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Fig. s2

ID
ZDB-FIG-200723-33
Publication
Yoshida et al., 2020 - Zebrafish can regenerate endoskeleton in larval pectoral fin but the regenerative ability declines
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Fig. s2

Endoskeleton of pectoral fin in col2a1a:EGFP;sox10:DsRed double transgenic fish. (A-C) Expression pattern of col2a1a:EGFP (A), sox10:DsRed (B), and merged view (C) in the chondrocytes of the pectoral fin. (D) Amputated pectoral fin of col2a1a:EGFP; sox10:DsRed double transgenic fish. (E, F) Pectoral fin skeletons in col2a1a:EGFP; sox10:DsRed double transgenic fish stained with AR and AB at 28 dpA: contralateral control (E) and regenerated (F) pectoral fins. Scale bar: 200 ​μm in A, D and E.

Expression Data

Expression Detail
Antibody Labeling
Phenotype Data

Phenotype Detail
Acknowledgments
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Reprinted from Developmental Biology, 463(2), Yoshida, K., Kawakami, K., Abe, G., Tamura, K., Zebrafish can regenerate endoskeleton in larval pectoral fin but the regenerative ability declines, 110-123, Copyright (2020) with permission from Elsevier. Full text @ Dev. Biol.