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Systematic improvement of isobutanol production from D-xylose in engineered Saccharomyces cerevisiae.

AMB Express. 2019; 
Promdonkoy P, Siripong W, Downes JJ,, Tanapongpipat S, Runguphan W.
Products/Services Used Details Operation
Gene Synthesis … at 250 rpm XR and XH candidate genes were amplified from genomic DNA [in the cases where the strains are available in the Thailand Bioresource Research Center (TBRC)] or synthesized by Genscript The individual genes … Get A Quote

摘要

As the importance of reducing carbon emissions as a means to limit the serious effects of global climate change becomes apparent, synthetic biologists and metabolic engineers are looking to develop renewable sources for transportation fuels and petroleum-derived chemicals. In recent years, microbial production of high-energy fuels has emerged as an attractive alternative to the traditional production of transportation fuels. In particular, the Baker's yeast Saccharomyces cerevisiae, a highly versatile microbial chassis, has been engineered to produce a wide array of biofuels. Nevertheless, a key limitation of S. cerevisiae is its inability to utilize xylose, the second most abundant sugar in lignocellulosic bio... More

关键词

Advanced biofuel; Isobutanol; Metabolic engineering; Xylose utilization; Yeast