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dctxenopus epidermis [+] 

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Expression summary for dct

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Experiment Species Images Stages Anatomy Assay
Bonano M et al. (2008) Assay

Paper
laevis
1 image
NF stage 25 epidermis, melanophore in situ hybridization
Nichane M et al. (2008) Assay

Paper
tropicalis
1 image
NF stage 28 melanophore in situ hybridization
Hairy2-Id3 interactions play an essential role in Xenopus neural crest progenitor specification.

Paper
tropicalis
1 image
NF stage 35 and 36 melanophore in situ hybridization
Sox10 regulates the development of neural crest-derived melanocytes in Xenopus.

Paper
laevis
1 image
NF stage 27 to NF stage 32 epidermis in situ hybridization
Sox10 regulates the development of neural crest-derived melanocytes in Xenopus.

Paper
laevis
1 image
NF stage 40 melanophore in situ hybridization
Regeneration of neural crest derivatives in the Xenopus tadpole tail.

Paper
laevis
1 image
NF stage 42 melanophore in situ hybridization
Maczkowiak F et al. (2010) Assay

Paper
laevis
1 image
NF stage 33 and 34 melanophore in situ hybridization
Kawasaki-Nishihara A et al. (2011) Assay

Paper
laevis
1 image
NF stage 39 melanophore in situ hybridization
Modulation of potassium channel function confers a hyperproliferative invasive phenotype on embryonic stem cells.

Paper
tropicalis
1 image
NF stage 26 to NF stage 28 melanophore in situ hybridization
no privacy, a Xenopus tropicalis mutant, is a model of human Hermansky-Pudlak Syndrome and allows visualization of internal ...

Paper
tropicalis
1 image
NF stage 33 and 34 melanophore in situ hybridization
A functional approach to understanding the role of NCKX5 in Xenopus pigmentation.

Paper
laevis
2 images
NF stage 25 to NF stage 37 and 38 melanophore in situ hybridization
The tetraspanin Cd63 is required for eye morphogenesis in Xenopus.

Paper
laevis
1 image
NF stage 35 and 36 melanophore in situ hybridization

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