELL 平台将建立在目前存在于 1G 生物炼制厂中的健壮的酿酒酵母菌株的基础上,这些菌株在非无菌环境中具有竞争优势,并且可以对蔗糖和纤维二糖的细胞内水解进行工程改造。与当前的 2G 技术相比,预计在具有细胞再循环、较低污染水平和减少抗生素使用的情况下,该过程可以实现高乙醇产量。

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