Key Laboratory of Biomass Chemical Engineering (Education Ministry), College of Chemical and Biological Engineering, Zhejiang University, Hangzhou 310027, China.
Institute of Biological Engineering, College of Chemical and Biological Engineering, Zhejiang University, Hangzhou 310027, China.
ACS Synth Biol. 2020 Nov 20;9(11):3114-3123. doi: 10.1021/acssynbio.0c00365. Epub 2020 Oct 13.
Existing methods of detecting foreign genes and their expression products from genetically modified organisms (GMOs) suffer from the requirement of professional equipment and skillful operators. The same problem stays for the CRISPR-Cas12a system, although it has been emerging as a powerful tool for nucleic acid detection due to its remarkable sensitivity and specificity. In this report, a portable platform for the visible detection of GMOs based on CRISPR-Cas12a was established, which relies on a color change of gold nanorods (GNRs) caused by the invertase-glucose oxidase cascade reaction and the Fenton reaction for signal readout. A nopaline synthase (NOS) terminator was employed as a model target commonly existing in foreign genes of GMOs. With the help of recombinase-aided amplification, this platform achieved comparable sensitivity of DNA targets (1 aM) with that of a fluorescence reporting assay. As low as 0.1 wt % genetically modified (GM) content in Bt-11 maize was visually observed by unaided eyes, and the semiquantitation of GM ingredients can be obtained within the range of 0.1 to 40 wt % through the absorption measurement of GNRs. Furthermore, five real samples were tested by our method, and the results indicated that the GM ingredient percentages of GMO samples were 2.24 and 24.08 wt %, respectively, while the other three samples were GMO-free. With the advantages of a simple procedure, no need for large or professional instruments, high sensitivity, and selectivity, this platform is expected to provide reasonable technical support for the safe supervision of GMOs.
现有的检测转基因生物(GMO)中外源基因及其表达产物的方法存在需要专业设备和熟练操作人员的问题。CRISPR-Cas12a 系统也存在同样的问题,尽管由于其出色的灵敏度和特异性,它已成为一种强大的核酸检测工具。在本报告中,建立了一种基于 CRISPR-Cas12a 的用于 GMO 可见检测的便携式平台,该平台依赖于 invertase-glucose oxidase 级联反应和 Fenton 反应引起的金纳米棒(GNRs)的颜色变化进行信号读取。采用作为 GMO 中外源基因中常见模型靶标的胭脂碱合成酶(NOS)终止子。借助重组酶辅助扩增,该平台实现了与荧光报告分析相当的 DNA 靶标(1 aM)的灵敏度。通过肉眼观察,Bt-11 玉米中低至 0.1wt%的转基因(GM)含量可被观察到,并且通过 GNRs 的吸收测量可在 0.1 至 40wt%的范围内获得 GM 成分的半定量结果。此外,我们的方法测试了五个实际样品,结果表明 GMO 样品的 GM 成分百分比分别为 2.24wt%和 24.08wt%,而另外三个样品不含 GMO。该平台具有操作简单、无需大型或专业仪器、灵敏度高和选择性好等优点,有望为 GMO 的安全监管提供合理的技术支持。