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Ovarian ecdysteroid biosynthesis and female germline stem cells

机译:卵巢蜕皮毒性生物合成和雌性种系干细胞

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摘要

The germline stem cells (GSCs) are critical for gametogenesis throughout the adult life. Stem cell identity is maintained by local signals from a specialized microenvironment called the niche. However, it is unclear how systemic signals regulate stem cell activity in response to environmental cues. In our previous article, we reported that mating stimulates GSC proliferation in female Drosophila. The mating-induced GSC proliferation is mediated by ovarian ecdysteroids, whose biosynthesis is positively controlled by Sex peptide signaling. Here, we characterized the post-eclosion and post-mating expression pattern of the genes encoding the ecdysteroidogenic enzymes in the ovary. We further investigated the biosynthetic functions of the ovarian ecdysteroid in GSC maintenance in the mated females. We also briefly discuss the regulation of the ecdysteroidogenic enzyme-encoding genes and the subsequent ecdysteroid biosynthesis in the ovary of the adult Drosophila.
机译:种系干细胞(GSCs)对整个成年生命的配子是至关重要的。 干细胞同一性由来自称为利基的专用微环境的局部信号维持。 然而,目前尚不清楚系统信号如何响应环境提示调节干细胞活动。 在我们之前的文章中,我们报告说交配刺激雌性果蝇的GSC增殖。 交配诱导的GSC增殖由卵巢蜕皮蜕皮介导,其生物合成通过性肽信号传导呈正控制。 这里,我们表征了在卵巢中编码EcdeSteropenic酶的基因的雾化后和后交配表达模式。 我们进一步调查了卵巢蜕皮蜕皮的生物合成功能,在交配的女性中的GSC维护中。 我们还简要介绍了成人果蝇的卵巢中蜕膜编码酶编码基因的调节和随后的EcdeStoid生物合成。

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