Transcriptomics reveals the mechanism of branching production in response to GR24 in A. gallica 541. [PDF]
Liu L, Li B, Li S, Liu Y, Zhou L, Guo S.
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Adaptive laboratory evolution and transcriptomic profiling reveal carbon-nitrogen metabolic reprogramming enabling aerobic co-fermentation of glucose and xylose in Saccharomyces cerevisiae. [PDF]
López-deÁvila LM +2 more
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Point mutation of the xylose reductase (XR) gene reduces xylitol accumulation and increases citric acid production in Aspergillus carbonarius. [PDF]
Weyda I +3 more
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Improving inhibitor tolerance of xylitol-producing Saccharomyces cerevisiae by overexpressing key target genes mined through comparative transcriptomes. [PDF]
Xiao XY +6 more
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Xylose Metabolism Perturbation in Yarrowia lipolytica for Efficient Succinic Acid Bioproduction from Lignocellulosic Biomass. [PDF]
Zhong Y +7 more
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Induction of D-xylose uptake and expression of NAD(P)H-linked xylose reductase and NADP + -linked xylitol dehydrogenase in the oleaginous microalga Chlorella sorokiniana. [PDF]
Zheng Y, Yu X, Li T, Xiong X, Chen S.
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Versatile sugar and valerate metabolic pathways in Paraburkholderia xenovorans LB400 enable tailored poly(3-hydroxybutyrate-co-3-hydroxyvalerate) production. [PDF]
Sepúlveda MI +10 more
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Engineering of xylose reductase based on ancestral sequence reconstruction
Rekonstrukcijom 350 sekvenci ksiloza reduktaze formirano je filogenetsko stablo i za 15 enzima odabrani su kinetički parametri za supstrat (D-ksiloza) i kofaktor (NADH). Temeljem ovih kriterija odabrano je pet ancestora, N0, N5, N15, N17 i N22, za inženjerstvo ksiloza reduktaze. Nakon što je pet proteina s His-tagom eksprimirano u E.
openaire +1 more source
Proposal of <i>Furfurilactobacillus cerevisiae</i> sp. nov. isolated from spoiled beer and <i>Furfurilactobacillus cerealis</i> sp. nov. isolated from sourdough. [PDF]
Zipori D +4 more
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Co-utilization of glucose and xylose in synthetic Escherichia coli consortia for efficient 2-hydroxy-3-methylvalerate biosynthesis. [PDF]
Liu Y, Wang S, Su H.
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