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Generation of germ-line chimera zebrafish using primordial germ cells isolated from cultured blastomeres and cryopreserved embryoids

机译:使用从培养的卵裂球和冷冻保存的胚状体中分离的原始生殖细胞生成种系嵌合体斑马鱼

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摘要

Primordial germ cells (PGCs) are the only cells in developing embryos with the potential to transmit genetic information to the next generation. In our previous study, a single PGC transplanted into a host differentiated into fertile gametes and produced germ-line chimeras of cyprinid fish, including zebrafish. In this study, we aimed to induce germ-line chimeras by transplanting donor PGCs from various sources (normal embryos at different stages, dissociated blastomeres, embryoids, or embryoids cryopreserved by vitrification) into host blastulae, and compare the migration rates of the PGCs towards the gonadal ridge. Isolated, cultured blastomeres not subject to mesodermal induction were able to differentiate into PGCs that retained their motility. Moreover, these PGCs successfully migrated towards the gonadal ridge of the host and formed viable gametes. Motility depended on developmental stage and culture duration: PGCs obtained at earlier developmental stages and with shorter cultivation periods showed an increased rate of migration to the gonadal ridge. Offspring were obtained from natural spawning between normal females and chimeric males. These results provide the basis for new methods of gene preservation in zebrafish.
机译:原始生殖细胞(PGC)是发育中的胚胎中仅有的具有将遗传信息传递给下一代的潜能的细胞。在我们先前的研究中,单个PGC移植到宿主中分化为可育配子,并产生了塞浦路斯鱼类(包括斑马鱼)的种系嵌合体。在这项研究中,我们旨在通过将来自不同来源(不同阶段的正常胚胎,解离的卵裂球,胚状体或通过玻璃化冷冻保存的胚状体)的供体PGC移植到宿主小囊泡中来诱导种系嵌合体,并比较PGC朝向性腺岭。不受中胚层诱导的分离培养的卵裂球能够分化成保留其运动性的PGC。而且,这些PGC成功地向宿主的性腺隆起迁移并形成了可行的配子。动力取决于发育阶段和培养时间:在早期发育阶段和较短培养期间获得的PGC显示出向性腺na的迁移速率增加。后代是从正常雌性和嵌合雄性之间的自然产卵中获得的。这些结果为斑马鱼基因保存的新方法提供了基础。

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