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利用免疫捕获-逆转录环介导等温扩增检测技术快速检测甜橙衰退病毒分离物。

A rapid detection tool for VT isolates of Citrus tristeza virus by immunocapture-reverse transcriptase loop-mediated isothermal amplification assay.

机构信息

USDA-ARS, San Joaquin Valley Agricultural Sciences Center, Parlier, CA, United States of America.

Citrus Pest Detection Program, Central California Tristeza Eradication Agency, Tulare, CA, United States of America.

出版信息

PLoS One. 2019 Sep 5;14(9):e0222170. doi: 10.1371/journal.pone.0222170. eCollection 2019.

Abstract

Severe strains of Citrus tristeza virus (CTV) cause quick decline and stem pitting resulting in significant economic losses in citrus production. A immunocapture reverse-transcriptase loop-mediated amplification (IC-RT-LAMP) assay was developed in this study to detect the severe VT strains that are typically associated with severe CTV symptoms. The sensitivity of RT-LAMP assay was determined by ten-fold serial dilutions of CA-VT-AT39 RNA, in comparison to one-step RT-droplet digital (dd) PCR. RT-LAMP detected up to 0.002 ng RNA with an amplification time of 10:35 (min:sec.), equivalent to 11.3 copies as determined by one step RT-ddPCR. The RT-LAMP assay specifically detected CA-VT-AT39 RNA and did not cross react with other CTV genotypes tested (T36, T30, RB, S1 and T68). To facilitate rapid on-site detection, the RT-LAMP assay was improved by first capturing the CTV virions from citrus crude leaf sap using CTV-IgG (IC-RT-LAMP), thereby eliminating nucleic acid extraction steps. IC-RT-LAMP assay was optimized with two-fold dilutions of CTV-IgG ranging from 1:500 to 1:16,000. The IC-RT-LAMP assay detected the CA-VT-AT39 virions in all dilutions tested. The minimum amplification time was 6:45 (min:sec) with 1:500 and 1:1000 of CTV-IgG dilutions. The limit of detection of IC-RT-LAMP assay with crude leaf sap of CA-VT-AT39 was 1:320 with a maximum amplification time of 9:08 (min:sec). The IC-RT-LAMP assay was validated for VT genotype by comparing to IC-RT-qPCR using the CTV from 40 field tree samples. A 100% agreement was observed between tests, regardless of single or mixed infections of CTV VT with other genotypes. Therefore, the IC-RT-LAMP assay can serve as a useful tool in the management of potentially severe strains of CTV.

摘要

严重柑橘衰退病毒(CTV)株系会导致柑橘快速衰退和茎陷斑,给柑橘产业造成巨大的经济损失。本研究建立了一种免疫捕获反转录环介导等温扩增(IC-RT-LAMP)检测方法,用于检测与严重 CTV 症状相关的严重 VT 株系。与一步法 RT-微滴数字 PCR(ddPCR)相比,通过 CA-VT-AT39 RNA 的十倍系列稀释来确定 RT-LAMP 检测方法的灵敏度。RT-LAMP 在 10:35 分钟内检测到低至 0.002ng RNA,相当于一步法 RT-ddPCR 确定的 11.3 拷贝。RT-LAMP 检测方法特异性检测 CA-VT-AT39 RNA,与其他测试的 CTV 基因型(T36、T30、RB、S1 和 T68)无交叉反应。为了便于现场快速检测,首先使用 CTV-IgG(IC-RT-LAMP)从柑橘粗叶汁中捕获 CTV 病毒粒子,从而省去核酸提取步骤,对 RT-LAMP 检测方法进行了改进。通过 CTV-IgG 从 1:500 到 1:16000 的两倍稀释度优化了 IC-RT-LAMP 检测方法。IC-RT-LAMP 检测方法检测到所有测试稀释度的 CA-VT-AT39 病毒粒子。使用 1:500 和 1:1000 的 CTV-IgG 稀释度,最小扩增时间为 6:45(分钟:秒)。使用 CA-VT-AT39 粗叶汁的 IC-RT-LAMP 检测方法的检测限为 1:320,最大扩增时间为 9:08(分钟:秒)。使用来自 40 个田间树样本的 CTV 通过与 IC-RT-qPCR 比较验证了 VT 基因型的 IC-RT-LAMP 检测方法。两种检测方法的结果完全一致,无论 CTV VT 是单一感染还是与其他基因型混合感染。因此,IC-RT-LAMP 检测方法可作为管理潜在严重 CTV 株系的有用工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23d0/6728045/94f9f6fb41e4/pone.0222170.g001.jpg

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