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25 results on '"Alex Toftgaard Nielsen"'

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1. Generation of an E. coli platform strain for improved sucrose utilization using adaptive laboratory evolution

2. A dual-reporter system for investigating and optimizing protein translation and folding in E. coli

3. An autoinducible trp‐T7 expression system for production of proteins and biochemicals inEscherichia coli

4. Generation of an E. coli platform strain for improved sucrose utilization using adaptive laboratory evolution

5. Extraction, Enrichment, and in situ Electrochemical Detection on Lab-on-a-Disc: Monitoring the Production of a Bacterial Secondary Metabolite

6. Genome-Wide CRISPRi-Based Identification of Targets for Decoupling Growth from Production

7. CRISPR interference of nucleotide biosynthesis improves production of a single-domain antibody in Escherichia coli

8. Surface Enhanced Raman Scattering for Quantification of p-Coumaric Acid Produced by Escherichia coli

9. Increased production of L-serine in Escherichia coli through Adaptive Laboratory Evolution

10. Adaptive laboratory evolution reveals general and specific chemical tolerance mechanisms and enhances biochemical production

11. Simultaneous quantification of multiple bacterial metabolites using surface-enhanced Raman scattering

12. Predictable tuning of protein expression in bacteria

13. Engineering of high yield production of L-serine inEscherichia coli

14. Production of zosteric acid and other sulfated phenolic biochemicals in microbial cell factories

15. Multiplex Genome Editing in Escherichia coli

16. Genome-wide identification of tolerance mechanisms toward p-coumaric acid in Pseudomonas putida

17. Multiplex Genome Editing in Escherichia coli

18. CRISPR/Cas9-based genome editing for simultaneous interference with gene expression and protein stability

19. Quantification of a bacterial secondary metabolite by SERS combined with SLM extraction for bioprocess monitoring

20. Enhanced protein and biochemical production using CRISPRi-based growth switches

21. Genome-wide Escherichia coli stress response and improved tolerance towards industrially relevant chemicals

22. Engineering of high yield production of L-serine in Escherichia coli

23. Highly Active and Specific Tyrosine Ammonia-Lyases from Diverse Origins Enable Enhanced Production of Aromatic Compounds in Bacteria and Saccharomyces cerevisiae

24. Differential expression of small RNAs under chemical stress and fed-batch fermentation in E. coli

25. Distribution of Bacterial Growth Activity in Flow-Chamber Biofilms

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