Molecular genetics of oogenesis in Drosophila melanogaster

Gonadal development requires complex differentiation programs leading to the production of functional female and male gametes. Upon fertilization, while the male germ cell contributes to the newly formed zygote only its genetic material, the female germ cell also supplies its cytoplasmic components...

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Main Authors: S Gigliotti, V Cavaliere, G Gargiulo, F Graziani, C Malva
Format: Article
Language:English
Published: University of Modena and Reggio Emilia 2004-12-01
Series:Invertebrate Survival Journal
Subjects:
Online Access:https://isj02.unimore.it/index.php/ISJ/article/view/96
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spelling doaj-d6151cd267784e53bb3e19b29c91f85d2020-12-02T18:27:01ZengUniversity of Modena and Reggio EmiliaInvertebrate Survival Journal1824-307X2004-12-0111Molecular genetics of oogenesis in Drosophila melanogasterS Gigliotti0V Cavaliere1G Gargiulo2F Graziani3C Malva4Institute of Genetics and Biophysics "Adriano Buzzati Traverso", CNR, Napoli, ItalyDipartimento di Biologia Evoluzionistica Sperimentale, Universita' di Bologna, ItalyDipartimento di Biologia Evoluzionistica Sperimentale, Universita' di Bologna, ItalyInstitute of Genetics and Biophysics "Adriano Buzzati Traverso", CNR, Napoli, ItalyInstitute of Genetics and Biophysics "Adriano Buzzati Traverso", CNR, Napoli, Italy Gonadal development requires complex differentiation programs leading to the production of functional female and male gametes. Upon fertilization, while the male germ cell contributes to the newly formed zygote only its genetic material, the female germ cell also supplies its cytoplasmic components, including fundamental molecular cues on which early embryonic development will rely. Unravelling the mechanisms employed by animal species for building up their eggs is therefore a challenging task in developmental biology. As demonstrated by the impressive body of data produced in recent years, Drosophila melanogaster is a useful model system for attempting a step by step dissection of the whole oogenesis process. Remarkable opportunities for comparative analyses are in turn expected to be provided by these studies, since it is becoming evident that conserved themes underlie oogenesis in all animal species. In this review, we focus on few key differentiation events occurring during egg chamber development in Drosophila, outlining our interest in the mechanisms leading to egg polarity establishment, transfer of information between nuclear and cytoplasmic cell compartments and germ cell apoptosis. https://isj02.unimore.it/index.php/ISJ/article/view/96oogenesisDrosophilaegg polaritynuclear poreapoptosis
collection DOAJ
language English
format Article
sources DOAJ
author S Gigliotti
V Cavaliere
G Gargiulo
F Graziani
C Malva
spellingShingle S Gigliotti
V Cavaliere
G Gargiulo
F Graziani
C Malva
Molecular genetics of oogenesis in Drosophila melanogaster
Invertebrate Survival Journal
oogenesis
Drosophila
egg polarity
nuclear pore
apoptosis
author_facet S Gigliotti
V Cavaliere
G Gargiulo
F Graziani
C Malva
author_sort S Gigliotti
title Molecular genetics of oogenesis in Drosophila melanogaster
title_short Molecular genetics of oogenesis in Drosophila melanogaster
title_full Molecular genetics of oogenesis in Drosophila melanogaster
title_fullStr Molecular genetics of oogenesis in Drosophila melanogaster
title_full_unstemmed Molecular genetics of oogenesis in Drosophila melanogaster
title_sort molecular genetics of oogenesis in drosophila melanogaster
publisher University of Modena and Reggio Emilia
series Invertebrate Survival Journal
issn 1824-307X
publishDate 2004-12-01
description Gonadal development requires complex differentiation programs leading to the production of functional female and male gametes. Upon fertilization, while the male germ cell contributes to the newly formed zygote only its genetic material, the female germ cell also supplies its cytoplasmic components, including fundamental molecular cues on which early embryonic development will rely. Unravelling the mechanisms employed by animal species for building up their eggs is therefore a challenging task in developmental biology. As demonstrated by the impressive body of data produced in recent years, Drosophila melanogaster is a useful model system for attempting a step by step dissection of the whole oogenesis process. Remarkable opportunities for comparative analyses are in turn expected to be provided by these studies, since it is becoming evident that conserved themes underlie oogenesis in all animal species. In this review, we focus on few key differentiation events occurring during egg chamber development in Drosophila, outlining our interest in the mechanisms leading to egg polarity establishment, transfer of information between nuclear and cytoplasmic cell compartments and germ cell apoptosis.
topic oogenesis
Drosophila
egg polarity
nuclear pore
apoptosis
url https://isj02.unimore.it/index.php/ISJ/article/view/96
work_keys_str_mv AT sgigliotti moleculargeneticsofoogenesisindrosophilamelanogaster
AT vcavaliere moleculargeneticsofoogenesisindrosophilamelanogaster
AT ggargiulo moleculargeneticsofoogenesisindrosophilamelanogaster
AT fgraziani moleculargeneticsofoogenesisindrosophilamelanogaster
AT cmalva moleculargeneticsofoogenesisindrosophilamelanogaster
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