Securing a sustainable protein supply at the global level is among the greatest challenges currently faced by humanity. Alternative protein sources, such as second-generation microbial protein (MP), could give rise to innovative circular bioeconomy practices, synthesizing high-value bioproducts through the recovery and upcycling of resources from overabundant biowastes and residues. Within such a multi-feedstock biorefinery scenario, the wide range of microbial pathways and networks that characterize mixed microbial cultures, offers interesting and not yet fully explored advantages over conventional monoculture-based processes. In this review, we combine a comprehensive analysis of waste recovery platforms for second-generation MP production with a critical evaluation of the research gaps and potentials offered by mixed culture-based MP fermentation processes.

Biowaste upcycling into second-generation microbial protein through mixed-culture fermentation / Areniello, Marica; Matassa, Silvio; Esposito, Giovanni; Lens, Piet N L. - In: TRENDS IN BIOTECHNOLOGY. - ISSN 0167-7799. - 41:2(2023), pp. 197-213. [10.1016/j.tibtech.2022.07.008]

Biowaste upcycling into second-generation microbial protein through mixed-culture fermentation

Areniello, Marica
Primo
;
Matassa, Silvio
Secondo
;
Esposito, Giovanni;
2023

Abstract

Securing a sustainable protein supply at the global level is among the greatest challenges currently faced by humanity. Alternative protein sources, such as second-generation microbial protein (MP), could give rise to innovative circular bioeconomy practices, synthesizing high-value bioproducts through the recovery and upcycling of resources from overabundant biowastes and residues. Within such a multi-feedstock biorefinery scenario, the wide range of microbial pathways and networks that characterize mixed microbial cultures, offers interesting and not yet fully explored advantages over conventional monoculture-based processes. In this review, we combine a comprehensive analysis of waste recovery platforms for second-generation MP production with a critical evaluation of the research gaps and potentials offered by mixed culture-based MP fermentation processes.
2023
Biowaste upcycling into second-generation microbial protein through mixed-culture fermentation / Areniello, Marica; Matassa, Silvio; Esposito, Giovanni; Lens, Piet N L. - In: TRENDS IN BIOTECHNOLOGY. - ISSN 0167-7799. - 41:2(2023), pp. 197-213. [10.1016/j.tibtech.2022.07.008]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/902047
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