Production of medakafish chimeras from a stable embryonic stem cell line
- 31 March 1998
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 95 (7) , 3679-3684
- https://doi.org/10.1073/pnas.95.7.3679
Abstract
Embryonic stem (ES) cell lines provide a unique tool for introducing targeted or random genetic alterations through gene replacement, insertional mutagenesis, and gene addition because they offer the possibility for in vitro selection for the desired, but extremely rare, recombinant genotypes. So far only mouse blastocyst embryos are known to have the competence to give rise to such ES cell lines. We recently have established a stable cell line (Mes1) from blastulae of the medakafish (Oryzias latipes) that shows all characteristics of mouse ES cells in vitro. Here, we demonstrate that Mes1 cells also have the competence for chimera formation; 90% of host blastulae transplanted with Mes1 cells developed into chimeric fry. This high frequency was not compromised by cryostorage or DNA transfection of the donor cells. The Mes1 cells contributed to numerous organs derived from all three germ layers and differentiated into various types of functional cells, most readily observable in pigmented chimeras. These features suggest the possibility that Mes1 cells may be a fish equivalent of mouse ES cells and that medaka can be used as another system for the application of the ES cell technology.Keywords
This publication has 28 references indexed in Scilit:
- Pluripotency and differentiation of embryonic stem cell lines from the medakafish (Oryzias latipes)Mechanisms of Development, 1996
- Sheep cloned by nuclear transfer from a cultured cell lineNature, 1996
- Evolutionary Origin of a Parthenoform, The Amazon Molly Poecilia formosa, on the Basis of a Molecular GenealogyEvolution, 1995
- Expression of the tyrosinase-encoding gene in a colorless melanophore mutant of the medaka fish, Oryzias latipesGene, 1994
- Development of a heavy metal-inducible fish-specific expression vector for gene transfer in vitro and in vivoAquaculture, 1993
- Isolation and cultivation of blastocyst‐derived stem cell lines from american mink (Mustela vison)Molecular Reproduction and Development, 1992
- Gene targeting and gene trap screens using embryonic stem cells: New approaches to mammalian developmentBioEssays, 1991
- Fish as Model SystemsScience, 1989
- Establishment of hamster blastocyst-derived embryonic stem (ES) cellsDevelopmental Biology, 1988
- Establishment in culture of pluripotential cells from mouse embryosNature, 1981