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Updated: Aug 20, 2026

Microinjection of mRNA and Morpholino Antisense Oligonucleotides in Zebrafish Embryos.
Published on: May 6, 2009
Treatment with Myf5-morpholino results in somite patterning and brain formation defects in zebrafish
1Institute of Fisheries Science, National Taiwan University,1 Roosevelt Road, Sec 4, Taipei, Taiwan.
Abstract:
Myf-5 is a stage-dependent transcription factor associated with somitogenesis. To study its biological functions in zebrafish, we injected the Myf5-morpholinos ZMF-MO (antisense nucleotides 28 to 52) and ZMF-OTHER (antisense nucleotides 3 to 27) into zebrafish embryos to establish a myf-5 gene knockdown. No phenotypic abnormalities were observed following injection with 0.2 ng of ZMF-MO, but defects were displayed in 2 of 118 (1.7%) surviving embryos injected with 1 ng ZMF-MO. Morphological defects became more severe with increased dosages: 105 of 270 (38.9%) surviving embryos injected with 4.5 ng of ZMF-MO displayed such abnormalities as the absence of eyes or brains in addition to the following low-dosage defects in 24 hpf embryos: longitudinal yolk sacs, incomplete epiboly coverage, abnormal and suspended tail buds, diffused somite boundaries, and head shrinkage. Similar results were observed in the 4.5 ng ZMF-OTHER injection group. However, when fish were co-injected with 4.5 ng ZMF-MO and 4.5 ng myf-5 mRNA, abnormality rates decreased from 49.6% to 5.5%. Our results show that the brain krox20 gene was down-regulated at rhombomere 3; the pax2.1 gene was completely down-regulated; myoD was expressed normally; myogenin was substantially down-regulated in whole somites; and desmin was partly inhibited in newly forming somites. Our conclusion is that zebrafish Myf-5 may play important roles in brain formation and in the convergence and extension of shield epiblasts and tail buds during early embryogenesis, in addition to its well-understood role as a muscle regulatory factor in somites.
Insights
Zebrafish Myf-5 knockdown using morpholinos caused severe developmental defects, including brain and eye absence. Myf-5 is crucial for early embryogenesis, impacting brain formation and somitogenesis.
Area of Science:
- Developmental Biology
- Genetics
Background:
- Myf-5 is a stage-dependent transcription factor involved in somitogenesis.
- Its specific roles in early zebrafish embryogenesis require further elucidation.
Purpose of the Study:
- To investigate the biological functions of Myf-5 in zebrafish development.
- To establish a myf-5 gene knockdown model in zebrafish embryos.
Main Methods:
- Injection of Myf-5-morpholinos (ZMF-MO and ZMF-OTHER) into zebrafish embryos at varying dosages.
- Observation and documentation of phenotypic abnormalities at 24 hours post-fertilization (hpf).
- Gene expression analysis of krox20, pax2.1, myoD, myogenin, and desmin.
Main Results:
- Dose-dependent morphological defects were observed, including absence of eyes/brains, yolk sac abnormalities, incomplete epiboly, abnormal tail buds, diffused somite boundaries, and head shrinkage.
- Gene expression analysis revealed down-regulation of krox20, pax2.1, myogenin, and desmin, while myoD expression remained normal.
- Co-injection with myf-5 mRNA significantly reduced abnormality rates.
Conclusions:
- Zebrafish Myf-5 plays critical roles in brain formation and the convergence/extension of epiblasts and tail buds during early embryogenesis.
- These findings extend the known function of Myf-5 beyond its role as a muscle regulatory factor in somites.

