| Literature DB >> 30661103 |
Viviane Astolfi1, Angela Luiza Astolfi1, Marcio A Mazutti2, Elisandra Rigo3, Marco Di Luccio4, Aline Frumi Camargo5, Caroline Dalastra5, Simone Kubeneck5, Gislaine Fongaro5, Helen Treichel6.
Abstract
This study evaluated the production of cellulolytic enzymes from different agricultural residues. The crude enzyme extract produced was characterized and applied for saccharification of some agricultural residues. Maximum cellulolytic activities were obtained using soybean hulls. All enzymatic activities were highly stable at 40 °C at a pH range of 4.5-5.5. For stability at low temperatures, the enzyme extract was stored at freezing temperature and cooling for about 290 days without major loss of activity. The Km values found for total cellulase (FPase), endoglucanase (CMCase), and xylanase were 19.73 mg ml-1, 0.65 mg ml-1, and 22.64 mg ml-1, respectively, and Vmax values were 0.82 mol min-1 mg-1, 0.62 mol min-1 mg-1, and 104.17 mol min-1 mg-1 to cellulose, carboxymethyl cellulose, and xylan, respectively. In the saccharification tests, the total amount of total reducing sugars (TRS) released from 1 g of soybean hulls catalyzed by the enzymes present in the crude enzyme extract was 0.16 g g-1 dry substrate.Entities:
Keywords: Agricultural residues; Saccharification; Solid-state fermentation; Trichoderma reesei NRRL 3652
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Year: 2019 PMID: 30661103 DOI: 10.1007/s00449-019-02072-2
Source DB: PubMed Journal: Bioprocess Biosyst Eng ISSN: 1615-7591 Impact factor: 3.210