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1. A conserved transcriptional fingerprint of multi-neurotransmitter neurons necessary for social behavior

2. Cell-type-specific responses to the microbiota across all tissues of the larval zebrafish

3. The microbiota promotes social behavior by modulating microglial remodeling of forebrain neurons

4. Defining Science Literacy in General Education Courses for Undergraduate Non-Science Majors

5. A New Transgenic Tool to Study the Ret Signaling Pathway in the Enteric Nervous System

6. Late onset of Synaptotagmin 2a expression at synapses relevant to social behavior

7. GLOBAL HOST RESPONSES TO THE MICROBIOTA AT SINGLE CELL RESOLUTION IN GNOTOBIOTIC ZEBRAFISH

8. Enteric nervous system modulation of luminal pH modifies the microbial environment to promote intestinal health

9. Late onset of Syt2a expression at synapses relevant to social behavior

10. Contributors

11. Preface

12. History of Zebrafish Research

13. Dedication

14. Guidelines for morpholino use in zebrafish

15. Epigenetic factors Dnmt1 and Uhrf1 coordinate intestinal development

16. The Zebrafish in Biomedical Research : Biology, Husbandry, Diseases, and Research Applications

17. Molecular fingerprinting delineates progenitor populations in the developing zebrafish enteric nervous system

18. Epigenetic factors coordinate intestinal development

19. Evolution of Endothelin signaling and diversification of adult pigment pattern inDaniofishes

20. Microbiota promote secretory cell determination in the intestinal epithelium by modulating host Notch signaling

21. Forebrain Control of Behaviorally Driven Social Orienting in Zebrafish

22. Zebrafish as a Model System in Developmental Biology

23. Image velocimetry and spectral analysis enable quantitative characterization of larval zebrafish gut motility

24. The enteric nervous system promotes intestinal health by constraining microbiota composition

25. Best practices for germ-free derivation and gnotobiotic zebrafish husbandry

26. Lhx3 and Lhx4 suppress Kolmer–Agduhr interneuron characteristics within zebrafish axial motoneurons

27. Thyroid hormone–dependent adult pigment cell lineage and pattern in zebrafish

28. Characterization of Enteric Neurons in Wild-Type and Mutant Zebrafish Using Semi-Automated Cell Counting and Co-Expression Analysis

29. Husbandry and Health Program Survey Synopsis

30. Host Gut Motility and Bacterial Competition Drive Instability in a Model Intestinal Microbiota

31. Host Gut Motility Promotes Competitive Exclusion within a Model Intestinal Microbiota

32. Zebrafish as a model for understanding enteric nervous system interactions in the developing intestinal tract

33. Turning gene function ON and OFF using sense and antisense photo-morpholinos in zebrafish

34. Somatosensory mechanisms in zebrafish lacking dorsal root ganglia

35. DeltaA mRNA and protein distribution in the zebrafish nervous system

36. Controlling morpholino experiments: don't stop making antisense

37. An F-domain introduced by alternative splicing regulates activity of the zebrafish thyroid hormone receptor α

38. Genetic screen for mutations affecting development and function of the enteric nervous system

39. Knockdown of Nav 1.6a Na+ channels affects zebrafish motoneuron development

40. Islet1 and Islet2 have equivalent abilities to promote motoneuron formation and to specify motoneuron subtype identity

41. Characterization of the retinoic acid receptor genes raraa, rarab and rarg during zebrafish development

42. Slow muscle regulates the pattern of trunk neural crest migration in zebrafish

43. Zebrafish and fly Nkx6 proteins have similar CNS expression patterns and regulate motoneuron formation

44. Paraxial mesoderm specifies zebrafish primary motoneuron subtype identity

45. Regulation ofiro3 expression in the zebrafish spinal cord

46. Retinoids Run Rampant

47. From cells to circuits: development of the zebrafish spinal cord

48. Slow degeneration of zebrafish Rohon-Beard neurons during programmed cell death

49. Headwaters of the zebrafish — emergence of a new model vertebrate

50. Segmental relationship between somites and vertebral column in zebrafish

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