A Field-Portable Diagnostic Approach Confirms Laurel Wilt Disease Diagnosis in Minutes Instead of Days

Q2 Agricultural and Biological Sciences
Jeffrey L Hamilton, S. Fraedrich, C. Nairn, A. Mayfield, C. Villari
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引用次数: 2

Abstract

Background: Laurel wilt disease has caused the extensive mortality of lauraceous species in the southeastern United States. The causal agent is an invasive fungus, Raffaelea lauricola, which is a symbiont of the beetle Xyleborus glabratus and causes a rapid, fatal vascular wilt. Early diagnosis of laurel wilt is imperative for efficient disease management. The current diagnostic process, however, is slow due to the lengthy laboratory procedures required to confirm pathogen presence. Methods: We tested the robustness and field-portability of a recently developed, species-specific, loop-mediated isothermal amplification (LAMP) assay for R. lauricola, with the overall goal of eliminating the need for a laboratory confirmation of the diagnosis. We tested the robustness of the assay using benchtop equipment with naturally infected samples. We then tested the assay directly in the field using a portable device. Results: The assay successfully detected R. lauricola directly from symptomatic wood tissue using crude DNA extracts. Furthermore, the assay readily allowed users to distinguish between symptoms caused by R. lauricola infection and similar symptoms caused by other agents. In-field, we assayed wood samples from symptomatic redbay (Persea borbonia [L.] Spreng) and sassafras (Sassafras albidum [Nutt.] Nees) across the Southeast and successfully detected R. lauricola-infected trees in less than an hour. Conclusion: Results of this study confirmed that the field-deployable LAMP assay is robust and can rapidly and accurately detect R. lauricola in infected trees directly on-site. LAMP technology is well suited for in-field implementation, and these results serve as an incentive for further development and use of this technology in the field of forest pathology.
一种野外便携式诊断方法确认月桂枯萎病诊断在几分钟而不是几天
背景:月桂枯萎病已造成美国东南部月桂科植物大量死亡。致病因子是一种入侵真菌,月桂锈菌(Raffaelea lauricola),它是一种甲虫Xyleborus glabratus的共生体,能引起一种快速、致命的血管性枯萎病。月桂枯萎病的早期诊断是有效防治的必要条件。然而,由于确认病原体存在所需的漫长实验室程序,目前的诊断过程很慢。方法:我们测试了最近开发的一种物种特异性环介导等温扩增(LAMP)方法的稳健性和现场可移植性,其总体目标是消除对实验室诊断确认的需要。我们使用带有自然感染样本的台式设备测试了该分析的稳健性。然后,我们使用便携式设备直接在现场测试该分析。结果:采用DNA粗提物直接从病征木材组织中成功检测出月桂菌。此外,该试验很容易使使用者区分由月桂乳杆菌感染引起的症状和由其他药剂引起的类似症状。在野外,我们分析了有症状的红杉(波斯硼酸盐)的木材样本。[春天]和黄樟(黄樟)。[Nees]),并在不到一个小时的时间内成功检测到月桂菌感染的树木。结论:现场可部署LAMP检测方法具有较强的鲁棒性,能够快速、准确地在感染树木中直接检测月桂曲菌。LAMP技术非常适合在现场实施,这些结果激励了在森林病理学领域进一步发展和使用该技术。
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来源期刊
Arboriculture and Urban Forestry
Arboriculture and Urban Forestry Agricultural and Biological Sciences-Forestry
CiteScore
1.70
自引率
0.00%
发文量
25
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