Gonadal dimorphism explained as a dosage effect of a locus on the sex chromosomes, the gonad-differentiation locus (GDL).
- 1 March 1988
- journal article
- Vol. 42 (3) , 414-21
Abstract
In human somatic cells bearing two X chromosomes, one X is genetically inactivated throughout most of its length, whereas in cells with one X and one Y both sex chromosomes are active (with the exception of the constitutive heterochromatin of the Y that is inert). The vast base of information concerning normal and abnormal human sexual development that has accumulated since the advent of human cytogenetics 3 decades ago can be integrated by the following hypothesis: Homologous gonad-differentiation loci (GDLs) exist on the X and Y. The GDLs are strictly sex-linked; that is, normally they do not recombine during spermatogenesis, so that considerable divergence in DNA sequence doubtless has occurred between the locus on the X and the locus on the Y. The abundance of their evolutionarily conserved product--a substance still to be identified--determines the path of differentiation that the indifferent gonadal anlage of the early embryo will take: if only one GDL is transcribed, the case when two X chromosomes are present, ovary will develop; if two GDLs are transcribed, the case when a Y is present along with an X, testis will develop. By implication, facultative X inactivation is an integral and essential component of the system adopted in mammalian evolution for accomplishing gonadal--viz., sexual--dimorphism.This publication has 25 references indexed in Scilit:
- Mapping the limits of the human pseudoautosomal region and a candidate sequence for the male-determining geneNature, 1987
- Complementation used to clone a human homologue of the fission yeast cell cycle control gene cdc2Nature, 1987
- Hypervariable telomeric sequences from the human sex chromosomes are pseudoautosomalNature, 1985
- Pseudoautosomal DNA sequences in the pairing region of the human sex chromosomesNature, 1985
- Genetic evidence of X–Y interchange in a human XX maleNature, 1984
- SEX DETERMINATION AND DOSAGE COMPENSATION IN DROSOPHILA MELANOGASTERAnnual Review of Genetics, 1983
- Genetically Determined Sex-Reversal in 46,XY HumansScience, 1978
- X-Y CHROMOSOMAL INTERCHANGE IN THE ÆTIOLOGY OF TRUE HERMAPHRODITISM AND OF XX KLINEFELTER'S SYNDROMEThe Lancet, 1966
- Gene Action in the X-chromosome of the Mouse (Mus musculus L.)Nature, 1961
- THE CHROMOSOME COMPLEMENT IN TRUE HERMAPHRODITISMThe Lancet, 1960