Fertile offspring derived from mammalian eggs lacking either animal or vegetal poles
Open Access
- 1 December 1998
- journal article
- Published by The Company of Biologists in Development
- Vol. 125 (23), 4803-4808
- https://doi.org/10.1242/dev.125.23.4803
Abstract
In all animals so far tested, removing either pole of the undivided egg prevents normal development: embryos may arrest early, lack organs, or the adults may be sterile. These experiments have shown that spatial patterning of the egg is of utmost importance for subsequent development. However, the significance of spatial patterning in mammalian eggs is still controversial. To test the importance of egg polarity in the mouse a substantial amount of material either from the animal (polar body-associated) or the vegetal (opposite) pole of the fertilised egg was removed. One pole of the egg was cut away manually with a glass needle and the eggs were allowed to develop in vitro. Both kinds of surgical operation permit the development of blastocysts, which, after transfer to the uteri of pseudo-pregnant foster mothers, can produce viable offspring. Furthermore, these develop into fertile adult mice. I conclude that mouse eggs have no essential components that are localised uniquely to the animal or the vegetal pole and, therefore, do not rely for their axial development on maternal determinants that are so localised in the fertilised egg. Thus the mammalian egg appears to be very unusual in the animal kingdom in that it establishes the embryonic axes after the zygote has begun development.Keywords
This publication has 15 references indexed in Scilit:
- A Xenopus DAZ-like gene encodes an RNA component of germ plasm and is a functional homologue of Drosophila bouleDevelopment, 1998
- Oocyte influences on early development: the regulatory proteins leptin and STAT3 are polarized in mouse and human oocytes and differentially distributed within the cells of the preimplantation stage embryoMolecular Human Reproduction, 1997
- Oocyte polarity and cell determination in early mammalian embryosMolecular Human Reproduction, 1997
- The allocation of early blastomeres to the ectoderm and endoderm is variable in the sea urchin embryoDevelopment, 1997
- The origin of pattern and polarity in the Drosophila embryoCell, 1992
- Ultraviolet irradiation during ooplasmic segregation prevents gastrulation, sensory cell induction, and axis formation in the ascidian embryoDevelopmental Biology, 1990
- All components required for the eventual activation of muscle-specific actin genes are localized in the subequatorial region of an uncleaved amphibian egg.Proceedings of the National Academy of Sciences, 1985
- Effect of various procedures on the viability of mouse embryos containing half the normal number of blastomeresReproduction, 1983
- Studies of the developmental potential of 4‐ and 8‐cell stage mouse blastomeresJournal of Experimental Zoology, 1977
- Haploid mouse blastocysts developed from bisected zygotesNature, 1976