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通过 D10A-Cas9 切口酶生成肌抑素敲除鸡。

Generation of myostatin-knockout chickens mediated by D10A-Cas9 nickase.

机构信息

Graduate School of International Agricultural Technology, Seoul National University, Pyeongchang-gun, South Korea.

Institute of Green-Bio Science and Technology, Seoul National University, Pyeongchang-gun, South Korea.

出版信息

FASEB J. 2020 Apr;34(4):5688-5696. doi: 10.1096/fj.201903035R. Epub 2020 Feb 25.

Abstract

Many studies have been conducted to improve economically important livestock traits such as feed efficiency and muscle growth. Genome editing technologies represent a major advancement for both basic research and agronomic biotechnology development. The clustered regularly interspaced short palindromic repeats (CRISPR)/Cas9 technical platform is a powerful tool used to engineer specific targeted loci. However, the potential occurrence of off-target effects, including the cleavage of unintended targets, limits the practical applications of Cas9-mediated genome editing. In this study, to minimize the off-target effects of this technology, we utilized D10A-Cas9 nickase to generate myostatin-knockout (MSTN KO) chickens via primordial germ cells. D10A-Cas9 nickase (Cas9n)-mediated MSTN KO chickens exhibited significantly larger skeletal muscles in the breast and leg. Degrees of skeletal muscle hypertrophy and hyperplasia induced by myostatin deletion differed by sex and muscle type. The abdominal fat deposition was dramatically lower in MSTN KO chickens than in wild-type chickens. Our results demonstrate that the D10A-Cas9 technical platform can facilitate precise and efficient targeted genome engineering and may broaden the range of applications for genome-edited chickens in practical industrialization and as animal models of human diseases.

摘要

许多研究旨在提高具有经济重要性的家畜性状,如饲料效率和肌肉生长。基因组编辑技术代表了基础研究和农业生物技术发展的重大进步。成簇规律间隔短回文重复序列(CRISPR)/Cas9 技术平台是用于工程特定靶向基因座的强大工具。然而,潜在的脱靶效应,包括对非预期靶标的切割,限制了 Cas9 介导的基因组编辑的实际应用。在这项研究中,为了最大程度地减少该技术的脱靶效应,我们利用 D10A-Cas9 核酸酶通过原始生殖细胞产生肌肉生长抑制素敲除(MSTN KO)鸡。D10A-Cas9 核酸酶(Cas9n)介导的 MSTN KO 鸡的胸肌和腿肌明显更大。肌肉生长抑制素缺失引起的骨骼肌肥大和增生程度因性别和肌肉类型而异。MSTN KO 鸡的腹部脂肪沉积明显低于野生型鸡。我们的结果表明,D10A-Cas9 技术平台可促进精确和高效的靶向基因组工程,并且可能拓宽基因组编辑鸡在实际产业化和人类疾病动物模型中的应用范围。

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