Related Experiment Video
Updated: Jun 6, 2026

An Ectopic Chemokine Expression Model for Testing Macrophage Recruitment In Vivo
Published on: September 25, 2019
Irf8 regulates macrophage versus neutrophil fate during zebrafish primitive myelopoiesis
1State Key Laboratory of Molecular Neuroscience, Department of Biochemistry, Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong, People's Republic of China.
Abstract:
In vertebrates, myeloid cells comprise polymorphonuclear and mononuclear lineages that arise from 2 successive waves of development: a transitory primitive wave giving rise to limited myeloid cells during embryonic stage and a definitive wave capable of producing myeloid cells throughout the fetal and adult life. One key unresolved question is what factors dictate polymorphonuclear versus mononuclear lineage fates during myelopoiesis. Here we show that during zebrafish embryogenesis interferon regulatory factor-8 (irf8) is expressed specifically in macrophages but not neutrophils. Suppression of Irf8 function in zebrafish causes a depletion of macrophages and an enhanced output of neutrophils but does not affect the overall number, proliferation, and survival of primitive myeloid cells. These data indicate that the skewed myeloid lineage development in Irf8 knockdown embryos results from a cell-fate switching. Such a conclusion is further supported by the observation showing that overexpression of Irf8 promotes macrophage formation at the expense of neutrophil development. Genetic epistasis analysis reveals that Irf8 acts downstream of Pu.1 but is insufficient to promote macrophage development in the absence of Pu.1. Our findings demonstrate that Irf8 is a critical determinant for neutrophil versus macrophage fate choice during zebrafish primitive myelopoiesis.
Insights
Interferon regulatory factor-8 (Irf8) controls myeloid cell development in zebrafish. Irf8 promotes macrophage formation while suppressing neutrophil production during primitive myelopoiesis.
Area of Science:
- Developmental biology
- Immunology
- Genetics
Background:
- Vertebrate myeloid cells develop from primitive and definitive waves.
- Determining factors for polymorphonuclear versus mononuclear lineage fates in myelopoiesis remains unclear.
Purpose of the Study:
- Investigate the role of interferon regulatory factor-8 (irf8) in zebrafish primitive myelopoiesis.
- Elucidate the factors governing neutrophil versus macrophage fate determination.
Main Methods:
- Zebrafish embryogenesis model.
- Irf8 gene function suppression (knockdown) and overexpression studies.
- Genetic epistasis analysis involving Pu.1.
Main Results:
- Irf8 is specifically expressed in macrophages, not neutrophils, during zebrafish embryogenesis.
- Suppression of Irf8 leads to fewer macrophages and more neutrophils.
- Overexpression of Irf8 enhances macrophage development at the expense of neutrophils.
- Irf8 acts downstream of Pu.1 but requires Pu.1 for macrophage development.
Conclusions:
- Interferon regulatory factor-8 (irf8) is a critical determinant of neutrophil versus macrophage fate choice.
- Irf8-mediated cell-fate switching underlies skewed myeloid lineage development.

