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LAMP 法快速检测球腔菌病害

A LAMP Assay for Rapid Detection of the Pitch Canker Pathogen .

机构信息

D. B. Warnell School of Forestry of Natural Resources, University of Georgia, Athens, GA 30602, U.S.A.

Forestry and Agricultural Biotechnology Institute (FABI), Department of Biochemistry, Genetics and Microbiology, University of Pretoria, Pretoria 0028, South Africa.

出版信息

Plant Dis. 2023 Oct;107(10):2916-2923. doi: 10.1094/PDIS-04-22-0972-SR. Epub 2023 Oct 11.

Abstract

The pine pitch canker pathogen is endemic in the southeastern United States and Central America and represents an invasive threat globally. This ecologically adaptable fungus readily infects all parts of its pine hosts, leading to widespread mortality of nursery seedlings and decline in the health and productivity of forest stands. Because trees infected by can remain asymptomatic for long periods of time, accurate and rapid tools are needed for real-time diagnostics and surveillance at ports, in nurseries, and in plantations. To meet this need and to limit the spread and impact of the pathogen, we developed a molecular test using loop-mediated isothermal amplification (LAMP), a technology that allows for the rapid detection of pathogen DNA on portable, field-capable devices. LAMP primers were designed and validated to amplify a gene region unique to . Using a globally representative collection of isolates and other closely related species, we have demonstrated that the assay can be used to identify across its genetic diversity and that it is sensitive to as few as 10 cells from purified DNA extracts. The assay can also be used with a simple, pipette-free DNA extraction method and is compatible with testing symptomatic pine tissues in the field. This assay has the potential to facilitate diagnostic and surveillance efforts both in the laboratory and in the field and, thus, to reduce the spread and impact of pitch canker worldwide.

摘要

松脂溃疡病菌在东南部的美国和中美洲流行,在全球范围内是一种具有入侵性的威胁。这种生态适应性强的真菌很容易感染其松树宿主的所有部位,导致苗圃幼苗广泛死亡,森林林分的健康和生产力下降。因为感染 的树木可能长时间没有症状,所以需要准确和快速的工具来进行实时诊断和在港口、苗圃和种植园进行监测。为了满足这一需求,并限制病原体的传播和影响,我们使用环介导等温扩增(LAMP)技术开发了一种分子检测方法,该技术允许在便携式现场设备上快速检测病原体 DNA。设计和验证了 LAMP 引物,以扩增 特有的基因区域。利用具有全球代表性的 分离株和其他密切相关的物种集合,我们已经证明该检测可以用于识别 的遗传多样性,并且对从纯化 DNA 提取物中仅 10 个细胞也很敏感。该检测还可以与一种简单的、无需移液器的 DNA 提取方法一起使用,并且与现场检测有症状的松组织兼容。该检测有可能在实验室和现场都促进诊断和监测工作,从而减少世界各地松脂溃疡病的传播和影响。

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