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1. Two KaiABC systems control circadian oscillations in one cyanobacterium

2. The role of the 5’ sensing function of ribonuclease E in cyanobacteria

3. Regulation of RNase E during the UV stress response in the cyanobacterium Synechocystis sp. PCC 6803

4. mRNA targeting eliminates the need for the signal recognition particle during membrane protein insertion in bacteria

5. Regulation of pSYSA defense plasmid copy number in Synechocystis through RNase E and a highly transcribed asRNA

6. Enzymatic properties of CARF-domain proteins in Synechocystis sp. PCC 6803

7. Thermosynechococcus switches the direction of phototaxis by a c-di-GMP-dependent process with high spatial resolution

8. Homologs of Circadian Clock Proteins Impact the Metabolic Switch Between Light and Dark Growth in the Cyanobacterium Synechocystis sp. PCC 6803

9. The social life of cyanobacteria

10. The Role of the Cyanobacterial Type IV Pilus Machinery in Finding and Maintaining a Favourable Environment

11. Appendages of the Cyanobacterial Cell

12. Phototaxis Assays of Synechocystis sp. PCC 6803 at Macroscopic and Microscopic Scales

13. Cyanobacteria use micro-optics to sense light direction

14. Evidence for a major role of antisense RNAs in cyanobacterial gene regulation

15. Spot Assays for Viability Analysis of Cyanobacteria

16. Thermosynechococcus switches the direction of phototaxis by a c-di-GMP-dependent process with high spatial resolution

17. Homologs of Circadian Clock Proteins Impact the Metabolic Switch Between Light and Dark Growth in the Cyanobacterium Synechocystis sp. PCC 6803

18. The cyanobacterial phytochrome 2 regulates the expression of motility-related genes through the second messenger cyclic di-GMP

19. Synechocystis KaiC3 Displays Temperature- and KaiB-Dependent ATPase Activity and Is Important for Growth in Darkness

20. Light-controlled motility in prokaryotes and the problem of directional light perception

21. Synechocystis KaiC3 displays temperature and KaiB dependent ATPase activity and is important for growth in darkness

22. Phototaxis Assays of Synechocystis sp. PCC 6803 at Macroscopic and Microscopic Scales

23. Cyanobacteria use micro-optics to sense light direction

24. Biochemical Evidence for a Timing Mechanism in Prochlorococcus▿ †

25. Importance of the Cyanobacterial Gun4 Protein for Chlorophyll Metabolism and Assembly of Photosynthetic Complexes*

26. Functioning and robustness of a bacterial circadian clock

27. The gun4 gene is essential for cyanobacterial porphyrin metabolism

28. Small RNAs Establish Delays and Temporal Thresholds in Gene Expression

29. Effect of phosphate availability on cyanophycin accumulation in Synechocystis sp. PCC 6803 and the production strain BW86

30. Systems analysis of ethanol production in the genetically engineered cyanobacterium Synechococcus sp. PCC 7002

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