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From lignocellulosic biomass to single cell oil for sustainable biomanufacturing: Current advances and prospects

生物制造 木质纤维素生物量 电流(流体) 生物量(生态学) 生化工程 环境科学 自然资源经济学 生物技术 生物燃料 工程类 生物 经济 农学 电气工程
作者
Yu Duan,Limei Chen,Longxue Ma,Farrukh Raza Amin,Yida Zhai,Guofu Chen,Demao Li
出处
期刊:Biotechnology Advances [Elsevier BV]
卷期号:77: 108460-108460 被引量:10
标识
DOI:10.1016/j.biotechadv.2024.108460
摘要

As global temperatures rise and arid climates intensify, the reserves of Earth's resources and the future development of humankind are under unprecedented pressure. Traditional methods of food production are increasingly inadequate in meeting the demands of human life while remaining environmentally sustainable and resource-efficient. Consequently, the sustainable supply of lipids is expected to become a pivotal area for future food development. Lignocellulose biomass (LB), as the most abundant and cost-effective renewable resource, has garnered significant attention from researchers worldwide. Thus, bioprocessing based on LB is appearing as a sustainable model for mitigating the depletion of energy reserves and reducing carbon footprints. Currently, the transformation of LB primarily focuses on producing biofuels, such as bioethanol, biobutanol, and biodiesel, to address the energy crisis. However, there are limited reports on the production of single-cell oil (SCO) from LB. This review, therefore, provides a comprehensive summary of the research progress in lignocellulosic pretreatment. Subsequently, it describes how the capability for lignocellulosic use can be conferred to cells through genetic engineering. Additionally, the current status of saccharification and fermentation of LB is outlined. The article also highlights the advances in synthetic biology aimed at driving the development of oil-producing microorganism (OPM), including genetic transformation, chassis modification, and metabolic pathway optimization. Finally, the limitations currently faced in SCO production from straw are discussed, and future directions for achieving high SCO yields from various perspectives are proposed. This review aims to provide a valuable reference for the industrial application of green SCO production.
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