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同源臂长度对SSB/CRISPR-Cas9介导的同源重组基因编辑效率的影响 于……

The Influence of Homologous Arm Length on Homologous Recombination Gene Editing Efficiency Mediated by SSB/CRISPR-Cas9 in .

作者信息

Chai Ran, Guo Jiaxiang, Geng Yue, Huang Shuai, Wang Haifeng, Yao Xinding, Li Tao, Qiu Liyou

机构信息

School of Environmental Engineering, Yellow River Conservancy Technical Institute, Henan Engineering Technology Research Center of Green Coating Materials, Kaifeng 475004, China.

College of Life Sciences, Henan Agricultural University, Key Laboratory of Enzyme Engineering of Agricultural Microbiology, Ministry of Agriculture and Rural Affairs, Zhengzhou 450046, China.

出版信息

Microorganisms. 2024 May 29;12(6):1102. doi: 10.3390/microorganisms12061102.

Abstract

The precise editing of genes mediated by CRISPR-Cas9 necessitates the application of donor DNA with appropriate lengths of homologous arms and fragment sizes. Our previous development, SSB/CRISPR-Cas9, has demonstrated high efficiency in homologous recombination and non-homologous end joining gene editing within bacteria. In this study, we optimized the lengths and sizes of homologous arms of the donor DNA within this system. Two sets of donor DNA constructs were generated: one set comprised donors with only 10-100 bp homologous arms, while the other set included donors with homologous arms ranging from 10-100 bp, between which was a tetracycline resistance expression cassette (1439 bp). These donor constructs were transformed into MG1655 cells alongside pCas-SSB/pTargetF-. Notably, when the homologous arms ranged from 10 to 70 bp, the transformation efficiency of non-selectable donors was significantly higher than that of selectable donors. However, within the range of 10-100 bp homologous arm lengths, the homologous recombination rate of selectable donors was significantly higher than that of non-selectable donors, with the gap narrowing as the homologous arm length increased. For selectable donor DNA with homologous arm lengths of 10-60 bp, the homologous recombination rate increased linearly, reaching a plateau when the homologous arm length was between 60-100 bp. Conversely, for non-selectable donor DNA, the homologous recombination rate increased linearly with homologous arm lengths of 10-90 bp, plateauing at 90-100 bp. Editing two loci simultaneously with 100 bp homologous arms, whether selectable or non-selectable, showed no difference in transformation or homologous recombination rates. Editing three loci simultaneously with 100 bp non-selectable homologous arms resulted in a 45% homologous recombination rate. These results suggest that efficient homologous recombination gene editing mediated by SSB/CRISPR-Cas9 can be achieved using donor DNA with 90-100 bp non-selectable homologous arms or 60-100 bp selectable homologous arms.

摘要

由CRISPR-Cas9介导的基因精确编辑需要应用具有适当长度同源臂和片段大小的供体DNA。我们之前开发的SSB/CRISPR-Cas9已证明在细菌内的同源重组和非同源末端连接基因编辑中具有高效率。在本研究中,我们优化了该系统内供体DNA同源臂的长度和大小。生成了两组供体DNA构建体:一组包含仅具有10-100 bp同源臂的供体,而另一组包括具有10-100 bp同源臂的供体,其间是一个四环素抗性表达盒(1439 bp)。这些供体构建体与pCas-SSB/pTargetF-一起转化到MG1655细胞中。值得注意的是,当同源臂长度为10至70 bp时,非选择性供体的转化效率显著高于选择性供体。然而,在10-100 bp同源臂长度范围内,选择性供体的同源重组率显著高于非选择性供体,且随着同源臂长度增加差距缩小。对于同源臂长度为10-60 bp的选择性供体DNA,同源重组率呈线性增加,当同源臂长度在60-100 bp之间时达到平台期。相反,对于非选择性供体DNA,同源重组率在同源臂长度为10-90 bp时呈线性增加,在90-100 bp时达到平台期。使用100 bp同源臂同时编辑两个位点,无论是选择性还是非选择性的,在转化或同源重组率上均无差异。使用100 bp非选择性同源臂同时编辑三个位点导致同源重组率为45%。这些结果表明,使用具有90-100 bp非选择性同源臂或60-100 bp选择性同源臂的供体DNA可以实现由SSB/CRISPR-Cas9介导的高效同源重组基因编辑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/433a/11205466/78892b49fc7b/microorganisms-12-01102-g001.jpg

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