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Evolutionarily conserved, DMRT1, encodes alternatively spliced transcripts and shows dimorphic expression during
K Sreenivasulu1, Subramaniam Ganesh, Rajiva Raman
1Cytogenetics Laboratory, Department of Zoology, Banaras Hindu University, Varanasi, 221005, India.
Mechanisms of Development
|October 1, 2003
Summary
The Dmrt1 gene in the lizard Calotes versicolor (CvDmrt1) is crucial for sexual differentiation. Its expression patterns indicate distinct origins for Sertoli and granulosa cells and highlight its role in gonadal development.
Area of Science:
- Reproductive Biology
- Developmental Biology
- Genetics
Background:
- The Dmrt1 gene plays a conserved role in male sexual development across vertebrates.
- Understanding Dmrt1 function in non-mammalian species provides insights into the evolution of sex determination.
Purpose of the Study:
- To clone and characterize the Dmrt1 orthologue in the lizard Calotes versicolor (CvDmrt1).
- To investigate the expression patterns of CvDmrt1 during gonadal differentiation and in adult gonads.
- To elucidate the role of CvDmrt1 in the sexual differentiation of Calotes versicolor, a species lacking chromosomal and temperature-dependent sex determination.
Main Methods:
- Cloning and characterization of the CvDmrt1 gene.
- Analysis of CvDmrt1 expression using in situ hybridization or similar techniques during embryonic development and in adult gonads.
Main Results:
- CvDmrt1 encodes alternatively spliced transcripts.
- Expression initiates in genital ridge mesenchymal cells differentiating into Sertoli cells from day 3.
- Expression is restricted to the testicular pathway, suggesting different origins for Sertoli and granulosa cells.
- From day 25, expression shifts to germ cells in both testis and ovary.
Conclusions:
- CvDmrt1 plays a significant role in the testicular pathway of sexual differentiation in Calotes versicolor.
- The distinct expression patterns suggest differential origins for somatic cell types within the gonad.
- CvDmrt1 is involved in both early gonadal differentiation and later germ cell development.