Livestock Biotechnology, Department of Molecular Life Sciences, School of Life Sciences Weihenstephan, Technical University Munich, 85354 Freising, Germany.
Reproductive Biotechnology, Department of Molecular Life Sciences, School of Life Sciences Weihenstephan, Technical University Munich, 85354 Freising, Germany.
Proc Natl Acad Sci U S A. 2021 Mar 9;118(10). doi: 10.1073/pnas.2022562118.
Genetically modified animals continue to provide important insights into the molecular basis of health and disease. Research has focused mostly on genetically modified mice, although other species like pigs resemble the human physiology more closely. In addition, cross-species comparisons with phylogenetically distant species such as chickens provide powerful insights into fundamental biological and biomedical processes. One of the most versatile genetic methods applicable across species is CRISPR-Cas9. Here, we report the generation of transgenic chickens and pigs that constitutively express Cas9 in all organs. These animals are healthy and fertile. Functionality of Cas9 was confirmed in both species for a number of different target genes, for a variety of cell types and in vivo by targeted gene disruption in lymphocytes and the developing brain, and by precise excision of a 12.7-kb DNA fragment in the heart. The Cas9 transgenic animals will provide a powerful resource for in vivo genome editing for both agricultural and translational biomedical research, and will facilitate reverse genetics as well as cross-species comparisons.
转基因动物继续为健康和疾病的分子基础提供重要的见解。研究主要集中在转基因小鼠上,尽管其他物种,如猪,更接近人类的生理机能。此外,与进化上相距较远的物种(如鸡)的跨物种比较为基本的生物学和生物医学过程提供了有力的见解。适用于跨物种的最通用的遗传方法之一是 CRISPR-Cas9。在这里,我们报告了在所有器官中组成型表达 Cas9 的转基因鸡和猪的产生。这些动物健康且能生育。Cas9 的功能在两种物种中的多种不同靶基因、各种细胞类型以及在体内通过淋巴细胞和发育中的大脑中的靶向基因破坏、以及在心脏中的 12.7kb DNA 片段的精确切除得到了证实。Cas9 转基因动物将为农业和转化医学研究中的体内基因组编辑提供强大的资源,并将促进反向遗传学以及跨物种比较。