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GraphMap 辅助的纳米孔测序技术在田间土壤中全面检测病原体

Nanopore Sequencing with GraphMap for Comprehensive Pathogen Detection in Potato Field Soil.

机构信息

Department of Plant Pathology, Washington State University, Pullman, WA 99164-6430, U.S.A.

Department of Bioinformatics and Genomics, The University of North Carolina at Charlotte, Charlotte, NC 28223, U.S.A.

出版信息

Plant Dis. 2023 Aug;107(8):2288-2295. doi: 10.1094/PDIS-01-23-0052-SR. Epub 2023 Aug 18.

Abstract

Early detection of causal pathogens is important to prevent crop loss from diseases. However, some diseases, such as soilborne diseases, are difficult to diagnose due to the absence of visible or characteristic symptoms. In the present study, the use of the Oxford Nanopore MinION sequencer as a molecular diagnostic tool was assessed due to its long-read sequencing capabilities and portability. Nucleotide samples (DNA or RNA) from potato field soils were sequenced and analyzed using a locally curated pathogen database, followed by identification via sequence mapping. We performed computational speed tests of three commonly used mapping/annotation tools (BLAST, BWA-BLAST, and BWA-GraphMap) and found BWA-GraphMap to be the fastest tool for local searching against our curated pathogen database. The data collected demonstrate the high potential of Nanopore sequencing as a minimally biased diagnostic tool for comprehensive pathogen detection in soil from potato fields. Our GraphMap-based MinION sequencing method could be useful as a predictive approach for disease management by identifying pathogens present in field soil prior to planting. Although this method still needs further experimentation with a larger sample size for practical use, the data analysis pipeline presented can be applied to other cropping systems and diagnostics for detecting multiple pathogens.

摘要

早期发现致病病原体对于防止作物因疾病而减产非常重要。然而,一些疾病,如土传疾病,由于缺乏可见或特征性症状,难以诊断。在本研究中,由于具有长读测序能力和便携性,评估了 Oxford Nanopore MinION 测序仪作为分子诊断工具的应用。使用本地 curated 病原体数据库对来自马铃薯田间土壤的核苷酸样本(DNA 或 RNA)进行测序和分析,然后通过序列映射进行鉴定。我们对三种常用的映射/注释工具(BLAST、BWA-BLAST 和 BWA-GraphMap)进行了计算速度测试,发现 BWA-GraphMap 是针对我们 curated 病原体数据库进行本地搜索的最快工具。收集的数据表明,Nanopore 测序具有很高的潜力,可以作为一种最小偏差的诊断工具,用于全面检测马铃薯田间土壤中的病原体。我们基于 GraphMap 的 MinION 测序方法可以通过在种植前识别田间土壤中存在的病原体,作为一种预测疾病管理的方法。尽管这种方法仍需要进一步用更大的样本量进行实验,以便实际应用,但所提出的数据分析管道可以应用于其他种植系统和用于检测多种病原体的诊断。

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