Adegboye Mobolaji Felicia, Ojuederie Omena Bernard, Talia Paola M, Babalola Olubukola Oluranti
Food Security and Safety Niche Area, Faculty of Natural and Agricultural Sciences, North-West University, Mmabatho, Private Bag X2046, 2735, South Africa.
Department of Biological Sciences, Faculty of Science, Kings University, Ode-Omu, PMB 555, Osun State, Nigeria.
Biotechnol Biofuels. 2021 Jan 6;14(1):5. doi: 10.1186/s13068-020-01853-2.
The issues of global warming, coupled with fossil fuel depletion, have undoubtedly led to renewed interest in other sources of commercial fuels. The search for renewable fuels has motivated research into the biological degradation of lignocellulosic biomass feedstock to produce biofuels such as bioethanol, biodiesel, and biohydrogen. The model strain for biofuel production needs the capability to utilize a high amount of substrate, transportation of sugar through fast and deregulated pathways, ability to tolerate inhibitory compounds and end products, and increased metabolic fluxes to produce an improved fermentation product. Engineering microbes might be a great approach to produce biofuel from lignocellulosic biomass by exploiting metabolic pathways economically. Metabolic engineering is an advanced technology for the construction of highly effective microbial cell factories and a key component for the next-generation bioeconomy. It has been extensively used to redirect the biosynthetic pathway to produce desired products in several native or engineered hosts. A wide range of novel compounds has been manufactured through engineering metabolic pathways or endogenous metabolism optimizations by metabolic engineers. This review is focused on the potential utilization of engineered strains to produce biofuel and gives prospects for improvement in metabolic engineering for new strain development using advanced technologies.
全球变暖问题,再加上化石燃料的枯竭,无疑引发了人们对其他商业燃料来源的新兴趣。对可再生燃料的探索推动了对木质纤维素生物质原料进行生物降解以生产生物乙醇、生物柴油和生物氢等生物燃料的研究。用于生物燃料生产的模式菌株需要具备大量利用底物的能力、通过快速且不受调控的途径运输糖的能力、耐受抑制性化合物和终产物的能力,以及增加代谢通量以产生改良发酵产物的能力。通过经济地利用代谢途径,工程微生物可能是从木质纤维素生物质生产生物燃料的一种好方法。代谢工程是构建高效微生物细胞工厂的先进技术,也是下一代生物经济的关键组成部分。它已被广泛用于在几种天然或工程宿主中重新引导生物合成途径以生产所需产品。代谢工程师通过工程化代谢途径或优化内源性代谢,制造出了各种各样的新型化合物。本综述聚焦于工程菌株生产生物燃料的潜在应用,并展望了利用先进技术改进代谢工程以开发新菌株的前景。