Spatio-temporal requirements for transposable element piRNA-mediated silencing during Drosophila oogenesis

During Drosophila oogenesis, transposable element (TE) repression involves the Piwi-interacting RNA (piRNA) pathway which ensures genome integrity for the next generation. We developed a transgenic model to study repression of the Idefix retrotransposon in the germline. Using a candidate gene KD-app...

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Veröffentlicht in:Nucleic acids research 2014-02, Vol.42 (4), p.2512-2524
Hauptverfasser: Dufourt, Jérémy, Dennis, Cynthia, Boivin, Antoine, Gueguen, Nathalie, Théron, Emmanuelle, Goriaux, Coline, Pouchin, Pierre, Ronsseray, Stéphane, Brasset, Emilie, Vaury, Chantal
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Sprache:eng
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Zusammenfassung:During Drosophila oogenesis, transposable element (TE) repression involves the Piwi-interacting RNA (piRNA) pathway which ensures genome integrity for the next generation. We developed a transgenic model to study repression of the Idefix retrotransposon in the germline. Using a candidate gene KD-approach, we identified differences in the spatio-temporal requirements of the piRNA pathway components for piRNA-mediated silencing. Some of them (Aub, Vasa, Spn-E) are necessary in very early stages of oogenesis within the germarium and appear to be less important for efficient TE silencing thereafter. Others (Piwi, Ago3, Mael) are required at all stages of oogenesis. Moreover, during early oogenesis, in the dividing cysts within the germarium, Idefix anti-sense transgenes escape host control, and this is associated with very low piwi expression. Silencing of P-element-based transgenes is also strongly weakened in these cysts. This region, termed the 'Piwiless pocket' or Pilp, may ensure that new TE insertions occur and are transmitted to the next generation, thereby contributing to genome dynamics. In contrast, piRNA-mediated silencing is strong in germline stem cells in which TE mobilization is tightly repressed ensuring the continued production of viable germline cysts.
ISSN:0305-1048
1362-4962
DOI:10.1093/nar/gkt1184