17 results on '"Wu, Taju"'
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2. Dissecting key residues of a C4-dicarboxylic acid transporter to accelerate malate export in Myceliophthora
3. Consolidated bioprocessing for bioethanol production by metabolically engineered cellulolytic fungus Myceliophthora thermophila
4. Rewiring metabolic flux to simultaneously improve malate production and eliminate by‐product succinate accumulation by Myceliophthora thermophila
5. Coordination of consolidated bioprocessing technology and carbon dioxide fixation to produce malic acid directly from plant biomass in Myceliophthora thermophila
6. A putative transcription factor LFC1 negatively regulates development and yield of winter mushroom
7. Dissecting key residues of a C4-dicarboxylic acid transporter to accelerate malate export in Myceliophthora
8. The Accordant Trend of Both Parameters (rgs Expression and cAMP Content) Follows the Pattern of Development of Fruiting Body in Volvariella volvacea
9. Additional file 2 of Coordination of consolidated bioprocessing technology and carbon dioxide fixation to produce malic acid directly from plant biomass in Myceliophthora thermophila
10. Transcriptional Profiling of Myceliophthora thermophila on Galactose and Metabolic Engineering for Improved Galactose Utilization
11. A WD40 Protein Encoding Gene Fvcpc2 Positively Regulates Mushroom Development and Yield in Flammulina velutipes
12. A Single Transcription Factor (PDD1) Determines Development and Yield of Winter Mushroom ( Flammulina velutipes )
13. Structural Variation (SV) Markers in the Basidiomycete Volvariella volvacea and Their Application in the Construction of a Genetic Map
14. Gene Expression Profiling Reveals Large Regulatory Switches between Succeeding Stipe Stages in Volvariella volvacea
15. Gene Expression Profiling Reveals Large Regulatory Switches between Succeeding Stipe Stages in Volvariella volvacea.
16. Gene Expression Profiling Reveals Large Regulatory Switches between Succeeding Stipe Stages in Volvariella volvacea.
17. Functional Analysis of BARD1 Missense Variants on Homology-Directed Repair in Ovarian and Breast Cancers.
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