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Keyword [Endoglucanase]
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1. Characterization And Application Of The Recombinant Truncated Endoglucanase Without Cellulose Binding Domain (CBD) Expressed In Pachia Pastoris
2. Screening Cellulase-Producing Bacillus Amyoliquofaciens Tx26 And Expression Of Its β-Endoglucanase Gene In Escherichia Coli
3. Purification And Characterization Of Cellulase Produced By Aspergillus Niger
4. Endo Enzyme-catalyzed Reaction And The Non-aqueous Micellar Nature
5. Preparation Of Endoglucanase From Marine Aspergillus Niger And Combination Of Cellulases
6. The Effect Of N-Glycosylation On Structure And Function Of Endoglucanase From Rhizopus Stolonifer
7. Structure And Function Of Endoglucanase Linker From Rhizopus Stolonifer
8. Onstruction Of Recombinant Industrial Saccharomyces Cerevisiae By Multi-gene Transformation And Alcoholic Fermentation To Cassava
9. Construction And Evaluation Of The Recombinant Saccharomyces Cerevisiae Strains Expressing Cellulases For Ethanol Production From Lignocellulosic Materials
10. Fundamental Studies On Bioconversion Of Lignocellulosic Biomass
11. Studied On Soy Sauce With High Content Of Dietary Fiber And Enhanced Flavor
12. The Construction And Evaluation Of Recombinant Saccharomyces Cerevisiae Strains Expressing Cellulase Genes
13. Purification And Characterization Of Cellulases From The Fungus Trichoderma Viride
14. Cloning And Expression Of Trichoderma Viride Endoglucanase Genes In Lacticacid Bacteria Andanalysis Of Enzyme Activity
15. Development Of Recombinant Industrial Strains Of Saccharomyces Cerevisiae With High Activity Of Decreasing Viscosity In Ethanol Production From Lignocellulosic Biomass
16. High Temperature Glycoside Hydrolase Enzymes Synergistically Degrade Lignocellulose
17. Endoglucanase-assisted Mechanical Grinding For Cellulose Nanofibril Production
18. Reconstruction Of Thermostable Cellulases With Dual Catalytic Domains
19. Characterization And Crystallization Of Cellulases From Marine Aspergillus Niger
20. Modulation of the pH-activity profile of the endoglucanase CenA from Cellulomonas fimi through rational design and chemical modification
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