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一种用于蜥蜴卵母细胞注射和CRISPR-Cas9诱变的手术方法。

A Surgical Method for Oocyte Injection and CRISPR-Cas9 Mutagenesis in Lizards.

作者信息

Sabin Christina E, Samudra Sukhada P, Iouchmanov Anna L, Rittgers Amber L, Lauderdale James D, Menke Douglas B

机构信息

Neuroscience Division of the Biomedical and Translational Sciences Institute, University of Georgia, Athens, Georgia 30602, USA.

Department of Genetics, University of Georgia, Athens, Georgia 30602, USA.

出版信息

Cold Spring Harb Protoc. 2025 Jul 31. doi: 10.1101/pdb.prot108652.

Abstract

Squamates, the taxon that comprises lizards and snakes, are a diverse assemblage of reptiles represented by more than 11,000 described species. Studies of gene function in squamates, however, have remained very limited, largely due to the lack of established genetic tools and suitable experimental systems. A major challenge for the development of CRISPR-based gene editing in these reptiles is that the isolation of fertilized oocytes or single-celled embryos is impractical for most species, given that fertilization occurs internally, the females of many species can store sperm, and simple methods for detecting ovulation are lacking. To overcome these challenges, we have developed a unique surgical approach in the brown anole lizard The procedure enables users to access and microinject unfertilized oocytes while they are still maturing within the lizard ovary. We describe here the methods to anesthetize adult female anoles, access the ovary through a surgical incision into the coelomic cavity, and microinject unfertilized oocytes with CRISPR-Cas9 ribonucleoprotein complexes to generate targeted mutations, enabling the routine production of gene-edited lizards.

摘要

有鳞目动物包括蜥蜴和蛇,是种类繁多的爬行动物,已描述的物种超过11000种。然而,对有鳞目动物基因功能的研究仍然非常有限,这主要是由于缺乏成熟的遗传工具和合适的实验系统。在这些爬行动物中开发基于CRISPR的基因编辑技术面临的一个主要挑战是,对于大多数物种来说,分离受精卵或单细胞胚胎是不切实际的,因为受精发生在体内,许多物种的雌性可以储存精子,而且缺乏检测排卵的简单方法。为了克服这些挑战,我们在棕色安乐蜥中开发了一种独特的手术方法。该方法使使用者能够在未受精卵母细胞仍在蜥蜴卵巢内成熟时对其进行获取和显微注射。我们在此描述了麻醉成年雌性安乐蜥、通过手术切口进入体腔以获取卵巢,以及用CRISPR-Cas9核糖核蛋白复合物对未受精卵母细胞进行显微注射以产生靶向突变的方法,从而能够常规生产基因编辑蜥蜴。

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