Generation and validation of a myoglobin knockout zebrafish model

Rasmus Hejlesen1,2, Kasper Kjær-Sørensen2, Angela Fago3

  • 1Department of Biology, Zoophysiology, Aarhus University, Aarhus, Denmark.

Transgenic Research
|October 17, 2023
PubMed

Insights

Researchers generated three new zebrafish myoglobin (Mb) knockout models. The mb(Auzf13.2) line showed no developmental or adult phenotypes, suggesting it is a reliable tool for studying Mb's biological role.

Area of Science:

  • Genetics and Molecular Biology
  • Developmental Biology
  • Zebrafish Models

Background:

  • Conflicting results exist regarding in vivo phenotypes of myoglobin (Mb) loss.
  • Previous studies in knockout mice and knockdown zebrafish yielded inconsistent data.
  • A well-characterized Mb knockout model is needed to clarify its biological role.

Purpose of the Study:

  • To generate and characterize novel zebrafish myoglobin (mb) knockout lines.
  • To assess the in vivo phenotypes associated with Mb loss during development and in adulthood.
  • To validate a specific knockout line for future biological studies.

Main Methods:

  • Utilized the CRISPR/Cas system to generate three distinct zebrafish mb knockout lines.
  • Evaluated morphological phenotypes, developmental length, and lethality in embryonic and larval stages.
  • Assessed adult homozygous knockout fish for Mb protein absence, mRNA degradation, viability, length, heart size, and gene expression via transcriptomic analysis.
  • Screened for off-target mutations in 36 loci.

Main Results:

  • None of the three generated mb knockout lines exhibited morphological phenotypes, developmental changes, or lethality.
  • The adult mb(Auzf13.2) homozygous knockout line lacked Mb protein and showed near-complete mb mRNA degradation.
  • Adult mb(Auzf13.2) knockout fish displayed no changes in viability, length, or heart size.
  • Transcriptomic analysis revealed no altered gene expression in adult heart tissue of mb knockout fish.
  • No off-target mutations were detected in the 36 screened loci.

Conclusions:

  • Three distinct zebrafish mb knockout lines were successfully generated with no observable phenotypes during development.
  • The mb(Auzf13.2) line was validated as a robust model, showing no signs of genetic compensation or off-target effects in adult hearts.
  • The mb(Auzf13.2) zebrafish line is a promising candidate for future investigations into the biological functions of myoglobin.

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