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Single Nucleotide Polymorphism-Based Diagnostic System for Crop-Associated Sclerotinia Species

机译:基于单核苷酸多态性的作物相关菌核病诊断系统

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摘要

A molecular diagnostic system using single nucleotide polymorphisms (SNPs) was developed to identify four Sclerotinia species: S. sclerotiorum (Lib.) de Bary, S. minor Jagger, S. trifoliorum Erikss., and the undescribed species Sclerotinia species 1. DNAs of samples are hybridized with each of five 15-bp oligonucleotide probes containing an SNP site midsequence unique to each species. For additional verification, hybridizations were performed using diagnostic single nucleotide substitutions at a 17-bp sequence of the calmodulin locus. The accuracy of these procedures was compared to that of a restriction fragment length polymorphism (RFLP) method based on Southern hybridizations of EcoRI-digested genomic DNA probed with the ribosomal DNA-containing plasmid probe pMF2, previously shown to differentiate S. sclerotiorum, S. minor, and S. trifoliorum. The efficiency of the SNP-based assay as a diagnostic test was evaluated in a blind screening of 48 Sclerotinia isolates from agricultural and wild hosts. One isolate of Botrytis cinerea was used as a negative control. The SNP-based assay accurately identified 96% of Sclerotinia isolates and could be performed faster than RFLP profiling using pMF2. This method shows promise for accurate, high-throughput species identification.
机译:开发了一种使用单核苷酸多态性(SNP)的分子诊断系统来鉴定四种菌核菌:S. sclerotiorum(Lib。)de Bary,S。minor Jagger,S。trifoliorum Erikss。和未描述的菌核菌菌种1。将样品与五个15-bp寡核苷酸探针中的每一个杂交,每个探针都含有每个物种唯一的SNP位点中间序列。为了进一步验证,在钙调蛋白基因座的17-bp序列上使用诊断性单核苷酸取代进行了杂交。将这些程序的准确性与限制性片段长度多态性(RFLP)方法的准确性进行了比较,RFLP方法基于用含核糖体DNA的质粒探针pMF2探测的经EcoRI消化的基因组DNA的Southern杂交,先前已证明可区分S. sclerotiorum,S.未成年人,和S. trifoliorum。在对来自农业和野生宿主的48个菌核病菌的盲筛中,评估了基于SNP的检测作为诊断测试的效率。一种分离的灰葡萄孢菌被用作阴性对照。基于SNP的测定法可准确鉴定出96%的菌核病菌,并且比使用pMF2进行RFLP分析更快。这种方法显示出准确,高通量物种鉴定的希望。

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