Selective Loss of Sperm Bearing a Compound Chromosome in the Drosophila Female

Author:

Dernburg Abby F1,Daily Douglas R2,Yook Karen J2,Corbin John A2,Sedat John W1,Sullivan William2

Affiliation:

1. Department of Biochemistry and Biophysics, University of California, Sun Francisco, California 94143-0554

2. Sinsheimer Laboratories, Department of Biology, University of California, Santa Cruz, California 95064

Abstract

Abstract The Drosophila compound entire second chromosome, C(2)EN, displays paternal transmission well below Mendelian expectations (Novitski  et al. 1981). Because C(2)EN stocks also show higher-than-expected rates of zygotic lethality, it was proposed that this reduced paternal inheritance might be wholly or partially due to postfertilization events. Efforts to investigate this phenomenon have been hampered because the progeny of crosses between C(2)EN-bearing individuals and those with normal karyotypes die during embryogenesis. We have circumvented this obstacle by employing fluorescence in situ hybridization to directly karyotype early embryos from crosses involving C(2)EN-bearing individuals. This analysis reveals that the distortion in paternal transmission is established before fertilization. Moreover, measurement of the sperm ratios within both the male and female reproductive organs demonstrates that C(2)EN-bearing sperm are selectively lost after sperm transfer to the female and before storage of sperm in the seminal receptacles and spermathecae. Our results are consistent with a model of meiotic drive in which aberrations occuring early in meiosis lead ultimately to sperm dysfunction.

Publisher

Oxford University Press (OUP)

Subject

Genetics

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