IF 3.7 4区 生物学 Q2 GENETICS & HEREDITY CRISPR Journal Pub Date : 2025-02-28 DOI:10.1089/crispr.2024.0086
Qian Li, Hong Yu, Shaojun Du, Qi Li
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摘要

CRISPR-Cas9 基因组编辑技术在加快水产养殖遗传改良方面具有巨大潜力。CRISPR-Cas9 系统的成功依赖于工程化单导 RNA(sgRNA)的特异性和效率。在本研究中,我们利用太平洋牡蛎(Crassostrea gigas)有限的繁殖季节,优化了 sgRNA 的体外验证方案,以简化基因编辑过程。我们评估了 11 种 sgRNAs 在体外和体内针对千兆蚌 4 个基因的效率。此外,我们还发现,在早期发育的不同阶段,Cas9 蛋白与 Cas9 mRNA 的基因编辑效率不同。事实证明,Cas9 蛋白在实现早期和高效基因敲除方面具有特别的功效,在细胞第一次分裂期间就能有效发挥作用,并能促进双拷贝基因敲除。统计分析表明,在蛋白组中,双拷贝编辑频率从12.5%到57.8%不等,总体编辑频率高达75-90.6%。mRNA 组的双拷贝编辑频率为 3.1%-14.0%,总体编辑频率为 65.6%-78.1%。与预期相反,牡蛎胚胎的低温培养(20°C)延长了第一次细胞分裂的时间窗口,但并没有提高基因编辑效率,这可能是由于 Cas9 酶活性对温度的高敏感性造成的。总之,这项研究全面分析了影响千足牡蛎CRISPR-Cas9基因编辑效率的因素,为软体动物和其他海洋无脊椎动物未来的基因编辑工作提供了一个稳健的框架。
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Optimizing Genome Editing in Mollusks (Crassostrea gigas) in Vitro Validation of sgRNA and Identifying Key Factors Influencing Efficiency.

CRISPR-Cas9 genome editing holds tremendous potential for accelerating genetic improvements in aquaculture. The success of the CRISPR-Cas9 system relies on the specificity and efficiency of engineered single-guide RNAs (sgRNAs). In this study, we optimized an in vitro validation protocol for sgRNAs to streamline the gene editing process, capitalizing on the limited breeding season of the Pacific oyster (Crassostrea gigas). We evaluated the efficiency of 11 sgRNAs targeting four genes both in vitro and in vivo in C. gigas. In addition, we found that Cas9 protein differs from Cas9 mRNA in gene editing efficiency at various stages of early development. Cas9 protein proved particular efficacy in achieving early and efficient gene knockout, functioning effectively during the first cell division and facilitating biallelic gene knockouts. Statistical analysis showed that in the protein group, the biallelic editing frequency ranged from 12.5% to 57.8%, and the overall editing frequency reached as high as 75-90.6%. The mRNA group exhibited a biallelic editing frequency of 3.1-14.0% and the overall editing frequency spanning 65.6-78.1%. Contrary to expectations, low-temperature incubation (20°C) of oyster embryos prolonged the time window for the first cell division but did not improve gene editing efficiency, likely due to the high temperature sensitivity of Cas9 enzyme activity. Together, this study provides a comprehensive analysis of factors affecting the efficiency of CRISPR-Cas9 gene editing in C. gigas, providing a robust framework for future gene editing endeavors in mollusks and other marine invertebrates.

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来源期刊
CRISPR Journal
CRISPR Journal Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
6.30
自引率
2.70%
发文量
76
期刊介绍: In recognition of this extraordinary scientific and technological era, Mary Ann Liebert, Inc., publishers recently announced the creation of The CRISPR Journal -- an international, multidisciplinary peer-reviewed journal publishing outstanding research on the myriad applications and underlying technology of CRISPR. Debuting in 2018, The CRISPR Journal will be published online and in print with flexible open access options, providing a high-profile venue for groundbreaking research, as well as lively and provocative commentary, analysis, and debate. The CRISPR Journal adds an exciting and dynamic component to the Mary Ann Liebert, Inc. portfolio, which includes GEN (Genetic Engineering & Biotechnology News) and more than 80 leading peer-reviewed journals.
期刊最新文献
Exploring the Cytoplasmic Retention of CRISPR-Cas9 in Eukaryotic Cells: The Role of Nuclear Localization Signals and Ribosomal Interactions. Optimizing Genome Editing in Mollusks (Crassostrea gigas) in Vitro Validation of sgRNA and Identifying Key Factors Influencing Efficiency. Re: Novel Off-Targeting Events Identified after Genome-Wide Analysis of CRISPR-Cas Edited Pigs. Strategies and Protocols for Optimized Genome Editing in Potato. CRISPR-Cas9-Mediated Correction of TSC2 Pathogenic Variants in iPSCs from Patients with Tuberous Sclerosis Complex Type 2.
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