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多位点序列分析揭示了欧洲果树植原体的遗传多样性,并支持种间重组的存在。

Multilocus sequence analysis reveals the genetic diversity of European fruit tree phytoplasmas and supports the existence of inter-species recombination.

机构信息

UMR Génomique Diversité Pouvoir Pathogène, INRA, Université Victor Ségalen Bordeaux 2, 71 Avenue Edouard Bourlaux, BP81, F-33883 Villenave d'Ornon Cedex, France.

Institute of Botany, National Academy of Sciences of Azerbaijan, Patamdar shosse 40, AZ-1073, Baku, Azerbaijan.

出版信息

Microbiology (Reading). 2011 Feb;157(Pt 2):438-450. doi: 10.1099/mic.0.043547-0. Epub 2010 Sep 16.

Abstract

The genetic diversity of three temperate fruit tree phytoplasmas 'Candidatus Phytoplasma prunorum', 'Ca. P. mali' and 'Ca. P. pyri' has been established by multilocus sequence analysis. Among the four genetic loci used, the genes imp and aceF distinguished 30 and 24 genotypes, respectively, and showed the highest variability. Percentage of substitution for imp ranged from 50 to 68 % according to species. Percentage of substitution varied between 9 and 12 % for aceF, whereas it was between 5 and 6 % for pnp and secY. In the case of 'Ca P. prunorum' the three most prevalent aceF genotypes were detected in both plants and insect vectors, confirming that the prevalent isolates are propagated by insects. The four isolates known to be hypo-virulent had the same aceF sequence, indicating a possible monophyletic origin. Haplotype network reconstructed by eBURST revealed that among the 34 haplotypes of 'Ca. P. prunorum', the four hypo-virulent isolates also grouped together in the same clade. Genotyping of some Spanish and Azerbaijanese 'Ca. P. pyri' isolates showed that they shared some alleles with 'Ca. P. prunorum', supporting for the first time to our knowledge, the existence of inter-species recombination between these two species.

摘要

通过多位点序列分析,建立了三种温带果树植原体'Candidatus Phytoplasma prunorum'、'Ca. P. mali'和'Ca. P. pyri'的遗传多样性。在所使用的四个基因座中,imp 和 aceF 基因分别区分了 30 和 24 种基因型,显示出最高的变异性。根据物种的不同,imp 的替换率范围为 50%至 68%。aceF 的替换率在 9%至 12%之间,而 pnp 和 secY 的替换率在 5%至 6%之间。在'Ca P. prunorum'的情况下,在植物和昆虫载体中都检测到了三种最常见的 aceF 基因型,证实了流行的分离株是通过昆虫传播的。已知的四种弱毒分离株具有相同的 aceF 序列,表明可能具有单系起源。通过 eBURST 重建的单倍型网络表明,在'Ca. P. prunorum'的 34 个单倍型中,这四种弱毒分离株也聚集在同一分支中。对一些西班牙和阿塞拜疆的'Ca. P. pyri'分离株进行的基因分型表明,它们与'Ca. P. prunorum'共享一些等位基因,这首次支持了我们所知道的这两个物种之间存在种间重组。

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