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Mating-Induced Increase in Germline Stem Cells via the Neuroendocrine System in Female Drosophila

机译:通过果蝇的神经内分泌系统交配诱导的生殖干细胞增加

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摘要

Mating and gametogenesis are two essential components of animal reproduction. Gametogenesis must be modulated by the need for gametes, yet little is known of how mating, a process that utilizes gametes, may modulate the process of gametogenesis. Here, we report that mating stimulates female germline stem cell (GSC) proliferation in Drosophila melanogaster. Mating-induced increase in GSC number is not simply owing to the indirect effect of emission of stored eggs, but rather is stimulated by a male-derived Sex Peptide (SP) and its receptor SPR, the components of a canonical neuronal pathway that induces a post-mating behavioral switch in females. We show that ecdysteroid, the major insect steroid hormone, regulates mating-induced GSC proliferation independently of insulin signaling. Ovarian ecdysteroid level increases after mating and transmits its signal directly through the ecdysone receptor expressed in the ovarian niche to increase the number of GSCs. Impairment of ovarian ecdysteroid biosynthesis disrupts mating-induced increase in GSCs as well as egg production. Importantly, feeding of ecdysteroid rescues the decrease in GSC number caused by impairment of neuronal SP signaling. Our study illustrates how female GSC activity is coordinately regulated by the neuroendocrine system to sustain reproductive success in response to mating.
机译:交配和配子发生是动物繁殖的两个基本组成部分。配子的生成必须通过对配子的需求进行调节,但人们对利用配子的交配如何调节配子生成的过程知之甚少。在这里,我们报道交配会刺激果蝇中的女性生殖系干细胞(GSC)增殖。交配诱导的GSC数量增加不仅是由于储存卵的发射的间接作用,而且还受到雄性性肽(SP)及其受体SPR的刺激,后者是诱导神经胶质形成的典型神经通路的组成部分。女性交配后的行为切换。我们显示蜕皮激素,主要的昆虫类固醇激素,调节交配诱导的GSC增殖,独立于胰岛素信号传导。卵巢蜕皮甾体水平在交配后增加,并直接通过卵巢生态位中表达的蜕皮激素受体传递其信号,从而增加GSC的数量。卵巢蜕皮类固醇生物合成的障碍破坏了交配引起的GSC和卵的产生。重要的是,蜕皮类固醇的喂养可以挽救神经元SP信号传导障碍引起的GSC数量减少。我们的研究表明,女性GSC的活动是如何通过神经内分泌系统协调调节的,以维持对交配的生殖成功。

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