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Aged mouse ovaries possess rare premeiotic germ cells that can generate oocytes following transplantation into a young host environment

机译:老年小鼠卵巢具有稀有的减数分裂前生殖细胞 移植到年轻的宿主环境后产生卵母细胞

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摘要

Of all the major organ systems in the body, the ovaries of females are the first to exhibit impaired function with advancing age. Until recently, traditional thinking was that female mammals are provided with a non-renewable pool of oocyte-containing follicles at birth that are depleted during postnatal life to exhaustion, driving ovarian failure. However, a growing body of evidence, including the isolation of germline stem cells (GSC) from adult mouse ovaries that produce developmentally-competent oocytes, has challenged this belief. In addition, rare germline stem-like cells capable of generating oocytes in vitro that undergo parthenogenesis to form blastocyst-like structures have recently been identified in postmenopausal human ovaries. Here we show that the germline-specific meiosis-commitment genes,Stimulated by retinoic acid gene 8 (Stra8) and Deleted in azoospermia-like (Dazl), are highly expressed in aged mouse ovaries. However, histological and marker analyses fail to demonstrate the presence of oocytes, supporting that Stra8 and Dazl are expressed in premeiotic germ cells that do not undergo further differentiation. Through the use of aged germline-specific GFP-expressing transgenic mice, we further show that these germ cells can generate GFP-positive oocytes that co-express the primordial oocyte marker NOBOX and form follicles when grafted into young adult wild-type female hosts. Thus, aged mouse ovaries possess a rare population of premeiotic germ cells that retain the capacity to form oocytes if exposed to a young host environment.
机译:在人体所有主要器官系统中,雌性卵巢是随年龄增长而首先表现出功能受损的卵巢。直到最近,传统观念仍认为雌性哺乳动物在出生时就拥有不可再生的含卵母细胞的卵泡,这些卵在出生后的生命中消耗to尽,导致卵巢衰竭。然而,越来越多的证据,包括从产生发育能力的卵母细胞的成年小鼠卵巢中分离出生殖干细胞(GSC),已经挑战了这一信念。另外,最近在绝经后的人卵巢中鉴定出了能够在体外产生卵母细胞的稀有种系干样细胞,该卵母细胞经历孤雌生殖形成胚泡样结构。在这里,我们显示了由视黄酸基因8(Stra8)刺激并在无精子样(Dazl)中缺失的种系特异性减数分裂承诺基因在老年小鼠卵巢中高表达。但是,组织学和标记分析无法证明卵母细胞的存在,支持Stra8和Dazl是 在减数分裂前的生殖细胞中表达 差异化。通过使用老化的种系特异性GFP表达 转基因小鼠,我们进一步证明这些生殖细胞可以产生 共同表达原始卵母细胞标记NOBOX和GFP的卵母细胞 移植到年轻的成年野生型雌性宿主中时形成卵泡。从而, 老年小鼠卵巢具有稀少的减数分裂前生殖细胞群 如果暴露在年轻的宿主环境中,则保留形成卵母细胞的能力。

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