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基于纳米孔测序的植物组织中检疫性病原菌实时现场诊断

Real-Time On-Site Diagnosis of Quarantine Pathogens in Plant Tissues by Nanopore-Based Sequencing.

作者信息

Marcolungo Luca, Passera Alessandro, Maestri Simone, Segala Elena, Alfano Massimiliano, Gaffuri Francesca, Marturano Giovanni, Casati Paola, Bianco Piero Attilio, Delledonne Massimo

机构信息

Department of Biotechnology, University of Verona, Strada Le Grazie 15, 37134 Verona, Italy.

Department of Agricultural and Environmental Sciences-Production, Landscape, Agroenergy, University of Milano, Via Celoria 2, 20133 Milan, Italy.

出版信息

Pathogens. 2022 Feb 2;11(2):199. doi: 10.3390/pathogens11020199.

Abstract

Rapid and sensitive assays for the identification of plant pathogens are necessary for the effective management of crop diseases. The main limitation of current diagnostic testing is the inability to combine broad and sensitive pathogen detection with the identification of key strains, pathovars, and subspecies. Such discrimination is necessary for quarantine pathogens, whose management is strictly dependent on genotype identification. To address these needs, we have established and evaluated a novel all-in-one diagnostic assay based on nanopore sequencing for the detection and simultaneous characterization of quarantine pathogens, using as a case study. The assay proved to be at least as sensitive as standard diagnostic tests and the quantitative results agreed closely with qPCR-based analysis. The same sequencing results also allowed discrimination between subspecies when present either individually or in combination. Pathogen detection and typing were achieved within 13 min of sequencing owing to the use of an internal control that allowed to stop sequencing when sufficient data had accumulated. These advantages, combined with the use of portable equipment, will facilitate the development of next-generation diagnostic assays for the efficient monitoring of other plant pathogens.

摘要

快速灵敏的植物病原体鉴定检测方法对于有效管理作物病害至关重要。当前诊断测试的主要局限性在于无法将广泛且灵敏的病原体检测与关键菌株、致病型和亚种的鉴定相结合。对于检疫性病原体而言,这种区分是必要的,因为其管理严格依赖于基因型鉴定。为满足这些需求,我们建立并评估了一种基于纳米孔测序的新型一体化诊断检测方法,以 为例,用于检测和同时鉴定检疫性病原体。该检测方法被证明至少与标准诊断测试一样灵敏,定量结果与基于qPCR的分析结果密切吻合。当亚种单独或组合存在时,相同的测序结果也能实现亚种间的区分。由于使用了内部对照,当积累了足够的数据时可停止测序,因此在测序13分钟内即可实现病原体检测和分型。这些优势,再加上便携式设备的使用,将有助于开发下一代诊断检测方法,以高效监测其他植物病原体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/60be/8876587/e8ed65ce1c77/pathogens-11-00199-g001.jpg

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