Piwi Is Required in Multiple Cell Types to Control Germline Stem Cell Lineage Development in the Drosophila Ovary

生物 Piwi相互作用RNA 生殖系 基因敲除 干细胞 细胞生物学 体细胞 拉西尔纳 生殖细胞 胚胎干细胞 细胞分化 细胞命运测定 诱导多能干细胞 谱系(遗传) Notch信号通路 成体干细胞 重编程 遗传学 RNA干扰 细胞培养 核糖核酸 基因
作者
Xing Ma,Su Wang,Trieu Do,Xiu–Peng Song,Mayu Inaba,Yoshiya Nishimoto,Lu Ping Liu,Yuan Gao,Ying Mao,Hui Li,William McDowell,Jungeun Park,Kate E. Malanowski,Allison Peak,Anoja Perera,Hua Li,Karin Gaudenz,Jeff Haug,Yukiko Yamashita,Haifan Lin,Jian Ni,Ting Xie
出处
期刊:PLOS ONE [Public Library of Science]
卷期号:9 (3): e90267-e90267 被引量:71
标识
DOI:10.1371/journal.pone.0090267
摘要

The piRNA pathway plays an important role in maintaining genome stability in the germ line by silencing transposable elements (TEs) from fly to mammals. As a highly conserved piRNA pathway component, Piwi is widely expressed in both germ cells and somatic cells in the Drosophila ovary and is required for piRNA production in both cell types. In addition to its known role in somatic cap cells to maintain germline stem cells (GSCs), this study has demonstrated that Piwi has novel functions in somatic cells and germ cells of the Drosophila ovary to promote germ cell differentiation. Piwi knockdown in escort cells causes a reduction in escort cell (EC) number and accumulation of undifferentiated germ cells, some of which show active BMP signaling, indicating that Piwi is required to maintain ECs and promote germ cell differentiation. Simultaneous knockdown of dpp, encoding a BMP, in ECs can partially rescue the germ cell differentiation defect, indicating that Piwi is required in ECs to repress dpp. Consistent with its key role in piRNA production, TE transcripts increase significantly and DNA damage is also elevated in the piwi knockdown somatic cells. Germ cell-specific knockdown of piwi surprisingly causes depletion of germ cells before adulthood, suggesting that Piwi might control primordial germ cell maintenance or GSC establishment. Finally, Piwi inactivation in the germ line of the adult ovary leads to gradual GSC loss and germ cell differentiation defects, indicating the intrinsic role of Piwi in adult GSC maintenance and differentiation. This study has revealed new germline requirement of Piwi in controlling GSC maintenance and lineage differentiation as well as its new somatic function in promoting germ cell differentiation. Therefore, Piwi is required in multiple cell types to control GSC lineage development in the Drosophila ovary.

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