Department of Entomology, University of California, Riverside, CA, 92521, USA.
Mol Ecol Resour. 2017 Jul;17(4):598-607. doi: 10.1111/1755-0998.12599. Epub 2016 Oct 18.
Extracting and sequencing DNA from specimens can impose major time and monetary costs to studies requiring genotyping, or identification to species, of large numbers of individuals. As such, so-called direct PCR methods have been developed enabling significant savings at the DNA extraction step. Similarly, real-time quantitative PCR techniques (qPCR) offer very cost-effective alternatives to sequencing. High-resolution melt analysis (HRM) is a qPCR method that incorporates an intercalating dye into a double-stranded PCR amplicon. The dye fluoresces brightly, but only when it is bound. Thus, after PCR, raising the temperature of the amplicon while measuring the fluorescence of the reaction results in the generation of a sequence-specific melt curve, allowing discrimination of genotypes. Methods combining HRM (or other qPCR methods) and direct PCR have not previously been reported, most likely due to concerns that any tissue in the reaction tube would interfere with detection of the fluorescent signal. Here, we couple direct PCR with HRM and, by way of three examples, demonstrate a very quick and cost-effective method for genotyping large numbers of specimens, using Rotor-Gene HRM instruments (QIAGEN). In contrast to the heated-block design of most qPCR/HRM instruments, the Rotor-Gene's centrifugal rotor and air-based temperature-regulation system facilitate our method by depositing tissues away from the pathway of the machine's fluorescence detection optics.
从标本中提取和测序 DNA 会给需要对大量个体进行基因分型或物种鉴定的研究带来重大的时间和金钱成本。因此,已经开发了所谓的直接 PCR 方法,从而在 DNA 提取步骤中节省了大量成本。同样,实时定量 PCR 技术 (qPCR) 为测序提供了非常经济有效的替代方法。高分辨率熔解分析 (HRM) 是一种 qPCR 方法,它将嵌入染料掺入双链 PCR 扩增子中。染料荧光强烈,但只有在结合时才会发光。因此,在 PCR 之后,在测量反应荧光的同时升高扩增子的温度会产生序列特异性熔解曲线,从而能够区分基因型。结合 HRM(或其他 qPCR 方法)和直接 PCR 的方法以前没有报道过,这很可能是因为担心反应管中的任何组织都会干扰荧光信号的检测。在这里,我们将直接 PCR 与 HRM 相结合,并通过三个示例展示了一种非常快速且具有成本效益的方法,用于使用 Rotor-Gene HRM 仪器 (QIAGEN) 对大量标本进行基因分型。与大多数 qPCR/HRM 仪器的加热块设计不同,Rotor-Gene 的离心转子和基于空气的温度调节系统通过将组织沉积在远离机器荧光检测光学器件路径的位置,促进了我们的方法。