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2. Cutaneous and Developmental Effects of CARD14 Overexpression in Zebrafish

3. Period 2: A Regulator of Multiple Tissue-Specific Circadian Functions

4. Genetically Blocking the Zebrafish Pineal Clock Affects Circadian Behavior.

5. Systematic identification of rhythmic genes reveals camk1gb as a new element in the circadian clockwork.

6. Regulation of per and cry genes reveals a central role for the D-box enhancer in light-dependent gene expression.

7. Light directs zebrafish period2 expression via conserved D and E boxes.

8. Establishment of cell lines from individual zebrafish embryos.

9. sj-pdf-1-lan-10.1177_00236772231157162 - Supplemental material for Establishment of cell lines from individual zebrafish embryos

10. A Zebrafish Model for a Rare Genetic Disease Reveals a Conserved Role for FBXL3 in the Circadian Clock System

11. Establishment of cell lines from individual zebrafish embryos

12. Agouti-related protein 2 is a new player in the teleost stress response system

13. Agouti-Related Protein 2 Is a New Player in the Teleost Stress Response System

14. The light-induced transcriptome of the zebrafish pineal gland reveals complex regulation of the circadian clockwork by light

15. Genetically Blocking the Zebrafish Pineal Clock Affects Circadian Behavior

16. Six3 regulates optic nerve development via multiple mechanisms

17. Functional development of the circadian clock in the zebrafish pineal gland

18. Systematic Identification of Rhythmic Genes Reveals camk1gb as a New Element in the Circadian Clockwork

19. Multiple PAR and E4BP4 bZIP transcription factors in zebrafish: diverse spatial and temporal expression patterns

20. Light Directs Zebrafish period2 Expression via Conserved D and E Boxes

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