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一种通过琼脂糖凝胶电泳结合阵列分析快速准确地现场检测大蒜感染病毒的廉价系统。

An Inexpensive System for Rapid and Accurate On-site Detection of Garlic-Infected Viruses by Agarose Gel Electrophoresis Followed by Array Assay.

作者信息

Furuta Kazuyoshi, Kawakubo Shusuke, Sasaki Jun, Masuta Chikara

机构信息

Hokusan Co. Ltd, Kitahiroshima, Hokkaido 061-1111, Japan.

Research Faculty of Agriculture, Hokkaido University, Sapporo 060-8589, Japan.

出版信息

Plant Pathol J. 2024 Feb;40(1):40-47. doi: 10.5423/PPJ.FT.11.2023.0146. Epub 2024 Feb 1.

Abstract

Garlic can be infected by a variety of viruses, but mixed infections with leek yellow stripe virus, onion yellow dwarf virus, and allexiviruses are the most damaging, so an easy, inexpensive on-site method to simultaneously detect at least these three viruses with a certain degree of accuracy is needed to produce virus-free plants. The most common laboratory method for diagnosis is multiplex reverse transcription polymerase chain reaction (RT-PCR). However, allexiviruses are highly diverse even within the same species, making it difficult to design universal PCR primers for all garlic-growing regions in the world. To solve this problem, we developed an inexpensive on-site detection system for the three garlic viruses that uses a commercial mobile PCR device and a compact electrophoresis system with a blue light. In this system, virus-specific bands generated by electrophoresis can be identified by eye in real time because the PCR products are labeled with a fluorescent dye, FITC. Because the electrophoresis step might eventually be replaced with a lateral flow assay (LFA), we also demonstrated that a uniplex LFA can be used for virus detection; however, multiplexing and a significant cost reduction are needed before it can be used for on-site detection.

摘要

大蒜可被多种病毒感染,但与韭菜黄条病毒、洋葱黄矮病毒和蒜隐潜病毒的混合感染危害最大,因此需要一种简便、廉价的现场检测方法,能够以一定的准确度同时检测至少这三种病毒,以便培育无病毒植株。最常见的实验室诊断方法是多重逆转录聚合酶链反应(RT-PCR)。然而,即使在同一物种内,蒜隐潜病毒也具有高度多样性,这使得难以针对世界上所有大蒜种植地区设计通用的PCR引物。为了解决这个问题,我们开发了一种用于检测三种大蒜病毒的廉价现场检测系统,该系统使用商用移动PCR设备和带蓝光的紧凑型电泳系统。在这个系统中,由于PCR产物用荧光染料异硫氰酸荧光素(FITC)标记,通过电泳产生的病毒特异性条带可实时肉眼识别。由于电泳步骤最终可能会被侧向流动分析(LFA)取代,我们还证明了单重LFA可用于病毒检测;然而,在用于现场检测之前,需要进行多重检测并大幅降低成本。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba00/10850529/48344e175c84/ppj-ft-11-2023-0146f1.jpg

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