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Post-meiotic transcription was accepted to be essentially absent from Drosophila spermatogenesis. We identify 24 Drosophila genes whose mRNAs are most abundant in elongating spermatids. By single-cyst quantitative RT-PCR, we demonstrate post-meiotic transcription of these genes. We conclude that transcription stops in Drosophila late primary spermatocytes, then is reactivated by two pathways for a few loci just before histone-to-transition protein-to-protamine chromatin remodelling in spermiogenesis. These mRNAs localise to a small region at the distal elongating end of the spermatid bundles, thus they represent a new class of sub-cellularly localised mRNAs. Mutants for a post-meiotically transcribed gene (scotti), are male sterile, and show spermatid individualisation defects, indicating a function in late spermiogenesis.
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Development ePress online publication date 23 Apr 2008
doi: 10.1242/dev.021949
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Post-meiotic transcription in Drosophila testes
* Author for correspondence (e-mail: white-cooperh{at}cf.ac.uk)
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J. Zhao, G. Klyne, E. Benson, E. Gudmannsdottir, H. White-Cooper, and D. Shotton
FlyTED: the Drosophila Testis Gene Expression Database
Nucleic Acids Res.,
November 24, 2009;
(2009)
gkp1006v1.
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S. Pitnick, R. Dobler, and D. J. Hosken
Sperm length is not influenced by haploid gene expression in the flies Drosophila melanogaster and Scathophaga stercoraria
Proc R Soc B,
November 22, 2009;
276(1675):
4029 - 4034.
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© The Company of Biologists Ltd 2008