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DNA Barcoding for Efficient Species- and Pathovar-Level Identification of the Quarantine Plant Pathogen Xanthomonas

机译:DNA条形码用于检疫植物病原体黄单胞菌的有效物种和病原体水平鉴定

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摘要

Genus Xanthomonas comprises many economically important plant pathogens that affect a wide range of hosts. Indeed, fourteen Xanthomonas species/pathovars have been regarded as official quarantine bacteria for imports in China. To date, however, a rapid and accurate method capable of identifying all of the quarantine species/pathovars has yet to be developed. In this study, we therefore evaluated the capacity of DNA barcoding as a digital identification method for discriminating quarantine species/pathovars of Xanthomonas. For these analyses, 327 isolates, representing 45 Xanthomonas species/pathovars, as well as five additional species/pathovars from GenBank (50 species/pathovars total), were utilized to test the efficacy of four DNA barcode candidate genes (16S rRNA gene, cpn60, gyrB, and avrBs2). Of these candidate genes, cpn60 displayed the highest rate of PCR amplification and sequencing success. The tree-building (Neighbor-joining), ‘best close match’, and barcode gap methods were subsequently employed to assess the species- and pathovar-level resolution of each gene. Notably, all isolates of each quarantine species/pathovars formed a monophyletic group in the neighbor-joining tree constructed using the cpn60 sequences. Moreover, cpn60 also demonstrated the most satisfactory results in both barcoding gap analysis and the ‘best close match’ test. Thus, compared with the other markers tested, cpn60 proved to be a powerful DNA barcode, providing a reliable and effective means for the species- and pathovar-level identification of the quarantine plant pathogen Xanthomonas.
机译:Xanthomonas属包括许多对经济具有重要意义的植物病原体,可影响多种宿主。实际上,已经有14种Xanthomonas物种/病原体被认为是中国进口的官方检疫细菌。然而,迄今为止,尚未开发出能够识别所有检疫物种/病原体的快速准确的方法。因此,在这项研究中,我们评估了DNA条形码作为区分Xanthomonas检疫物种/致病菌的数字识别方法的能力。对于这些分析,使用了代表45种黄单胞菌属/病原体以及来自GenBank的另外5种/病原体(共50种/病原体)的327个分离物来测试4个DNA条码候选基因(16S rRNA基因,cpn60)的功效。 ,gyrB和avrBs2)。在这些候选基因中,cpn60表现出最高的PCR扩增和测序成功率。随后,采用了树木构建(邻居连接),“最佳匹配”和条形码间隔法来评估每个基因的物种和病原体水平的分辨率。值得注意的是,每个隔离区物种/病原体的所有分离物都在使用cpn60序列构建的邻居结合树中形成了单系统群体。此外,cpn60在条码间隔分析和“最佳匹配”测试中也显示出最令人满意的结果。因此,与测试的其他标记相比,cpn60被证明是功能强大的DNA条码,为隔离植物病原体Xanthomonas的物种和病原体水平鉴定提供了可靠而有效的手段。

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