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Showing 1 to 5 of 5 for “"Scheffersomyces stipitis"”.
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Improved xylose fermentation by expression of a putative xylose transporter encoding gene HXT2.4 in Saccharomyces cerevisiae
… gene HXT2.4 from natural xylose consuming Scheffersomyces stipitis into engineered xylose consuming S. cerevisiae. Xylose consumption by the HXT2.4 expressing S. cerevisiae was tested through fermentation. To prove that HXT2.4 indeed enhanced the flux of xylose into the yeast cell, …
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Metabolic Engineering of oleaginous yeast for the production of biofuels
… feedstocks, expression of the redox pathway from Scheffersomyces stipitis and adaptation led to successful substrate utilization. Through the use of cofermentation, growth and productivity on xylose was improved dramatically with xylose-to-lipids conversion successfully demonstrated. For acetate, …
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Designing high-performance yeast factories for the production of high-value aromatics based on a novel species and its consortia
… are underexploited. Unlike the model host, Scheffersomyces stipitis natively assimilates xylose that can be integrated into central metabolism exclusively through pentose phosphate pathway; thus S. stipitis has evolved highly active pentose phosphate pathway, which would be beneficial for …
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Investigating the effects of pre-treatment of tropical seaweeds and freshwater macrophytes for bioenergy production
… yeast namely, Saccharomyces cerevisiae, Pichia stipitis (aka Scheffersomyces stipitis) and Kluyveromyces marxianus. Findings show that S. stipitis yeast strain demonstrated the highest affinity to ferment the sugar rhamnose which was the dominant hydrolysate in seaweeds to produce 5.9 g/Land …