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丝状真菌来源的单细胞油作为生物柴油生产替代原料的潜力

The Potential of Single-Cell Oils Derived From Filamentous Fungi as Alternative Feedstock Sources for Biodiesel Production.

作者信息

Mhlongo Sizwe I, Ezeokoli Obinna T, Roopnarain Ashira, Ndaba Busiswa, Sekoai Patrick T, Habimana Olivier, Pohl Carolina H

机构信息

Discipline of Medical Microbiology, School of Laboratory Medicine and Medical Sciences, Medical School, University of KwaZulu-Natal, Durban, South Africa.

Department of Microbial, Biochemical and Food Biotechnology, University of the Free State, Bloemfontein, South Africa.

出版信息

Front Microbiol. 2021 Jan 28;12:637381. doi: 10.3389/fmicb.2021.637381. eCollection 2021.

Abstract

Microbial lipids, also known as single-cell oils (SCOs), are highly attractive feedstocks for biodiesel production due to their fast production rates, minimal labor requirements, independence from seasonal and climatic changes, and ease of scale-up for industrial processing. Among the SCO producers, the less explored filamentous fungi (molds) exhibit desirable features such as a repertoire of hydrolyzing enzymes and a unique pellet morphology that facilitates downstream harvesting. Although several oleaginous filamentous fungi have been identified and explored for SCO production, high production costs and technical difficulties still make the process less attractive compared to conventional lipid sources for biodiesel production. This review aims to highlight the ability of filamentous fungi to hydrolyze various organic wastes for SCO production and explore current strategies to enhance the efficiency and cost-effectiveness of the SCO production and recovery process. The review also highlights the mechanisms and components governing lipogenic pathways, which can inform the rational designs of processing conditions and metabolic engineering efforts for increasing the quality and accumulation of lipids in filamentous fungi. Furthermore, we describe other process integration strategies such as the co-production with hydrogen using advanced fermentation processes as a step toward a biorefinery process. These innovative approaches allow for integrating upstream and downstream processing units, thus resulting in an efficient and cost-effective method of simultaneous SCO production and utilization for biodiesel production.

摘要

微生物脂质,也被称为单细胞油(SCOs),由于其生产速度快、劳动力需求少、不受季节和气候变化影响以及易于扩大规模进行工业加工,是生物柴油生产极具吸引力的原料。在SCOs生产者中,较少被探索的丝状真菌(霉菌)具有一些理想特性,如一系列水解酶以及有助于下游收获的独特颗粒形态。尽管已经鉴定并探索了几种产油丝状真菌用于SCOs生产,但与传统生物柴油生产的脂质来源相比,高生产成本和技术难题仍然使该过程缺乏吸引力。本综述旨在强调丝状真菌水解各种有机废物以生产SCOs的能力,并探索提高SCOs生产和回收过程效率及成本效益的当前策略。该综述还强调了控制脂肪生成途径的机制和成分,这可为合理设计加工条件和代谢工程努力提供依据,以提高丝状真菌中脂质的质量和积累量。此外,我们描述了其他过程整合策略,如使用先进发酵工艺与氢气联产,作为迈向生物精炼过程的一步。这些创新方法允许整合上游和下游加工单元,从而产生一种高效且经济有效的方法,用于同时生产SCOs并将其用于生物柴油生产。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/56cc/7876240/839d82e0ca00/fmicb-12-637381-g001.jpg

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