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snai2xenopus head region [+] 

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Expression summary for snai2

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Experiment Species Images Stages Anatomy Assay
Harland Lab Assay

Harland Lab
tropicalis
3 images
NF stage 26 to NF stage 33 and 34 brain, eye, forebrain, head, head region, [+] in situ hybridization
Neural crest migration requires the activity of the extracellular sulphatases XtSulf1 and XtSulf2.

Paper
tropicalis
2 images
NF stage 28 to NF stage 29 and 30 hindbrain, periocular region in situ hybridization
Expression of Xenopus snail in mesoderm and prospective neural fold ectoderm.

Paper
laevis
1 image
NF stage 22 to NF stage 44 branchial arch in situ hybridization
Expression of Xenopus snail in mesoderm and prospective neural fold ectoderm.

Paper
laevis
1 image
NF stage 22 to NF stage 24 brain, eye, forebrain, pharyngeal arch in situ hybridization
Expression of Xenopus snail in mesoderm and prospective neural fold ectoderm.

Paper
laevis
1 image
NF stage 39 branchial arch, head in situ hybridization
Paraxial T-box genes, Tbx6 and Tbx1, are required for cranial chondrogenesis and myogenesis.

Paper
laevis
1 image
NF stage 19 to NF stage 27 head in situ hybridization
Paraxial T-box genes, Tbx6 and Tbx1, are required for cranial chondrogenesis and myogenesis.

Paper
laevis
1 image
NF stage 22 head in situ hybridization
Hypaxial muscle migration during primary myogenesis in Xenopus laevis.

Paper
laevis
1 image
NF stage 37 and 38 head in situ hybridization
Williams Syndrome Transcription Factor is critical for neural crest cell function in Xenopus laevis.

Paper
laevis
1 image
NF stage 29 and 30 brain, branchial arch, head region in situ hybridization
Induction of the prospective neural crest of Xenopus.

Paper
laevis
1 image
NF stage 12 to NF stage 26 pharyngeal arch in situ hybridization
The F-box protein Cdc4/Fbxw7 is a novel regulator of neural crest development in Xenopus laevis.

Paper
laevis
1 image
NF stage 26 to NF stage 33 and 34 branchial arch, hyoid arch, mandibular arch, pharyngeal arch in situ hybridization

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