Valorisation of pectin-rich agro-industrial residues by yeasts: potential and challenges

Утилизация богатых пектином агропромышленных отходов с помощью дрожжей: потенциал и проблемы
Luís C. Martins, Catarina C. Monteiro, Paula M. Semedo, Isabel Sá‐Correia
2020-05-30

D-galacturonic acid catabolismbiomass-based biorefineriesmetabolic engineeringnon-conventional yeastspectin-rich agro-industrial residues
Pectin-rich agro-industrial residues are feedstocks with potential for sustainable biorefineries. They are generated in high amounts worldwide from the industrial processing of fruits and vegetables. The challenges posed to the industrial implementation of efficient bioprocesses are however manyfold and thoroughly discussed in this review paper, mainly at the biological level. The most important yeast cell factory platform for advanced biorefineries is currently Saccharomyces cerevisiae, but this yeast species cannot naturally catabolise the main sugars present in pectin-rich agro-industrial residues hydrolysates, in particular D-galacturonic acid and L-arabinose. However, there are non-Saccharomyces species (non-conventional yeasts) considered advantageous alternatives whenever they can express highly interesting metabolic pathways, natively assimilate a wider range of carbon sources or exhibit higher tolerance to relevant bioprocess-related stresses. For this reason, the interest in non-conventional yeasts for biomass-based biorefineries is gaining momentum. This review paper focuses on the valorisation of pectin-rich residues by exploring the potential of yeasts that exhibit vast metabolic versatility for the efficient use of the carbon substrates present in their hydrolysates and high robustness to cope with the multiple stresses encountered. The major challenges and the progresses made related with the isolation, selection, sugar catabolism, metabolic engineering and use of non-conventional yeasts and S. cerevisiae-derived strains for the bioconversion of pectin-rich residue hydrolysates are discussed. The reported examples of value-added products synthesised by different yeasts using pectin-rich residues are reviewed. Key Points • Review of the challenges and progresses made on the bioconversion of pectin-rich residues by yeasts. • Catabolic pathways for the main carbon sources present in pectin-rich residues hydrolysates. • Multiple stresses with potential to affect bioconversion productivity. • Yeast metabolic engineering to improve pectin-rich residues bioconversion. Graphical abstract.
1
Non-conventional yeasts may provide superior platforms through broader native carbon utilization, versatile metabolism, and greater tolerance to bioprocess stresses.
2
Pectin-rich agro-industrial residues are abundant feedstocks with strong potential for sustainable yeast-based biorefineries.
3
Progress has been made in isolating, selecting, engineering, and applying non-conventional yeasts and S. cerevisiae-derived strains to convert pectin-residue hydrolysates.
4
Saccharomyces cerevisiae cannot naturally catabolize key hydrolysate sugars, particularly D-galacturonic acid and L-arabinose, limiting its direct application.
5
Yeasts can synthesize value-added products from pectin-rich residues, but efficient industrial implementation remains constrained by sugar catabolism and multiple biological process stresses.

pectin-rich agro-industrial residues and their hydrolysates

yeast-mediated bioconversion and valorisation of hydrolysate carbon substrates into value-added products, including metabolic versatility and stress robustness

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2020-05-30
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Luís C. Martins
Catarina C. Monteiro
Paula M. Semedo
Isabel Sá‐Correia
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