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</script>Control of Oocyte Maturation in Sexually MatureDrosophilaFemales
pmid: 10191049
Control of Oocyte Maturation in Sexually MatureDrosophilaFemales
In many sexually mature insects egg production and oviposition are tightly coupled to copulation. Sex-Peptide is a 36-amino-acid peptide synthesized in the accessory glands of Drosophila melanogaster males and transferred to the female during copulation. Sex-Peptide stimulates vitellogenic oocyte progression through a putative control point at about stage 9 of oogenesis. Here we show that application of the juvenile hormone analogue methoprene mimics the Sex-Peptide-mediated stimulation of vitellogenic oocyte progression in sexually mature virgin females. Apoptosis is induced by 20-hydroxyecdysone in nurse cells of stage 9 egg chambers at physiological concentrations (10(-7) M). 20-Hydroxyecdysone thus acts as an antagonist of early vitellogenic oocyte development. Simultaneous application of juvenile hormone analogue, however, protects early vitellogenic oocytes from 20-hydroxyecdysone-induced resorption. These results suggest that the balance of these hormones in the hemolymph regulates whether oocytes will progress through the control point at stage 9 or undergo apoptosis. These data are further supported by a molecular analysis of the regulation of yolk protein synthesis and uptake into the ovary by the two hormones. We conclude that juvenile hormone is a downstream component in the Sex-Peptide response cascade and acts by stimulating vitellogenic oocyte progression and inhibiting apoptosis. Since juvenile hormone analogue does not elicit increased oviposition and reduced receptivity, Sex-Peptide must have an additional, separate effect on these two postmating responses.
- University of Edinburgh United Kingdom
- UNIVERSITY OF EDINBURGH
- University of Edinburgh Finland
- University of Edinburgh United Kingdom
- University of Edinburgh United Kingdom
Oviposition, Apoptosis, Models, Biological, Hemolymph, Copulation, Animals, Drosophila Proteins, RNA, Messenger, ecdysone, Molecular Biology, Dose-Response Relationship, Drug, juvenile hormone, oogenesis, Egg Proteins, Molecular Mimicry, Vitellogenesis, apoptosis, Sex-Peptide, Cell Biology, Methoprene, Drosophila melanogaster, Ecdysterone, Intercellular Signaling Peptides and Proteins, Female, Peptides, Developmental Biology, Signal Transduction
Oviposition, Apoptosis, Models, Biological, Hemolymph, Copulation, Animals, Drosophila Proteins, RNA, Messenger, ecdysone, Molecular Biology, Dose-Response Relationship, Drug, juvenile hormone, oogenesis, Egg Proteins, Molecular Mimicry, Vitellogenesis, apoptosis, Sex-Peptide, Cell Biology, Methoprene, Drosophila melanogaster, Ecdysterone, Intercellular Signaling Peptides and Proteins, Female, Peptides, Developmental Biology, Signal Transduction
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