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Insulin and Target of rapamycin signaling orchestrate the development of ovarian niche-stem cell units in Drosophila

机译:胰岛素和雷帕霉素信号传导靶标调控果蝇卵巢小生境干细胞单元的发育

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Tissue-specific stem cells and their niches are organized into functional units that respond to external cues in order to maintain organ homeostasis. Insulin and Target of rapamycin (Tor) signaling mediate external cues that control adult niches and stem cells. Whether these pathways play a role in the establishment of niche-stem cell units during organogenesis has been little explored. We show that during larval development both Insulin-like receptor (InR) and Tor participate in the establishment of ovarian niches and germline stem cells (GSCs) in Drosophila melanogaster. Tor and InR are required cell-autonomously for the proliferation of precursors for both somatic niches and GSCs. These pathways also promote the formation of terminal filaments (part of the somatic niche). Significantly, InR, but not Tor, signaling non-autonomously promotes primordial germ cell (PGC) differentiation. Somatic attenuation of the pathway retards PGC differentiation, whereas its activation results in their precocious differentiation. We also show that InR-mediated PGC differentiation is independent of somatic ecdysone signaling, but that further differentiation into cysts requires an ecdysone input. These results demonstrate that Tor and InR signaling actively participate in the formation of ovarian niches and stem cells by affecting both cell numbers and differentiation. The dual influence of Tor and InR on both somatic cells and PGCs ensures that these two cell populations develop coordinately. Our work further identifies a novel step in the regulation of germ cell differentiation by demonstrating that following bag of marbles expression, cyst formation requires an additional hormonal input.
机译:组织特异性干细胞及其壁ni被组织成对外部线索有反应的功能单元,以维持器官的动态平衡。雷帕霉素(Tor)信号的胰岛素和靶标介导控制成年壁ni和干细胞的外部提示。这些途径是否在器官发生过程中的利基干细胞单位的建立中发挥作用尚未探讨。我们显示,在幼虫发育过程中,胰岛素样受体(InR)和Tor都参与果蝇中卵巢壁and和种系干细胞(GSC)的建立。体细胞壁G和GSC的前体增殖都需要细胞自主地使用Tor和InR。这些途径也促进末端细丝的形成(体位的一部分)。值得注意的是,InR而非Tor信号非自主地促进了原始生殖细胞(PGC)的分化。途径的体细胞衰减阻碍了PGC的分化,而其激活导致其早熟的分化。我们还显示InR介导的PGC分化独立于体蜕皮激素的信号传导,但进一步分化成囊肿需要蜕皮激素的输入。这些结果表明,Tor和InR信号传导通过影响细胞数量和分化积极参与卵巢生态位和干细胞的形成。 Tor和InR对体细胞和PGC的双重影响可确保这两个细胞群协调发展。我们的工作通过证明在表达大理石后,囊肿的形成需要额外的激素输入,进一步确定了生殖细胞分化调控的新步骤。

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