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首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >Production of donor-derived offspring by allogeneic transplantation of spermatogonia in Chinese rosy bitterling
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Production of donor-derived offspring by allogeneic transplantation of spermatogonia in Chinese rosy bitterling

机译:在中国玫瑰色苦核中的异种移植物质移植的捐赠后代的生产

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Many bitterling species are facing extinction because of habitat destruction. Since cryopreservation of fish eggs is still not available to date due to their large size and high yolk content, long-term and stable storage of bitterling genetic resources is currently not possible. We recently discovered that cryopreservation of early-stage germ cells is possible in several fish species and that functional gametes derived from the frozen materials can be produced through their transplantation to embryonic recipients. However, bitterlings have uniquely shaped eggs and their embryos are extremely fragile, making it difficult to perform germ cell transplantation. Therefore, as a first step, we conducted intra-species spermatogonial transplantation using recessive albino Chinese rosy bitterling as donors and wild-type Chinese rosy bitterling as recipients to develop a system to convert freezable early-stage germ cells into functional gametes, particularly eggs. Approximately 3000 testicular cells were transplanted into the peritoneal cavity of 4-day-old germ cell-less recipient embryos produced by dead end (dnd)-knockdown. At 6 months, ten male recipients and nine female recipients produced gametes. Mating studies with the opposite sex of recessive albino control fish revealed that six males and three females produced only albino offspring, suggesting that these recipients' endogenous germ cells were completely removed by dnd-knockdown and they produced only donor-derived gametes. Thus, we successfully established a germ cell transplantation system in an iconic endangered teleost, bitterling. The technology established in this study can be directly applied to produce functional gametes of endangered bitterlings using cryopreserved donor cells.
机译:由于栖息地破坏,许多苦绞伤都面临灭绝。由于由于其大尺寸和高蛋黄含量,鱼卵的冷冻保存仍然无法使用,因此目前不可能长期稳定地存储苦遗传资源。我们最近发现,在几种鱼类中,早期生殖细胞的冷冻保存是可能的,并且可以通过移植到胚胎受体来生产衍生自冷冻材料的功能性配子。然而,苦涩具有独特形状的鸡蛋,它们的胚胎非常脆弱,使得难以进行胚芽细胞移植。因此,作为第一步,我们使用助剂和野生型玫瑰花粉刺作为接受者进行物种内部精子​​移植,作为接受者,以开发一种将自由侵袭早期生殖细胞转化为功能性配子,特别是鸡蛋的系统。将大约3000个睾丸细胞移植到由死胡同(DND)产生的4天胚芽细胞的受体胚胎的腹膜腔中。在6个月,十名男性收件人和9名女性收件人生产的配子。与隐性白化的对照鱼的异性交配研究表明,六个男性和三个女性仅产生白化白血病后代,这表明这些受托者的内源性生殖细胞通过DND敲低完全除去,并且它们仅生产供体衍生的配子。因此,我们成功地在标志性濒临灭绝的极端苦胆中建立了生殖细胞移植系统。在本研究中建立的技术可以直接应用于使用冷冻保存的供体细胞产生濒临灭绝的苦涩的功能配子。

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