Search Criteria |
Gene/Clone | Species | Stage | Anatomy Item | Experimenter |
---|---|---|---|---|
nodal3.1 | xenopus | involuted dorsal mesoderm [+] |
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Expression summary for nodal3.1
Results 1 - 8 of 8 resultsPage(s): 1
Experiment | Species | Images | Stages | Anatomy | Assay |
Khokha MK et al. (2005) Assay
Paper |
tropicalis |
![]() 1 image |
NF stage 10.5 to NF stage 11 | involuted dorsal mesoderm | in situ hybridization |
Hex acts with beta-catenin to regulate anteroposterior patterning via a Groucho-related co-repressor and Nodal.
Paper |
laevis |
![]() 1 image |
NF stage 10.5 | involuted dorsal mesoderm | in situ hybridization |
The Toll/IL-1 receptor binding protein MyD88 is required for Xenopus axis formation.
Paper |
laevis |
![]() 1 image |
NF stage 10.5 | axial mesoderm | in situ hybridization |
Komiya Y et al. (2014) Assay
Paper |
laevis |
![]() 1 image |
NF stage 10.5 | involuted dorsal mesoderm | in situ hybridization |
Kdm2a/b Lysine Demethylases Regulate Canonical Wnt Signaling by Modulating the Stability of Nuclear β-Catenin.
Paper |
laevis |
![]() 2 images |
NF stage 10.5 | involuted dorsal mesoderm | in situ hybridization |
Acosta H et al. (2015) Assay
Paper |
laevis |
![]() 1 image |
NF stage 10.5 | involuted dorsal mesoderm | in situ hybridization |
NF2/Merlin is required for the axial pattern formation in the Xenopus laevis embryo.
Paper |
laevis |
![]() 1 image |
NF stage 10.5 | involuted dorsal mesoderm | in situ hybridization |
Mukherjee S et al. (2020) Assay
Paper |
tropicalis |
![]() 1 image |
NF stage 10.5 | dorsal endoderm | in situ hybridization |
Page(s): 1