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Sequential events during the quiescence to proliferation transition establish patterns of follicle cell differentiation in the Drosophila ovary.


ABSTRACT: Stem cells cycle between periods of quiescence and proliferation to promote tissue health. In Drosophila ovaries, quiescence to proliferation transitions of follicle stem cells (FSCs) are exquisitely feeding-dependent. Here, we demonstrate feeding-dependent induction of follicle cell differentiation markers, eyes absent (Eya) and castor (Cas) in FSCs, a patterning process that does not depend on proliferation induction. Instead, FSCs extend micron-scale cytoplasmic projections that dictate Eya-Cas patterning. We identify still life and sickie as necessary and sufficient for FSC projection growth and Eya-Cas induction. Our results suggest that sequential, interdependent events establish long-term differentiation patterns in follicle cell precursors, independently of FSC proliferation induction.

SUBMITTER: Lee EH 

PROVIDER: S-EPMC9867896 | biostudies-literature | 2023 Jan

REPOSITORIES: biostudies-literature

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Sequential events during the quiescence to proliferation transition establish patterns of follicle cell differentiation in the Drosophila ovary.

Lee Eric H EH   Zinshteyn Daniel D   Miglo Fred F   Wang Melissa Q MQ   Reinach Jessica J   Chau Cindy M CM   Grosstephan Joseph M JM   Correa Iliana I   Costa Kelly K   Vargas Alberto A   Johnson Aminah A   Longo Sheila M SM   Alexander Jennifer I JI   O'Reilly Alana M AM  

Biology open 20230112 1


Stem cells cycle between periods of quiescence and proliferation to promote tissue health. In Drosophila ovaries, quiescence to proliferation transitions of follicle stem cells (FSCs) are exquisitely feeding-dependent. Here, we demonstrate feeding-dependent induction of follicle cell differentiation markers, eyes absent (Eya) and castor (Cas) in FSCs, a patterning process that does not depend on proliferation induction. Instead, FSCs extend micron-scale cytoplasmic projections that dictate Eya-C  ...[more]

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