Anatomy of axolotl flank integument during limb bud development with special reference to a transcutaneous current predicting limb formation
- 1 November 1987
- journal article
- research article
- Published by Wiley in Journal of Experimental Zoology
- Vol. 244 (2) , 203-214
- https://doi.org/10.1002/jez.1402440204
Abstract
We have compared the anatomy of immature axolotl integument from limb-forming regions with adjacent non-limb-forming regions of the flank, concentrating on the earliest stages of limb bud development. We have extended these observations to include prominent buds just prior to their differentiation. At the ultrastructural level, we note striking differences between these two regions of skin, including a complete loss of hemidesmosomes and tonofilaments in the basal cells of the epidermis; a marked deterioration of the basal lamella; and focal areas of desquamating cells in the apical regions of the bud—all characteristics of limb-forming regions. These observations were made in the same larvae which provided measurements of a steady endogenous electric (ionic) current that either was coincident with or predicted the area of limb bud outgrowth (Borgens et al.: J. Exp. Zool. 228:491–503, 1983). We discuss these physiological measurements, the changes in the anatomy of the bud-forming region, and the relevance of these observations to our theory of early limb formation.This publication has 17 references indexed in Scilit:
- Are limb development and limb regeneration both initiated by an integumentary wounding?Differentiation, 1984
- Stump currents in regenerating salamanders and newtsJournal of Experimental Zoology, 1984
- A steady efflux of ionic current predicts hind limb development in the axolotlJournal of Experimental Zoology, 1983
- What Is the Role of Naturally Produced Electric Current in Vertebrate Regeneration and Healing?Published by Elsevier ,1982
- The role of ionic currents in establishing developmental patternPhilosophical Transactions of the Royal Society of London. B, Biological Sciences, 1981
- The direction of growth of differentiating neurones and myoblasts from frog embryos in an applied electric field.The Journal of Physiology, 1981
- Role of subdermal current shunts in the failure of frogs to regenerateJournal of Experimental Zoology, 1979
- THE INFLUENCE OF TISSUE INTERACTIONS AND EXTRACELLULAR MACROMOLECULES ON THE CONTROL OF PHENOTYPIC EXPRESSION AND SYNTHETIC CAPACITY OF BONE AND CARTILAGEPublished by Elsevier ,1975
- AN ULTRASENSITIVE VIBRATING PROBE FOR MEASURING STEADY EXTRACELLULAR CURRENTSThe Journal of cell biology, 1974
- FINE STRUCTURE OF DESMOSOMES, HEMIDESMOSOMES, AND AN ADEPIDERMAL GLOBULAR LAYER IN DEVELOPING NEWT EPIDERMISThe Journal of cell biology, 1966