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Multigene sequence data and genetic diversity among 'Candidatus Phytoplasma ulmi' strains infecting Ulmus spp. in Serbia

机译:感染Ulmus spp的'Pultoplasma ulmi'菌株的多基因序列数据和遗传多样性。在塞尔维亚

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摘要

Elm yellows phytoplasmas (EY) belonging to the 16SrV-A subgroup were recently proposed as a new candidate species 'Candidatus Phytoplasma ulmi'. These pathogens infect elm trees, causing leaf yellowing and premature drying. In this study, 25 isolates originating from localities in northeast, east and southwest Serbia were characterized by means of RFLP analysis and DNA sequencing of four genomic loci: 16S rRNA, ribosomal protein rpl22-rps3, secY and map. In total, five different genotypes were identified based on collective sequencing of all four genes. Four of these genotypes showed significant nucleotide changes compared with the EY1~T reference strain. Phylogeny based on parsimony analyses of ribosomal protein, secY and map genetic loci indicated a single monophyletic origin of EY1~T and the new 'Ca. Phytoplasma ulmi' strains. Unlike phylogenetic clustering, DNA sequence comparison of EY1~T and the novel strains revealed mutations in oligonucleotide signature sequences for all three genes (16S, rpl22-rps3 and secY) used for the characterization and assignment of 16SrV-A phytoplasmas to the 'Ca. Phytoplasma ulmi' species in the original description. Based on their high degree of genetic variability, the Serbian strains were assigned to four different subtypes of 'Ca. Phytoplasma ulmi' (EY-S1, EY-S2, EY-S3 and EY-S4). New diagnostic enzymes for practical use in 'Ca. Phytoplasma ulmi' identification are proposed for the 16S rRNA, ribosomal protein and secY genes. The implications of genetic variability within signature sequences for taxonomy and identification of 'Ca. Phytoplasma' species, as well as the importance of geographic variability and number of strains characterized for species description, are discussed.
机译:最近提出了属于16SrV-A亚组的榆木黄质原浆菌(EY)作为新的候选种'Candidatus Phytoplasma ulmi'。这些病原体感染榆树,导致叶片发黄和过早干燥。在这项研究中,通过RFLP分析和DNA测序对四个基因组位点:16S rRNA,核糖体蛋白rpl22-rps3,secY和图谱进行了表征,鉴定了来自东北,东部和西南塞尔维亚地区的25个分离株。基于所有四个基因的集体测序,总共鉴定出五种不同的基因型。与EY1〜T参考菌株相比,这些基因型中有四个显示出显着的核苷酸变化。根据对核糖体蛋白,secY和图谱遗传位点的简约分析进行的系统发育分析表明,EY1〜T和新的'Ca是单一的起源。 ulhytoplasma ulmi'菌株。与系统发育聚类不同,EY1〜T和新菌株的DNA序列比较揭示了用于表征和分配16SrV-A植物原质的所有三个基因(16S,rpl22-rps3和secY)的寡核苷酸签名序列中的突变。原始植原体种。基于其高度的遗传变异性,塞尔维亚菌株被分配为'Ca'的四种不同亚型。植原体(EY-S1,EY-S2,EY-S3和EY-S4)。在'Ca中实际使用的新诊断酶。提出了针对16S rRNA,核糖体蛋白和secY基因的uly浆状体鉴定。签名序列中遗传变异对分类学和'Ca'鉴定的影响。讨论了植原体的种类,以及地理变异的重要性和描述种类的特征菌株的数量。

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