Click here to close Hello! We notice that you are using Internet Explorer, which is not supported by Xenbase and may cause the site to display incorrectly. We suggest using a current version of Chrome, FireFox, or Safari.
Search Criteria
Gene/CloneSpeciesStageAnatomy ItemExperimenter
ptf1axenopus retinal neural layer 

Too many results?Too few results?

Experiment details for ptf1a

Prdm13 forms a feedback loop with Ptf1a and is required for glycinergic amacrine cell genesis in the Xenopus Retina.

Prdm13 forms a feedback loop with Ptf1a and is required for glycinergic amacrine cell genesis in the Xenopus Retina.

Good quality Poor quality
Gene Clone Species Stages Anatomy
ptf1a.S laevis NF stage 35 and 36 to NF stage 40 retinal neural layer

Display additional annotations [+]
  Fig. 5. Prdm13 expression in the retina upon Ptf1a gain and loss of function. a Double fluorescent in situ hybridization with prdm13 (red) and ptf1a (green) probes on wild type retina at stage 35/36 and 40. Right panels are enlargement of central or peripheral retina (white squares). Arrows show double labelled cells. b Quantification of the percentage of ptf1a + cells among the prdm13 + cell population (top graph) and the percentage of prdm13 + cells among the ptf1a + cell population (bottom graph) at different stages of retinogenesis. Data are presented as mean ± SEM. Number of analysed sections is indicated in each bar. c Analysis of gad1, prdm13 and glyt1 expression on stage 41 retinal transversal sections following whole mount in situ hybridization on embryos injected with ptf1a-MO, control-MO, GFP mRNA (control) or ptf1a-GR mRNA. Dexamethasone was added at stage 21/22 to activate the Ptf1a-GR fusion protein. Scale bar represents 100 μm