College of Food Science and Technology, Ningbo University, Ningbo, 315800, China; State Key Laboratory for Managing Biotic and Chemical Threats to the Quality and Safety of Agro-products, Key Laboratory of Traceability for Agricultural Genetically Modified Organisms, Ministry of Agriculture and Rural Affairs, Zhejiang Academy of Agricultural Sciences, Hangzhou, 310021, China.
State Key Laboratory for Managing Biotic and Chemical Threats to the Quality and Safety of Agro-products, Key Laboratory of Traceability for Agricultural Genetically Modified Organisms, Ministry of Agriculture and Rural Affairs, Zhejiang Academy of Agricultural Sciences, Hangzhou, 310021, China.
Anal Chim Acta. 2024 May 15;1303:342519. doi: 10.1016/j.aca.2024.342519. Epub 2024 Mar 26.
The gene editing technology represented by clustered rule-interspersed short palindromic repeats (CRISPR)/Cas9 has developed as a common tool in the field of biotechnology. Many gene-edited products in plant varieties have recently been commercialized. However, the rapid on-site visual detection of gene-edited products without instrumentation remains challenging. This study aimed to develop a novel and efficient method, termed the CRISPR/SpRY detection platform, for the rapid screening of CRISPR/Cas9-induced mutants based on CRISPR/SpRY-mediated in vitro cleavage using rice (Oryza sativa L.) samples genetically edited at the TGW locus as an example. We designed the workflow of the CRISPR/SpRY detection platform and conducted a feasibility assessment. Subsequently, we optimized the reaction system of CRISPR/SpRY, and developed a one-pot CRISPR/SpRY assay by integrating recombinase polymerase amplification (RPA). The sensitivity of the method was further verified using recombinant plasmids. The proposed method successfully identified various types of mutations, including insertions, deletions (indels), and nucleotide substitutions, with excellent sensitivity. Finally, the applicability of this method was validated using different rice samples. The entire process was completed in less than an hour, with a limit of detection as low as 1%. Compared with previous methods, our approach is simple to operate, instrumentation-free, cost-effective, and time-efficient. The primary significance lies in the liberation of our developed system from the limitations imposed using protospacer adjacent motif sequences. This expands the scope and versatility of the CRISPR-based detection platform, making it a promising and groundbreaking platform for detecting mutations induced by gene editing.
以成簇规律间隔短回文重复序列(CRISPR)/Cas9 为代表的基因编辑技术已发展成为生物技术领域的常用工具。许多植物品种的基因编辑产品最近已商业化。然而,无需仪器即可快速现场可视化检测基因编辑产品仍然具有挑战性。本研究旨在开发一种新的有效方法,称为 CRISPR/SpRY 检测平台,用于快速筛选基于 CRISPR/SpRY 介导的体外切割的 CRISPR/Cas9 诱导突变体,以在 TGW 基因座编辑的水稻(Oryza sativa L.)样品为例。我们设计了 CRISPR/SpRY 检测平台的工作流程并进行了可行性评估。随后,我们优化了 CRISPR/SpRY 的反应体系,并通过整合重组酶聚合酶扩增(RPA)开发了一种一键式 CRISPR/SpRY 测定法。通过使用重组质粒进一步验证了该方法的灵敏度。该方法成功鉴定了各种类型的突变,包括插入、缺失(indels)和核苷酸取代,具有出色的灵敏度。最后,使用不同的水稻样品验证了该方法的适用性。整个过程在不到一个小时内完成,检测限低至 1%。与以前的方法相比,我们的方法操作简单,无需仪器,具有成本效益,并且耗时短。该方法的主要意义在于使我们开发的系统摆脱了原间隔基序序列的限制。这扩展了基于 CRISPR 的检测平台的范围和多功能性,使其成为检测基因编辑诱导突变的有前途和开创性的平台。