Search Criteria |
Gene/Clone | Species | Stage | Anatomy Item | Experimenter |
---|---|---|---|---|
hoxc6 | xenopus | mesoderm [+] |
Too many results?Too few results?
Expression summary for hoxc6
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Experiment | Species | Images | Stages | Anatomy | Assay |
Bardine N et al. (2009) Assay
Paper |
laevis |
2 images |
NF stage 12 to NF stage 33 and 34 | chordoneural hinge, involuted dorsal mesoderm, mesoderm, paraxial mesoderm, pronephric duct, [+] | in situ hybridization |
Durston Lab Assay
Durston Lab (retired) |
laevis |
1 image |
NF stage 12.5 | circumblastoporal collar, mesoderm | in situ hybridization |
Durston Lab Assay
Durston Lab (retired) |
laevis |
1 image |
NF stage 26 | intermediate mesoderm, tail bud | in situ hybridization |
In der Rieden PM et al. (2009) Assay
Paper |
laevis |
1 image |
NF stage 13 | circumblastoporal collar, mesoderm | in situ hybridization |
Paper |
laevis |
1 image |
NF stage 22 | mesoderm | in situ hybridization |
Paper |
laevis |
1 image |
NF stage 10.5 to NF stage 12 | involuted dorsal mesoderm, mesoderm | in situ hybridization |
Paper |
laevis |
1 image |
NF stage 17 | mesoderm | in situ hybridization |
Retinoid signalling is required for information transfer from mesoderm to neuroectoderm during gastrulation.
Paper |
laevis |
1 image |
NF stage 13 | mesoderm | in situ hybridization |
Retinoid signalling is required for information transfer from mesoderm to neuroectoderm during gastrulation.
Paper |
laevis |
1 image |
NF stage 32 | presomitic mesoderm | in situ hybridization |
Retinoid signalling is required for information transfer from mesoderm to neuroectoderm during gastrulation.
Paper |
laevis |
1 image |
NF stage 12 | involuted dorsal mesoderm, involuted ventral mesoderm | in situ hybridization |
XMeis3 is necessary for mesodermal Hox gene expression and function.
Paper |
laevis |
1 image |
NF stage 13 | circumblastoporal collar, involuted dorsal mesoderm | in situ hybridization |
XMeis3 is necessary for mesodermal Hox gene expression and function.
Paper |
laevis |
1 image |
NF stage 11 | involuted dorsal mesoderm | in situ hybridization |
XMeis3 is necessary for mesodermal Hox gene expression and function.
Paper |
laevis |
1 image |
NF stage 12 | circumblastoporal collar, mesoderm | in situ hybridization |
Wacker SA et al. (2004) Assay
Paper |
laevis |
2 images |
NF stage 12 to NF stage 26 | circumblastoporal collar, presomitic mesoderm, presumptive paraxial mesoderm, pronephric duct, tail bud | in situ hybridization |
Hox collinearity - a new perspective.
Paper |
laevis |
1 image |
NF stage 12 to NF stage 12.5 | circumblastoporal collar | in situ hybridization |
Interaction between X-Delta-2 and Hox genes regulates segmentation and patterning of the anteroposterior axis.
Paper |
laevis |
1 image |
NF stage 21 | mesoderm | in situ hybridization |
Interaction between X-Delta-2 and Hox genes regulates segmentation and patterning of the anteroposterior axis.
Paper |
laevis |
1 image |
NF stage 11.5 to NF stage 20 | circumblastoporal collar, involuted dorsal mesoderm, paraxial mesoderm | in situ hybridization |
Interaction between X-Delta-2 and Hox genes regulates segmentation and patterning of the anteroposterior axis.
Paper |
laevis |
1 image |
NF stage 11 | circumblastoporal collar, lower blastopore lip | in situ hybridization |
Interaction between X-Delta-2 and Hox genes regulates segmentation and patterning of the anteroposterior axis.
Paper |
laevis |
1 image |
NF stage 11.5 to NF stage 20 | mesoderm | in situ hybridization |
Interaction between X-Delta-2 and Hox genes regulates segmentation and patterning of the anteroposterior axis.
Paper |
laevis |
1 image |
NF stage 12.5 | circumblastoporal collar | in situ hybridization |
The initiation of Hox gene expression in Xenopus laevis is controlled by Brachyury and BMP-4.
Paper |
laevis |
1 image |
NF stage 11 | involuted dorsal mesoderm, mesoderm | in situ hybridization |
The initiation of Hox gene expression in Xenopus laevis is controlled by Brachyury and BMP-4.
Paper |
laevis |
1 image |
NF stage 11.5 | mesoderm | in situ hybridization |
The initiation of Hox gene expression in Xenopus laevis is controlled by Brachyury and BMP-4.
Paper |
laevis |
1 image |
NF stage 11 | involuted dorsal mesoderm | in situ hybridization |
The initiation of Hox gene expression in Xenopus laevis is controlled by Brachyury and BMP-4.
Paper |
laevis |
1 image |
NF stage 11 | mesoderm | in situ hybridization |
Wacker SA et al. (2004) Assay
Paper |
laevis |
1 image |
NF stage 12 | mesoderm | in situ hybridization |
115 kDa protein from Xenopus laevis embryos recognized by antibodies directed against the Xenopus homeoprotein XIHbox 1.
|
laevis |
1 image |
NF stage 25 | somite | immunohistochemistry |
Patient Lab |
laevis |
4 images |
NF stage 29 and 30 to NF stage 31 | intermediate mesoderm, presomitic mesoderm, pronephric kidney, tail bud | in situ hybridization |
Time space translation: a hox mechanism for vertebrate a-p patterning.
Paper |
laevis |
1 image |
NF stage 11.5 to NF stage 12.5 | circumblastoporal collar | in situ hybridization |
FoxA4 favours notochord formation by inhibiting contiguous mesodermal fates and restricts anterior neural development in Xen...
Paper |
laevis |
1 image |
NF stage 19 | caudal presomitic mesoderm, presomitic mesoderm | in situ hybridization |
Soeren S Lienkamp |
laevis |
2 images |
NF stage 33 and 34 to NF stage 37 and 38 | chordoneural hinge, early distal tubule, intersomitic vessel, late distal tubule, mesoderm, [+] | in situ hybridization |
Collinear Hox-Hox interactions are involved in patterning the vertebrate anteroposterior (A-P) axis.
Paper |
laevis |
1 image |
NF stage 28 | epaxial muscle, somite, tail bud | in situ hybridization |
Retinoic acid induces changes in the localization of homeobox proteins in the antero-posterior axis of Xenopus laevis embryos.
|
laevis |
1 image |
NF stage 29 and 30 | pronephric nephrostome | immunohistochemistry |
Retinoic acid induces changes in the localization of homeobox proteins in the antero-posterior axis of Xenopus laevis embryos.
|
laevis |
1 image |
NF stage 37 and 38 | somite | immunohistochemistry |
A gradient of homeodomain protein in developing forelimbs of Xenopus and mouse embryos.
|
laevis |
2 images |
NF stage 41 to NF stage 51 | lateral plate mesoderm, mesoderm, somatic layer of lateral plate mesoderm | immunohistochemistry |
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