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Engineering of Ogataea polymorpha strains with ability for high-temperature alcoholic fermentation of cellobiose

FEMS Yeast Res. 2024-01; 
Roksolana Vasylyshyn, Olena Dmytruk, Andriy Sybirnyy, Justyna Ruchała
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Gene Synthesis … of genes by the biotechnology company GenScript Biotech. … strains with overexpression of the gene pairs gh1-1/CDT-2m … the combinations of the corresponding genes, despite the fact … Get A Quote

摘要

Successful conversion of cellulosic biomass into biofuels requires organisms capable of efficiently utilizing xylose as well as cellodextrins and glucose. Ogataea (Hansenula) polymorpha is the natural xylose-metabolizing organism and is one of the most thermotolerant yeasts known, with a maximum growth temperature above 50°C. Cellobiose-fermenting strains, derivatives of an improved ethanol producer from xylose O. polymorpha BEP/cat8∆, were constructed in this work by the introduction of heterologous genes encoding cellodextrin transporters (CDTs) and intracellular enzymes (β-glucosidase or cellobiose phosphorylase) that hydrolyze cellobiose. For this purpose, the genes gh1-1 of β-glucosidase, CDT-1m and ... More

关键词

adaptive laboratory evolution, cellobiose, metabolic engineering