Bioengineered microbial platforms for biomass-derived biofuel production – A review

Global warming issues, rapid fossil fuel diminution, and increasing worldwide energy demands have diverted accelerated attention in finding alternate sources of biofuels and energy to combat the energy crisis. Bioconversion of lignocellulosic biomass has emerged as a prodigious way to produce variou...

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Veröffentlicht in:Chemosphere (Oxford) 2022-02, Vol.288 (Pt 2), p.132528-132528, Article 132528
Hauptverfasser: Lu, Hedong, Yadav, Vivek, Zhong, Mengyuan, Bilal, Muhammad, Taherzadeh, Mohammad J., Iqbal, Hafiz M.N.
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Sprache:eng
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Zusammenfassung:Global warming issues, rapid fossil fuel diminution, and increasing worldwide energy demands have diverted accelerated attention in finding alternate sources of biofuels and energy to combat the energy crisis. Bioconversion of lignocellulosic biomass has emerged as a prodigious way to produce various renewable biofuels such as biodiesel, bioethanol, biogas, and biohydrogen. Ideal microbial hosts for biofuel synthesis should be capable of using high substrate quantity, tolerance to inhibiting substances and end-products, fast sugar transportation, and amplified metabolic fluxes to yielding enhanced fermentative bioproduct. Genetic manipulation and microbes' metabolic engineering are fascinating strategies for the economical production of next-generation biofuel from lignocellulosic feedstocks. Metabolic engineering is a rapidly developing approach to construct robust biofuel-producing microbial hosts and an important component for future bioeconomy. This approach has been widely adopted in the last decade for redirecting and revamping the biosynthetic pathways to obtain a high titer of target products. Biotechnologists and metabolic scientists have produced a wide variety of new products with industrial relevance through metabolic pathway engineering or optimizing native metabolic pathways. This review focuses on exploiting metabolically engineered microbes as promising cell factories for the enhanced production of advanced biofuels. [Display omitted] •Lignocellulosic biomass valorization is discussed to meet bioeconomy perspective.•Biomass transformation into multipurpose bioethanol has become new frontiers.•Various applied perspectives are given with suitable examples.•Lignocellulosic biomass conversion into industrially useful products or biofuels.
ISSN:0045-6535
1879-1298
1879-1298
DOI:10.1016/j.chemosphere.2021.132528