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基于 secY 基因序列的植原体系统发育分析与划分。

Phylogenetic analysis and delineation of phytoplasmas based on secY gene sequences.

机构信息

Molecular Plant Pathology Laboratory, USDA, ARS, Beltsville, MD 20705, USA.

FLREC, University of Florida, Fort Lauderdale, FL 33314, USA.

出版信息

Int J Syst Evol Microbiol. 2010 Dec;60(Pt 12):2887-2897. doi: 10.1099/ijs.0.019695-0. Epub 2010 Jan 22.

Abstract

The secY gene sequence is more variable than that of the 16S rRNA gene. Comparative phylogenetic analyses with 16S rRNA and secY gene sequences from 80 and 83 phytoplasma strains, respectively, were performed to assess the efficacy of these sequences for delineating phytoplasma strains within each 16Sr group. The phylogenetic interrelatedness among phytoplasma taxa inferred by secY gene-based phylogeny was nearly congruent with that inferred by 16S rRNA gene-based phylogeny. Phylogenetic analysis based on the secY gene permitted finer differentiation of phytoplasma strains, however. The secY gene-based phylogeny not only readily resolved 16Sr subgroups within a given 16Sr group, but also delineated distinct lineages irresolvable by 16S rRNA gene-based phylogeny. Such high resolving power makes the secY gene a more useful genetic marker than the 16S rRNA gene for finer differentiation of closely related phytoplasma strains based on RFLP analysis with selected restriction enzymes. Such strains were readily identified by collective secY RFLP patterns. The genetic interrelationships among these strains were determined by pattern similarity coefficients, which coincided with delineations by phylogenetic analysis. This study also revealed two heterogeneous spc operons present in the phytoplasma clade. This latter finding may have significant implications for phytoplasma evolution.

摘要

SecY 基因序列比 16S rRNA 基因序列的变异性更大。对 80 株和 83 株植原体菌株的 16S rRNA 和 secY 基因序列进行了比较系统发育分析,以评估这些序列在每个 16Sr 组内划分植原体菌株的有效性。基于 secY 基因的系统发育推断的植原体分类群之间的系统发育亲缘关系与基于 16S rRNA 基因的系统发育推断的亲缘关系几乎一致。然而,基于 secY 基因的系统发育分析能够更精细地区分植原体菌株。基于 secY 基因的系统发育不仅容易分辨给定 16Sr 组内的 16Sr 亚组,而且还可以区分基于 16S rRNA 基因的系统发育无法分辨的不同谱系。这种高分辨率使 secY 基因成为比 16S rRNA 基因更有用的遗传标记,用于通过选定的限制酶进行的 RFLP 分析对密切相关的植原体菌株进行更精细的分化。这些菌株可以通过集体 secY RFLP 模式轻松识别。这些菌株之间的遗传相互关系由模式相似系数确定,这与系统发育分析的划分一致。本研究还揭示了植原体群系中存在两个异质的 spc 操纵子。这一发现可能对植原体进化具有重要意义。

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