Macrophage migration inhibitory factor (MIF) is essential for development of zebrafish, Danio rerio

Kanako Ito1, Yasutoshi Yoshiura, Mitsuru Ototake

  • 1Laboratory of Fish Pathology, Department of Veterinary Medicine, College of Bioresource Sciences, Nihon University, Kameino 1866, Fujisawa, Kanagawa 252-8510, Japan.

Insights

Macrophage migration inhibitory factor (MIF) is crucial for zebrafish embryonic development. Knockdown studies reveal MIF is essential for tissue differentiation, cell proliferation, and preventing apoptosis in developing fish embryos.

Area of Science:

  • Developmental Biology
  • Immunology
  • Zebrafish Models

Background:

  • Macrophage migration inhibitory factor (MIF) is a cytokine known for immune functions.
  • MIF's role in embryonic development is established in higher vertebrates, but unknown in fish.
  • Previous studies reported MIF's immunological functions in adult fish.

Purpose of the Study:

  • To investigate the function of MIF during embryonic development in zebrafish.
  • To analyze the expression patterns and functional role of the zebrafish MIF gene.

Main Methods:

  • Antisense morpholino-mediated knockdown (morpholino oligonucleotide-MO) of the zebrafish MIF gene.
  • Whole-mount in situ hybridization to detect MIF mRNA expression.
  • Histological analysis and acridine orange staining to assess apoptosis.
  • Proliferating cell nuclear antigen (PCNA) staining to evaluate cell proliferation.

Main Results:

  • Zebrafish MIF mRNA is expressed in developing eyes, tectum, branchial arches, pectoral fins, liver, and gut during tissue differentiation.
  • MIF knockdown embryos (morphants) showed malformed eyes, abnormal brain swelling, and undeveloped cartilage and fins.
  • Increased apoptosis and reduced cell proliferation were observed in the eyes and neural tissues of MIF morphants.

Conclusions:

  • MIF is essential for normal embryonic development in teleosts (fish).
  • Zebrafish MIF acts as a growth factor, promoting proliferation and differentiation of embryonic tissues.
  • These findings highlight MIF's conserved role in vertebrate embryonic development.

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