Journalartikel

Enzymatic generation of short chain cello-oligosaccharides from Miscanthus using different pretreatments


AutorenlisteKendrick, Emanuele G.; Bhatia, Rakesh; Barbosa, Fernando C.; Goldbeck, Rosana; Gallagher, Joe A.; Leak, David J.

Jahr der Veröffentlichung2022

ZeitschriftBioresource Technology

Bandnummer358

ISSN0960-8524

eISSN1873-2976

Open Access StatusHybrid

DOI Linkhttps://doi.org/10.1016/j.biortech.2022.127399

VerlagElsevier


Abstract
Enzyme combinations producing short-chain cello-oligosaccharides (COS) as major bio-products from cellulose of Miscanthus Mx2779 accessed through different pretreatment methods were compared. Over short hydrolysis times, processive endoglucanase TfCel9a produced a high percentage of cellotetraose and cellopentaose and is synergistic with endoglucanase CcCel9m for producing short oligomers from amorphous cellulose but had low activity on untreated Miscanthus. Hydrolysis of the latter improved when these were combined with a mutant cellobio/triohydrolase OsCelC7(- 105) and a lytic polysaccharide monooxygenase TrCel61a, a combination which also produced the highest COS yields from phosphoric acid swollen cellulose. Steam explosion pretreatment of Miscanthus increased COS yields, with/without phosphoric acid swelling, while increased swelling time (from 20 to 45 min) also increased yields but decreased the need for TrCel61a. The highest COS yields (933 mg/g glucan) and most stable product profile were obtained using ionic liquid [C2mim][OAc] pretreatment and the three enzyme mixture TfCel9a, Cel9m and OsCel7a(-105).



Zitierstile

Harvard-ZitierstilKendrick, E., Bhatia, R., Barbosa, F., Goldbeck, R., Gallagher, J. and Leak, D. (2022) Enzymatic generation of short chain cello-oligosaccharides from Miscanthus using different pretreatments, Bioresource Technology, 358, Article 127399. https://doi.org/10.1016/j.biortech.2022.127399

APA-ZitierstilKendrick, E., Bhatia, R., Barbosa, F., Goldbeck, R., Gallagher, J., & Leak, D. (2022). Enzymatic generation of short chain cello-oligosaccharides from Miscanthus using different pretreatments. Bioresource Technology. 358, Article 127399. https://doi.org/10.1016/j.biortech.2022.127399



Schlagwörter


Cello-oligosaccharidesCELLULOSE CRYSTALLINE-STRUCTURECORN STOVERENDO-BETA-1,4-GLUCANASEEndoglucanasesEnzymatic hydrolysisIONIC LIQUID PRETREATMENTLytic polysaccharide monooxygenasePHOSPHORIC-ACIDTRICHODERMA-REESEI

Zuletzt aktualisiert 2025-10-06 um 11:40