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A Rapid and Cheap Methodology for CRISPR/Cas9 Zebrafish Mutant Screening

机译:一种快速廉价的CRISPR / Cas9斑马鱼突变体筛选方法

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摘要

The introduction of new genome editing tools such as ZFNs, TALENs and, more recently, the CRISPR/Cas9 system, has greatly expanded the ability to knock-out genes in different animal models, including zebrafish. However, time and costs required for the screening of a huge number of animals, aimed to identify first founder fishes (F0), and then carriers (F1) are still a bottleneck. Currently, high-resolution melting (HRM) analysis is the most efficient technology for large-scale InDels detection, but the very expensive equipment demanded for its application may represent a limitation for research laboratories. Here, we propose a rapid and cheap method for high-throughput genotyping that displays efficiency rate similar to the HRM. In fact, using a common ViiA™7 real-time PCR system and optimizing the parameters of the melting analysis, we demonstrated that it is possible to discriminate between the mutant and the wild type melting curves. Due to its simplicity, rapidity and cheapness, our method can be used as a preliminary one-step approach for massive screening, in order to restrict the scope at a limited number of embryos and to focus merely on them for the next sequencing step, necessary for the exact sequence identification of the induced mutation. Moreover, thanks to its versatility, this simple approach can be readily adapted to the detection of any kind of genome editing approach directed to genes or regulatory regions and can be applied to many other animal models.Electronic supplementary materialThe online version of this article (doi:10.1007/s12033-015-9905-y) contains supplementary material, which is available to authorized users.
机译:ZFN,TALEN和最近的CRISPR / Cas9系统等新的基因组编辑工具的引入,极大地扩展了在包括斑马鱼在内的不同动物模型中敲除基因的能力。但是,筛选大量动物(旨在识别第一个始祖鱼(F0),然后识别载体(F1))所需的时间和成本仍然是瓶颈。当前,高分辨率熔解(HRM)分析是用于大规模InDels检测的最有效技术,但是其应用所需的非常昂贵的设备可能代表了研究实验室的局限。在这里,我们提出了一种快速且便宜的高通量基因分型方法,该方法显示出类似于HRM的效率。实际上,使用常见的ViiA™7实时PCR系统并优化了熔解分析的参数,我们证明了可以区分突变体和野生型熔解曲线。由于其简单,快速和廉价,我们的方法可用作大规模筛选的初步一步方法,以便将范围限制在有限数量的胚胎上,并仅将其专注于下一步的必要测序步骤用于诱导突变的确切序列鉴定。此外,由于其多功能性,这种简单的方法可以很容易地适用于检测针对基因或调控区域的任何类型的基因组编辑方法,并且可以应用于许多其他动物模型。电子补充材料本文的在线版本(doi :10.1007 / s12033-015-9905-y)包含补充材料,授权用户可以使用。

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