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wnt8axenopus vegetal yolk mass [+] 

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Expression summary for wnt8a

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Experiment Species Images Stages Anatomy Assay
Hong CS et al. (2008) Assay

Paper
laevis
3 images
NF stage 12 to NF stage 15 involuted ventral mesoderm in situ hybridization
Barton CE et al. (2009) Assay

Paper
laevis
1 image
NF stage 10.5 involuted ventral mesoderm in situ hybridization
Zorn Xl.49_wnt8a Assay

Zorn Lab
laevis
5 images
NF stage 10.5 to NF stage 23 circumblastoporal collar, involuted ventral mesoderm in situ hybridization
A gene regulatory network controlling hhex transcription in the anterior endoderm of the organizer.

Paper
laevis
1 image
NF stage 10.5 involuted ventral mesoderm in situ hybridization
Suppression of GATA factor activity causes axis duplication in Xenopus.

Paper
laevis
1 image
NF stage 10.5 involuted ventral mesoderm in situ hybridization
Christian JL et al. (1991) Assay

Paper
laevis
1 image
NF stage 10 to NF stage 11 involuted ventral mesoderm in situ hybridization
Expression of Pax-3 in the lateral neural plate is dependent on a Wnt-mediated signal from posterior nonaxial mesoderm.

Paper
laevis
1 image
NF stage 11.5 involuted ventral mesoderm in situ hybridization
Kruppel-like factor family genes are expressed during Xenopus embryogenesis and involved in germ layer formation and body ax...

Paper
laevis
1 image
NF stage 10.5 lower blastopore lip in situ hybridization
Tissue- and stage-specific Wnt target gene expression is controlled subsequent to β‑catenin recruitment.

Paper
laevis
1 image
NF stage 10 to NF stage 10.5 vegetal yolk mass in situ hybridization
Injected Xwnt-8 RNA acts early in Xenopus embryos to promote formation of a vegetal dorsalizing center.

Paper
laevis
1 image
NF stage 11 to NF stage 16 circumblastoporal collar, involuted ventral mesoderm, lower blastopore lip in situ hybridization
Mukherjee S et al. (2020) Assay

Paper
tropicalis
2 images
NF stage 10.5 involuted ventral mesoderm in situ hybridization

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