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Updated: Aug 29, 2026

Dissection of Drosophila Ovaries
Published on: October 19, 2006
Drosophila dMyc is required for ovary cell growth and endoreplication
Jean Z Maines1, Leslie M Stevens, Xianglan Tong
1Institute for Cellular and Molecular Biology, The University of Texas at Austin, 1 University Station C-0930, Austin, TX 78712-0253, USA.
Abstract:
Although the Myc oncogene has long been known to play a role in many human cancers, the mechanisms that mediate its effects in both normal cells and cancer cells are not fully understood. We have initiated a genetic analysis of the Drosophila homolog of the Myc oncoprotein (dMyc), which is encoded by the dm locus. We carried out mosaic analysis to elucidate the functions of dMyc in the germline and somatic cells of the ovary during oogenesis, a process that involves cell proliferation, differentiation and growth. Germline and somatic follicle cells mutant for dm exhibit a profound decrease in their ability to grow and to carry out endoreplication, a modified cell cycle in which DNA replication occurs in the absence of cell division. In contrast to its dramatic effects on growth and endoreplication, dMyc is dispensable for the mitotic division cycles of both germline and somatic components of the ovary. Surprisingly, despite their impaired ability to endoreplicate, dm mutant follicle cells appeared to carry out chorion gene amplification normally. Furthermore, in germline cysts in which the dm mutant cells comprised only a subset of the 16-cell cluster, we observed strictly cell-autonomous growth defects. However, in cases in which the entire germline cyst or the whole follicular epithelium was mutant for dm, the growth of the entire follicle, including the wild-type cells, was delayed. This observation indicates the existence of a signaling mechanism that acts to coordinate the growth rates of the germline and somatic components of the follicle. In summary, dMyc plays an essential role in promoting the rapid growth that must occur in both the germline and the surrounding follicle cells for oogenesis to proceed.
Insights
The Drosophila Myc homolog (dMyc) is crucial for ovarian cell growth and endoreplication during oogenesis. This study reveals dMyc
Area of Science:
- Developmental Biology
- Cell Biology
- Genetics
Background:
- The Myc oncogene is implicated in human cancers, but its precise functions in normal and cancerous cells remain unclear.
- Understanding Myc's role requires studying its homologs in model organisms.
- Oogenesis in Drosophila provides a model system to study cell growth, proliferation, and differentiation.
Purpose of the Study:
- To genetically analyze the Drosophila homolog of Myc (dMyc) and elucidate its functions in ovarian cells during oogenesis.
- To investigate the role of dMyc in cell proliferation, differentiation, and growth within the ovary.
- To understand the mechanisms regulating germline and somatic cell growth coordination.
Main Methods:
- Mosaic analysis was employed to study dMyc function in Drosophila ovarian germline and somatic cells.
- Phenotypic analysis of dm mutant cells focused on growth, endoreplication, and mitotic divisions.
- Observation of mutant clones within developing egg chambers to assess cell-autonomous and non-autonomous effects.
Main Results:
- dMyc is essential for cell growth and endoreplication in ovarian germline and somatic follicle cells.
- dMyc is not required for normal mitotic divisions in these cells.
- Mutant follicle cells showed impaired endoreplication but normal chorion gene amplification; cell-autonomous growth defects were observed, alongside a signaling-dependent delay in overall follicle growth when mutations were widespread.
Conclusions:
- dMyc plays a critical role in promoting the rapid growth necessary for oogenesis.
- A signaling pathway coordinates germline and somatic cell growth rates, influenced by dMyc.
- dMyc's function in growth and endoreplication is separable from its role in mitotic cycles.

