Clonal analysis of cardiac morphogenesis in the chicken embryo using a replication‐defective retrovirus: I. Formation of the ventricular myocardium
Open Access
- 1 January 1992
- journal article
- research article
- Published by Wiley in Developmental Dynamics
- Vol. 193 (1) , 11-23
- https://doi.org/10.1002/aja.1001930104
Abstract
Cells of the precardiac mesoderm (stages 4–6) and dividing myocytes of early hearts (stages 10–15) were tagged with a replication-incompetent retrovirus (CXL) (Mikawa et al., 1991 b) encoding bacterial β-galactosidase (β-gal). Two protocols were used to infect the cardiogenic cells. (1) Small blocks (∼50 μm2) of anterolateral mesoderm were dissected from gastrula-stage embryos (stages 4–6) and incubated in liquid medium containing the retrovirus. After removal of CXL, the tissues were dispersed into single-cell suspensions and pressure injected into the precardiac areas of recipient embryos (stages 4–6). Such embryos were then incubated in vitro at 37°C for 2 days (New, 1968), and those embryos with beating hearts were fixed for X-gal histochemistry and paraffin serial sectioning. (2) CXL was pressure injected in ovo (embryonic stages 4–15) into cardiogenic tissues and the eggs subsequently returned to an incubator. At selected stages of development embryos or whole hearts were fixed, stained with X-gal, and serially sectioned after paraffin embedding. The first method showed that (1) cells of the precardiac mesoderm could be infected with the retrovirus, (2) the transplanted cells would differentiate into beating myocytes, and (3) β-gal expression was sufficiently high to be detected histochemically. With the second procedure we could show that (1) β-gal-tagged cells formed colonies in the myocardium, (2) the labeled cells were exclusively myocytes, (3) the number of cells per colony increased with increasing age of embryonic development, (4) the size of colonies was larger in the left than the right ventricle, (5) many of the colonies were transmural, i.e., they extended from epicardial to endocardial layers of the myocardium and generally exhibited a cone or funnel-shape with the base of the cone nearest the epicardium, (6) the orientation of myocytes within each colony changed at different layers of the myocardium, and (7) the cones contained both β-gal+ and β-gal− myocytes. DNA labeling studies with [3H]thymidine indicated that cardiogenic cells divided every 16–18 hr during the first week of development and that the CXL-labeled cells divided indistinguishably from unlabeled myocytes. Based on these observations a model for the growth of the myocardium is presented.Keywords
This publication has 36 references indexed in Scilit:
- Polarized release of enveloped viruses in the embryonic chick heart: Demonstration of epithelial polarity in the presumptive myocardiumDevelopmental Biology, 1990
- In vitro analysis of cardiac progenitor cell differentiationDevelopmental Biology, 1990
- Clonally Related Cortical Cells Show Several Migration PatternsScience, 1988
- Migratory behavior of cardiac cushion tissue cells in a collagen-lattice culture systemDevelopmental Biology, 1982
- Formation of the epicardium studied with the scanning electron microscopeDevelopmental Biology, 1978
- Structural analysis of endocardial cytodifferentiationDevelopmental Biology, 1975
- Glycosaminoglycan synthesis by the early embryonic chick heartDevelopmental Biology, 1973
- Sulfated extracellular matrix production in the embryonic heart and adjacent tissuesJournal of Experimental Zoology, 1970
- Histogenesis of the embryonic myocardiumThe American Journal of Cardiology, 1970
- Regional mitotic activity in the precardiac mesoderm and differentiating heart tube in the chick embryoDevelopmental Biology, 1969