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3. Alleviation of Carbon Catabolite Repression through araR and xylR Inactivation in Clostridium acetobutylicum DSM 792.

5. List of Contributors

8. Adaptation and application of a two-plasmid inducible CRISPR-Cas9 system in Clostridium beijerinckii

9. Genes involved in the methyl tert-butyl ether (MTBE) metabolic pathway of Mycobacterium austroafricanum IFP 2012

10. The DnaK chaperone is necessary for alpha-complementation of beta-galactosidase in Escherichia coli

11. Adaptation and application of a two-plasmid inducible CRISPR-Cas9 system in Clostridium beijerinckii

12. From a Sequential Chemo-Enzymatic Approach to a Continuous Process for HMF Production from Glucose

13. Additional file 4: of Genome and transcriptome of the natural isopropanol producer Clostridium beijerinckii DSM6423

15. Additional file 5: of Genome and transcriptome of the natural isopropanol producer Clostridium beijerinckii DSM6423

16. Additional file 2: of Genome and transcriptome of the natural isopropanol producer Clostridium beijerinckii DSM6423

17. Additional file 3: of Genome and transcriptome of the natural isopropanol producer Clostridium beijerinckii DSM6423

18. Genetic tool for the transformation of Clostridium bacteria

19. From sequential chemoenzymatic synthesis to integrated hybrid catalysis: taking the best of both worlds to open up the scope of possibilities for a sustainable future

20. Mutant strains of the genus Clostridium Beijerinckii

21. Improving isopropanol tolerance and production of Clostridium beijerinckii DSM 6423 by random mutagenesis and genome shuffling

29. Comparative kinetic analysis of two fungalβ-glucosidases.

30. n-Alkane assimilation and tert-butyl alcohol (TBA) oxidation capacity in Mycobacterium austroafricanum strains.

31. Enzymes and genes involved in the aerobic biodegradation of methyl tert-butyl ether (MTBE).

32. The DnaK Chaperone Is Necessary for α-Complementation of β-Galactosidase in Escherichia coli.

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