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代孕亲鱼,以增强水产养殖中的生物技术研究与应用。

Surrogate broodstock to enhance biotechnology research and applications in aquaculture.

机构信息

The Roslin Institute, University of Edinburgh, Easter Bush Campus, Roslin EH25 9RG, UK.

The Roslin Institute, University of Edinburgh, Easter Bush Campus, Roslin EH25 9RG, UK.

出版信息

Biotechnol Adv. 2021 Jul-Aug;49:107756. doi: 10.1016/j.biotechadv.2021.107756. Epub 2021 Apr 22.

Abstract

Aquaculture is playing an increasingly important role in meeting global demands for seafood, particularly in low and middle income countries. Genetic improvement of aquaculture species has major untapped potential to help achieve this, with selective breeding and genome editing offering exciting avenues to expedite this process. However, limitations to these breeding and editing approaches include long generation intervals of many fish species, alongside both technical and regulatory barriers to the application of genome editing in commercial production. Surrogate broodstock technology facilitates the production of donor-derived gametes in surrogate parents, and comprises transplantation of germ cells of donors into sterilised recipients. There are many successful examples of intra- and inter-species germ cell transfer and production of viable offspring in finfish, and this leads to new opportunities to address the aforementioned limitations. Firstly, surrogate broodstock technology raises the opportunity to improve genome editing via the use of cultured germ cells, to reduce mosaicism and potentially enable in vivo CRISPR screens in the progeny of surrogate parents. Secondly, the technology has pertinent applications in preservation of aquatic genetic resources, and in facilitating breeding of high-value species which are otherwise difficult to rear in captivity. Thirdly, it holds potential to drastically reduce the effective generation interval in aquaculture breeding programmes, expediting the rate of genetic gain. Finally, it provides new opportunities for dissemination of tailored, potentially genome edited, production animals of high genetic merit for farming. This review focuses on the state-of-the-art of surrogate broodstock technology, and discusses the next steps for its applications in research and production. The integration and synergy of genomics, genome editing, and reproductive technologies have exceptional potential to expedite genetic gain in aquaculture species in the coming decades.

摘要

水产养殖在满足全球对海鲜的需求方面发挥着越来越重要的作用,特别是在低收入和中等收入国家。水产养殖物种的遗传改良具有巨大的未开发潜力,可以帮助实现这一目标,选择育种和基因组编辑为加速这一过程提供了令人兴奋的途径。然而,这些育种和编辑方法存在局限性,包括许多鱼类物种的世代间隔较长,以及基因组编辑在商业生产中应用的技术和监管障碍。代亲繁殖技术有助于在代亲中产生供体来源的配子,包括将供体的生殖细胞移植到消毒的受体中。在鱼类中,有许多成功的种内和种间生殖细胞转移和有活力的后代生产的例子,这为解决上述限制提供了新的机会。首先,代亲繁殖技术通过使用培养的生殖细胞提高了基因组编辑的机会,以减少嵌合体,并有可能使代亲后代体内进行 CRISPR 筛选。其次,该技术在水产遗传资源的保存以及促进高价值物种的繁殖方面具有相关应用,这些物种在人工养殖环境中很难繁殖。第三,它有潜力大大缩短水产养殖繁殖计划中的有效世代间隔,加快遗传增益的速度。最后,它为定制的、潜在的基因组编辑的、具有高遗传价值的生产动物的传播提供了新的机会,用于养殖。本文综述了代亲繁殖技术的最新进展,并讨论了其在研究和生产中的下一步应用。基因组学、基因组编辑和生殖技术的整合和协同作用,有可能在未来几十年内加速水产养殖物种的遗传增益。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/21ca/8192414/829e0daf80e5/gr1.jpg

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