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首页> 外文期刊>Molecular phylogenetics and evolution >An empirical demonstration of using pentatricopeptide repeat (PPR) genes as plant phylogenetic tools: Phylogeny of Verbenaceae and the Verbena complex
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An empirical demonstration of using pentatricopeptide repeat (PPR) genes as plant phylogenetic tools: Phylogeny of Verbenaceae and the Verbena complex

机译:使用五肽重复序列(PPR)基因作为植物系统发育工具的经验证明:马鞭草科和马鞭草复合体的系统发育

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摘要

The pentatricopeptide repeat (PPR) gene family, with hundreds of members in land plant genomes, has been recognized as a tremendous resource for plant phylogenetic studies based on publicly available genomic data from model organisms. However, whether this appealing nuclear gene marker system can be readily applied to non-model organisms remains questionable, particularly given the potential uncertainties in designing specific primers to only amplify the locus of interest from the sea of PPR genes. Here we demonstrate empirically the use of PPR genes in the family Verbenaceae and the Verbena complex. We also lay out a general scheme to design locus-specific primers to amplify and sequence PPR genes in non-model organisms. Intergeneric relationships within the family Verbenaceae were fully resolved with strong support. Relationships among the closely related genera within the Verbena complex and among some species groups within each genus were also well resolved, but resolution among very closely related species was limited. Our results suggest that PPR genes can be readily employed in non-model organisms. They may be best used to resolve relationships in a spectrum from among distantly related genera to among not-so-closely related congeneric species, but may have limited use among very closely related species.
机译:基于陆地生物基因组中的数百个成员的五肽重复序列(PPR)基因家族已被视为基于模型生物的公共可用基因组数据进行植物系统发育研究的巨大资源。但是,这种吸引人的核基因标记系统是否可以容易地应用于非模式生物仍存在疑问,特别是考虑到设计特定引物仅扩增PPR基因海中目的基因座的潜在不确定性。在这里,我们凭经验证明马鞭草科和马鞭草复合体中PPR基因的使用。我们还提出了一个通用方案,用于设计基因座特异性引物,以在非模型生物中扩增和测序PPR基因。马鞭草科之间的属间关系在强有力的支持下得到了充分解决。马鞭草复合体中密切相关的属之间以及每个属中的某些物种组之间的关系也得到了很好的解决,但是非常密切相关的物种之间的分辨率受到限制。我们的结果表明,PPR基因可以很容易地在非模型生物中使用。它们可能最适合用来解析从远缘属到非近缘同属物种之间的光谱关系,但在极近缘物种之间的应用可能有限。

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