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Early embryonic development and spatiotemporal localization of mammalian primordial germ cell-associated proteins in the basal rodent Lagostomus maximus

机译:基底啮齿类动物最大拉格斯托菌的哺乳动物原始生殖细胞相关蛋白的早期胚胎发育和时空定位

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摘要

The gene network controlling primordial germ cell (PGC) specification in eutherian mammals has been exhaustively investigated in mice. The egg-cylinder morphology of the mouse embryo is the key event enabling inductive signals from the extra-embryonic ectoderm (ExE) to specify epiblast cells as PGCs early on. We investigated the embryonic development and the spatiotemporal localization of PGC-associated proteins in the basal Hystricognathi rodent Lagostomus maximus. L. maximus develops through a flat-disc epiblast far apart from the ExE. In the primitive streak stage, OCT4-positive cells are detected in the posterior pole of the embryo disc in the mesoderm of the proximal epiblast. In the neural plate stage, a reduced 8 to 12 OCT4-positive cell population transiently expresses FRAGILIS, STELLA and SOX17 in the posterior streak. Soon after translocation to the hindgut, pluripotent OCT4 cells start expressing VASA, and then, STELLA and FRAGILIS are turned on during migration toward the genital ridge. L. maximus shows a spatiotemporal pattern of PGC-associated markers divergent from the early PGC restriction model seen in mice. This pattern conforms to alternative models that are based on a pluripotent population in the embryonic axis, where PGCs are specified later during development.
机译:已在小鼠中详尽研究了控制以太哺乳动物中的原始生殖细胞(PGC)规范的基因网络。小鼠胚胎的蛋筒形态是关键事件,它使来自胚外外胚层(ExE)的感应信号能够将表皮细胞早期指定为PGC。我们调查了基础Hystricognathi啮齿动物Lagostomus maximus的胚胎发育和PGC相关蛋白的时空定位。极大乳杆菌通过远离ExE的平板成骨细胞发育。在原始条纹阶段,在近端上皮细胞中胚层的胚盘后极中检测到OCT4阳性细胞。在神经板期,减少的8至12个OCT4阳性细胞群体在后条纹中瞬时表达FRAGILIS,STELLA和SOX17。易位到后肠后,多能OCT4细胞开始表达VASA,然后在向生殖器migration迁移期间打开STELLA和FRAGILIS。最大乳杆菌显示出与小鼠中早期PGC限制模型不同的PGC相关标记的时空模式。这种模式符合基于胚轴上多能种群的替代模型,其中在发育后期会指定PGC。

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