首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Multilocus Sequence Analysis of Xanthomonads Causing Bacterial Spot of Tomato and Pepper Plants Reveals Strains Generated by Recombination among Species and Recent Global Spread of Xanthomonas gardneri
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Multilocus Sequence Analysis of Xanthomonads Causing Bacterial Spot of Tomato and Pepper Plants Reveals Strains Generated by Recombination among Species and Recent Global Spread of Xanthomonas gardneri

机译:引起番茄和辣椒植物细菌斑点的黄单胞菌的多基因座序列分析揭示了种间重组产生的菌株以及黄单胞菌最近的全球传播。

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摘要

Four Xanthomonas species are known to cause bacterial spot of tomato and pepper, but the global distribution and genetic diversity of these species are not well understood. A collection of bacterial spot-causing strains from the Americas, Africa, Southeast Asia, and New Zealand were characterized for genetic diversity and phylogenetic relationships using multilocus sequence analysis of six housekeeping genes. By examining strains from different continents, we found unexpected phylogeographic patterns, including the global distribution of a single multilocus haplotype of X. gardneri, possible regional differentiation in X. vesicatoria, and high species diversity on tomato in Africa. In addition, we found evidence of multiple recombination events between X. euvesicatoria and X. perforans. Our results indicate that there have been shifts in the species composition of bacterial spot pathogen populations due to the global spread of dominant genotypes and that recombination between species has generated genetic diversity in these populations.
机译:已知有四种Xanthomonas物种引起番茄和辣椒的细菌斑病,但是对这些物种的全球分布和遗传多样性知之甚少。使用六个管家基因的多基因座序列分析,从美洲,非洲,东南亚和新西兰收集了一系列细菌性斑点病菌株,以鉴定其遗传多样性和系统发育关系。通过检查来自不同大陆的菌株,我们发现了意想不到的系统地理学模式,包括单个多位点单倍体加德纳菌的全球分布,维克萨氏菌的可能区域分化以及非洲番茄的高物种多样性。另外,我们发现X. euvesicatoria和X. perforans之间发生多次重组事件的证据。我们的结果表明,由于主要基因型的全球传播,细菌斑点病原体种群的物种组成发生了变化,物种之间的重组已在这些种群中产生了遗传多样性。

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