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E-probe Diagnostic Nucleic acid Analysis (EDNA): A theoretical approach for handling of next generation sequencing data for diagnostics

机译:电子探针诊断核酸分析(EDNA):一种用于诊断的下一代测序数据的理论方法

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摘要

Plant biosecurity requires rapid identification of pathogenic organisms. While there are many pathogen-specific diagnostic assays, the ability to test for large numbers of pathogens simultaneously is lacking. Next generation sequencing (NGS) allows one to detect all organisms within a given sample, but has computational limitations during assembly and similarity searching of sequence data which extend the time needed to make a diagnostic decision. To minimize the amount of bioinformatic processing time needed, unique pathogen-specific sequences (termed e-probes) were designed to be used in searches of unassembled, non-quality checked, sequence data. E-probes have been designed and tested for several selected phytopathogens, including an RNA virus, a DNA virus, bacteria, fungi, and an oomycete, illustrating the ability to detect several diverse plant pathogens. E-probes of 80 or more nucleotides in length provided satisfactory levels of precision (75%). The number of e-probes designed for each pathogen varied with the genome size of the pathogen. To give confidence to diagnostic calls, a statistical method of determining the presence of a given pathogen was developed, in which target e-probe signals (detection signal) are compared to signals generated by a decoy set of e-probes (background signal). The E-probe Diagnostic Nucleic acid Analysis (EDNA) process provides the framework for a new sequence-based detection system that eliminates the need for assembly of NGS data
机译:植物的生物安全性要求快速鉴定病原生物。尽管有许多病原体特异性诊断测定法,但缺乏同时测试大量病原体的能力。下一代测序(NGS)可以检测给定样品中的所有生物,但是在组装和序列数据相似性搜索过程中存在计算限制,这延长了做出诊断决策所需的时间。为了最大程度地减少所需的生物信息处理时间,设计了独特的病原体特异性序列(称为电子探针),用于搜索未组装的,未经质量检查的序列数据。电子探针已经针对几种选定的植物病原体进行了设计和测试,包括RNA病毒,DNA病毒,细菌,真菌和卵菌,证明了检测多种植物病原体的能力。长度为80个或更多核苷酸的电子探针可提供令人满意的精确度(75%)。为每种病原体设计的电子探针的数量随病原体的基因组大小而变化。为了使诊断更具信心,开发了一种确定给定病原体存在的统计方法,其中将目标电子探针信号(检测信号)与由电子探针诱饵集生成的信号(背景信号)进行比较。电子探针核酸诊断分析(EDNA)过程为基于序列的新检测系统提供了框架,从而消除了对NGS数据进行组装的需要

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