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Reproductive technologies for the generation and maintenance of valuable animal strains

机译:用于产生和维持有价值的动物品系的生殖技术

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摘要

Many types of mutant and genetically engineered strains have been produced in various animal species. Their numbers have dramatically increased in recent years, with new strains being rapidly produced using genome editing techniques. In the rat, it has been difficult to produce knockout and knock-in strains because the establishment of stem cells has been insufficient. However, a large number of knockout and knock-in strains can currently be produced using genome editing techniques, including zinc-finger nuclease (ZFN), transcription activator-like effector nuclease (TALEN), and the clustered regularly interspaced short palindromic repeats (CRISPR) and CRISPR-associated protein 9 (Cas9) system. Microinjection technique has also contributed widely to the production of various kinds of genome edited animal strains. A novel electroporation method, the “Technique for Animal Knockout system by Electroporation (TAKE)” method, is a simple and highly efficient tool that has accelerated the production of new strains. Gamete preservation is extremely useful for maintaining large numbers of these valuable strains as genetic resources in the long term. These reproductive technologies, including microinjection, TAKE method, and gamete preservation, strongly support biomedical research and the bio-resource banking of animal models. In this review, we introduce the latest reproductive technologies used for the production of genetically engineered animals, especially rats, using genome editing techniques and the efficient maintenance of valuable strains as genetic resources. These technologies can also be applied to other laboratory animals, including mice, and domestic and wild animal species.
机译:在各种动物物种中已经产生了许多类型的突变体和基因工程菌株。近年来,它们的数量急剧增加,使用基因组编辑技术可以迅速生产出新菌株。在大鼠中,由于干细胞的建立不足,因此很难产生敲除和敲入菌株。但是,目前可以使用基因组编辑技术生产大量敲除和敲入菌株,包括锌指核酸酶(ZFN),转录激活子样效应核酸酶(TALEN)和成簇的规则间隔的短回文重复序列(CRISPR )和CRISPR相关蛋白9(Cas9)系统。显微注射技术也为各种基因组编辑的动物品系的生产做出了广泛贡献。一种新颖的电穿孔方法,即“电穿孔动物基因敲除系统技术(TAKE)”,是一种简单高效的工具,可加快新菌株的生产。长期而言,配子保存对于保持大量这些有价值的菌株作为遗传资源极为有用。这些生殖技术,包括显微注射,TAKE方法和配子保存,有力地支持了生物医学研究和动物模型的生物资源存储。在这篇综述中,我们介绍了用于基因工程动物特别是大鼠的最新生殖技术,该技术利用基因组编辑技术和有价值的菌株的有效维护作为遗传资源。这些技术还可以应用于其他实验动物,包括小鼠,家养和野生动物。

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