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Gene/CloneSpeciesStageAnatomy ItemExperimenter
tbxtxenopus mesoderm [+] 

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Expression summary for tbxt

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Experiment Species Images Stages Anatomy Assay
Tbx2 is required for the suppression of mesendoderm during early Xenopus development.

Paper
laevis
1 image
NF stage 10.5 mesoderm in situ hybridization
The Wnt inhibitor Dkk1 is required for maintaining the normal cardiac differentiation program in Xenopus laevis.

Paper
laevis
1 image
NF stage 10 mesoderm in situ hybridization
Candidate Heterotaxy Gene FGFR4 Is Essential for Patterning of the Left-Right Organizer in Xenopus.

Paper
tropicalis
1 image
NF stage 10 to NF stage 12 circumblastoporal collar, mesoderm in situ hybridization
A YWHAZ Variant Associated With Cardiofaciocutaneous Syndrome Activates the RAF-ERK Pathway.

Paper
laevis
1 image
NF stage 10 to NF stage 11 mesoderm in situ hybridization
Kho M et al. (2019) Assay

Paper
laevis
1 image
NF stage 15 circumblastoporal collar, mesoderm, notochord in situ hybridization
Lee H et al. (2020) Assay

Paper
laevis
1 image
NF stage 29 and 30 to NF stage 31 chordoneural hinge, posterior wall of neurenteric canal in situ hybridization
A systemic cell cycle block impacts stage-specific histone modification profiles during Xenopus embryogenesis.

Paper
laevis
1 image
NF stage 32 notochord in situ hybridization
Sempou E et al. (2022) Assay

Paper
tropicalis
1 image
NF stage 10 mesoderm in situ hybridization
RAF1 deficiency causes a lethal syndrome that underscores RTK signaling during embryogenesis.

Paper
laevis
1 image
NF stage 10.5 to NF stage 28 chordoneural hinge, mesoderm in situ hybridization
FGF-mediated establishment of left-right asymmetry requires Rab7 function in the dorsal mesoderm in Xenopus.

Paper
laevis
1 image
NF stage 10.5 mesoderm in situ hybridization
Kreis J et al. (2022) Assay

Paper
laevis
1 image
NF stage 10 to NF stage 11 mesoderm in situ hybridization

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