Search Criteria |
Gene/Clone | Species | Stage | Anatomy Item | Experimenter |
---|---|---|---|---|
zic2 | xenopus | neuroectoderm [+] |
Too many results?Too few results?
Expression summary for zic2
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Experiment | Species | Images | Stages | Anatomy | Assay |
Fujimi TJ et al. (2006) Assay
Paper |
laevis |
1 image |
NF stage 11.5 to NF stage 33 and 34 | anterior neural fold, anterior neural tube, eye, lens, neural plate, [+] | in situ hybridization |
Nguyen V et al. (2005) Assay
Paper |
laevis |
1 image |
NF stage 14 | anterior neural fold, neural plate | in situ hybridization |
Paganelli AR et al. (2001) Assay
Paper |
laevis |
1 image |
NF stage 14 to NF stage 15 | anterior neural fold, neural groove, neural plate, neural plate border, neuroectoderm | in situ hybridization |
Andreazzoli M et al. (2003) Assay
Paper |
xenopus |
3 images |
NF stage 13 to NF stage 17 | anterior neural fold, neural plate, neuroectoderm | in situ hybridization |
Paper |
xenopus |
1 image |
NF stage 14 | anterior neural fold, neuroectoderm | in situ hybridization |
Paper |
xenopus |
1 image |
NF stage 14 | anterior neural fold, neuroectoderm | in situ hybridization |
Paper |
xenopus |
1 image |
NF stage 20 | anterior neural fold, neural crest | in situ hybridization |
Xenopus Meis3 protein lies at a nexus downstream to Zic1 and Pax3 proteins, regulating multiple cell-fates during early nervo...
Paper |
laevis |
1 image |
NF stage 19 | anterior neural ridge, neural fold | in situ hybridization |
Maternal Xenopus Zic2 negatively regulates Nodal-related gene expression during anteroposterior patterning.
Paper |
laevis |
1 image |
NF stage 18 | chordal neural plate border, neural plate border, pre-chordal neural plate border | in situ hybridization |
foxD5 plays a critical upstream role in regulating neural ectodermal fate and the onset of neural differentiation.
Paper |
laevis |
1 image |
NF stage 12 | neuroectoderm, pre-chordal neural plate | in situ hybridization |
Fujimi TJ et al. (2012) Assay
Paper |
laevis |
1 image |
NF stage 12 to NF stage 14 | anterior neural fold, neuroectoderm | in situ hybridization |
Geminin cooperates with Polycomb to restrain multi-lineage commitment in the early embryo.
Paper |
laevis |
1 image |
NF stage 12 | neuroectoderm | in situ hybridization |
Xenopus Zic4: conservation and diversification of expression profiles and protein function among the Xenopus Zic family.
Paper |
laevis |
1 image |
NF stage 15 | anterior neural ridge, neural fold, neural plate | in situ hybridization |
Xenopus Zic4: conservation and diversification of expression profiles and protein function among the Xenopus Zic family.
Paper |
laevis |
1 image |
NF stage 23 | eye, roof plate | in situ hybridization |
Xenopus Zic4: conservation and diversification of expression profiles and protein function among the Xenopus Zic family.
Paper |
laevis |
1 image |
NF stage 26 | anterior neural tube, eye, neural tube, roof plate | in situ hybridization |
Xenopus Zic family and its role in neural and neural crest development.
Paper |
laevis |
1 image |
NF stage 14 to NF stage 29 and 30 | ciliary marginal zone, diencephalon, forebrain, hindbrain, midbrain, [+] | in situ hybridization |
Xenopus laevis macrophage migration inhibitory factor is essential for axis formation and neural development.
Paper |
laevis |
1 image |
NF stage 32 | brain, spinal cord | in situ hybridization |
Olguín P et al. (2006) Assay
Paper |
laevis |
1 image |
NF stage 14 | anterior neural fold, anterior neural ridge, neural plate border | in situ hybridization |
Six1 promotes a placodal fate within the lateral neurogenic ectoderm by functioning as both a transcriptional activator and ...
Paper |
laevis |
1 image |
NF stage 17 to NF stage 18 | chordal neural plate border, neural crest, neural plate border, pre-chordal neural plate border | in situ hybridization |
Janesick A et al. (2013) Assay
Paper |
laevis |
1 image |
NF stage 14 | cranial neural crest, neural plate border | in situ hybridization |
Yan B et al. (2015) Assay
Paper |
laevis |
1 image |
NF stage 20 | neural tube, optic vesicle | in situ hybridization |
Pa2G4 is a novel Six1 co-factor that is required for neural crest and otic development.
Paper |
laevis |
1 image |
NF stage 18 | anterior placodal area, chordal neural plate, neural plate, neuroectoderm, pre-chordal neural plate, [+] | in situ hybridization |
Pa2G4 is a novel Six1 co-factor that is required for neural crest and otic development.
Paper |
laevis |
1 image |
NF stage 16 | anterior placodal area, chordal neural plate border, neural plate border, posterior placodal area, pre-chordal neural plate border, [+] | in situ hybridization |
On becoming neural: what the embryo can tell us about differentiating neural stem cells.
Paper |
laevis |
1 image |
NF stage 11 | neuroectoderm | in situ hybridization |
Wbp2nl has a developmental role in establishing neural and non-neural ectodermal fates.
Paper |
laevis |
1 image |
NF stage 11 to NF stage 18 | neural plate, neural plate border, neuroectoderm | in situ hybridization |
Marchak A et al. (2017) Assay
Paper |
laevis |
3 images |
NF stage 18 | neural plate, neural plate border | in situ hybridization |
Six1 proteins with human branchio-oto-renal mutations differentially affect cranial gene expression and otic development.
Paper |
laevis |
1 image |
NF stage 16 to NF stage 18 | neural crest, neural plate border | in situ hybridization |
Sullivan CH et al. (2019) Assay
Paper |
laevis |
1 image |
NF stage 16 to NF stage 18 | neural crest, neural plate | in situ hybridization |
Mcrs1 interacts with Six1 to influence early craniofacial and otic development.
Paper |
laevis |
1 image |
NF stage 13 to NF stage 18 | neural crest, neural plate | in situ hybridization |
NIH_XGC_tropBrn4
Unigene tropicalis cDNA library Xenopus IMAGE cDNA Library |
tropicalis | unspecified stage | brain | cDNA Library |
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