PLoS ONE (Jan 2017)

The Zebrafish Anillin-eGFP Reporter Marks Late Dividing Retinal Precursors and Stem Cells Entering Neuronal Lineages.

  • Meret Cepero Malo,
  • Anne-Laure Duchemin,
  • Luca Guglielmi,
  • Eva Patzel,
  • Saadettin Sel,
  • Gerd U Auffarth,
  • Matthias Carl,
  • Lucia Poggi

DOI
https://doi.org/10.1371/journal.pone.0170356
Journal volume & issue
Vol. 12, no. 1
p. e0170356

Abstract

Read online

Monitoring cycling behaviours of stem and somatic cells in the living animal is a powerful tool to better understand tissue development and homeostasis. The tg(anillin:anillin-eGFP) transgenic line carries the full-length zebrafish F-actin binding protein Anillin fused to eGFP from a bacterial artificial chromosome (BAC) containing Anillin cis-regulatory sequences. Here we report the suitability of the Anillin-eGFP reporter as a direct indicator of cycling cells in the late embryonic and post-embryonic retina. We show that combining the anillin:anillin-eGFP with other transgenes such as ptf1a:dsRed and atoh7:gap-RFP allows obtaining spatial and temporal resolution of the mitotic potentials of specific retinal cell populations. This is exemplified by the analysis of the origin of the previously reported apically and non-apically dividing late committed precursors of the photoreceptor and horizontal cell layers.