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Anteroposterior neural tissue specification by activin-induced mesoderm
Summary
Activin, a transforming growth factor beta superfamily member, induces mesodermal and neural tissues in Xenopus embryos. Its concentration dictates the anteroposterior and dorsoventral patterning of these induced tissues.
Area of Science:
- Developmental biology
- Embryology
- Molecular signaling
Background:
- Activin, a TGF-β superfamily member, induces mesodermal and neural tissues in Xenopus animal caps.
- Activin acts as a morphogen, with dose-dependent effects on dorsoventral axis patterning.
- Previous studies suggested neural induction by activin might be an indirect effect of mesodermal signaling.
Purpose of the Study:
- To directly demonstrate that induced mesoderm signals to uninduced ectoderm to form neural tissues.
- To investigate if activin concentration determines the anteroposterior properties of induced mesoderm.
- To explore the relationship between anteroposterior and dorsoventral patterning signals.
Main Methods:
- Xenopus laevis animal cap explants were treated with varying concentrations of activin.
- Cell mixing experiments were used to infer signaling pathways.
- Analysis of gene expression markers for mesodermal and neural tissues, and anteroposterior positional values.
Main Results:
- Direct evidence confirmed that induced mesoderm signals to uninduced ectoderm to generate neural tissues.
- Activin dose was found to control the anteroposterior positional value of induced mesoderm.
- Lower activin doses induced posterior mesodermal markers, while higher doses induced anterior markers, including neuroinductive properties.
Conclusions:
- Activin dose is critical for both dorsoventral and anteroposterior patterning of induced mesoderm in Xenopus.
- The findings provide insights into the mechanisms of axis formation and tissue patterning during embryonic development.
- This study clarifies the role of mesodermal signaling in neural induction and axis patterning.