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生殖生物技术与极度濒危物种:将体外配子发生与内细胞团移植相结合。

Reproductive biotechnology and critically endangered species: Merging in vitro gametogenesis with inner cell mass transfer.

作者信息

Saragusty Joseph, Ajmone-Marsan Paolo, Sampino Silvestre, Modlinski Jacek A

机构信息

Laboratory of Embryology, Faculty of Veterinary Medicine, University of Teramo, Teramo, Italy.

Department of Animal Science, Food and Nutrition - DIANA, Nutrigenomics and Proteomics Research Center - PRONUTRIGEN, Università Cattolica del Sacro Cuore, Piacenza, Italy.

出版信息

Theriogenology. 2020 Oct 1;155:176-184. doi: 10.1016/j.theriogenology.2020.06.009. Epub 2020 Jun 15.

Abstract

A fifth of mammalian species face the risk of extinction. A variety of stresses, and lack of sufficient resources and political endorsement, mean thousands of further extinctions in the coming years. Once a species has declined to a mere few individuals, in situ efforts seem insufficient to prevent its extinction. Here we propose a roadmap to overcome some of the current roadblocks and facilitate rejuvenation of such critically endangered species. We suggest combining two advanced assisted reproductive technologies to accomplish this task. The first is the generation of gametes from induced pluripotent stem cells, already demonstrated in mice. The second is to 'trick' the immunological system of abundant species' surrogate mothers into believing it carries conceptus of its own species. This can be achieved by transferring the inner cell mass (ICM) of the endangered species into a trophoblastic vesicle derived from the foster mother's species. Such synthesis of reproductive biotechnologies, in association with in situ habitat conservation and societal changes, holds the potential to restore diversity and accelerate the production of animals in the most endangered species on Earth.

摘要

五分之一的哺乳动物物种面临灭绝风险。多种压力以及缺乏足够的资源和政治支持,意味着未来几年还会有数千种物种灭绝。一旦一个物种数量减少到仅存寥寥个体,原地保护措施似乎不足以防止其灭绝。在此,我们提出一个路线图,以克服当前的一些障碍,并促进此类极度濒危物种的复兴。我们建议结合两种先进的辅助生殖技术来完成这项任务。第一种是从小鼠已证实的诱导多能干细胞中生成配子。第二种是“欺骗”数量丰富物种的代孕母体的免疫系统,使其相信自己怀有自身物种的胚胎。这可以通过将濒危物种的内细胞团(ICM)转移到源自代孕母体物种的滋养层囊泡中来实现。这种生殖生物技术的综合运用,再结合原地栖息地保护和社会变革,有望恢复生物多样性,并加速地球上最濒危物种的动物繁育。

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