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Stage-specific differences in the requirements for germline stem cell maintenance in the Drosophila ovary.


ABSTRACT: In this study, we uncover a role for microRNAs in Drosophila germline stem cell (GSC) maintenance. Disruption of Dicer-1 function in GSCs during adult life results in GSC loss. Surprisingly, however, loss of Dicer-1 during development does not result in a GSC maintenance defect, although a defect is seen if both Dicer-1 and Dicer-2 function are disrupted. Loss of the bantam microRNA mimics the Dicer-1 maintenance defect when induced in adult GSCs, suggesting that bantam plays a key role in GSC self-renewal. Mad, a component of the TGF-beta pathway, behaves similarly to Dicer-1: adult GSC maintenance requires Mad if it is lost during adult life, but not if it is lost during pupal development. Overall, these results show stage-specific differential sensitivity of GSC maintenance to certain perturbations, and suggest that there may be Dcr-2 dependent redundancy of GSC maintenance mechanisms during development that is lost in later life.

SUBMITTER: Shcherbata HR 

PROVIDER: S-EPMC2211735 | biostudies-literature | 2007 Dec

REPOSITORIES: biostudies-literature

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Stage-specific differences in the requirements for germline stem cell maintenance in the Drosophila ovary.

Shcherbata Halyna R HR   Ward Ellen J EJ   Fischer Karin A KA   Yu Jenn-Yah JY   Reynolds Steven H SH   Chen Chun-Hong CH   Xu Peizhang P   Hay Bruce A BA   Ruohola-Baker Hannele H  

Cell stem cell 20071201 6


In this study, we uncover a role for microRNAs in Drosophila germline stem cell (GSC) maintenance. Disruption of Dicer-1 function in GSCs during adult life results in GSC loss. Surprisingly, however, loss of Dicer-1 during development does not result in a GSC maintenance defect, although a defect is seen if both Dicer-1 and Dicer-2 function are disrupted. Loss of the bantam microRNA mimics the Dicer-1 maintenance defect when induced in adult GSCs, suggesting that bantam plays a key role in GSC s  ...[more]

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