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首页> 外文期刊>Molecular phylogenetics and evolution >Resolving interspecific relationships within evolutionarily young lineages using RNA-seq data: An example from Pedicularis section Cyathophora (Orobanchaceae)
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Resolving interspecific relationships within evolutionarily young lineages using RNA-seq data: An example from Pedicularis section Cyathophora (Orobanchaceae)

机译:使用RNA-SEQ数据解决进化的年轻谱系中的差异关系:Pedicularis段Cyathophora(Orobanchaceae)的一个例子

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Phylogenomics has shown great potential in resolving evolutionary relationships at different taxonomical levels. However, it remains controversial whether all orthologous genes under different selective pressures can be concatenated for phylogenomic reconstruction. Here we used sect. Cyathophora of Pedicularis, one of the most species-rich genera of angiosperms in the alpine and arctic regions of the Northern Hemisphere, as a model to investigate the efficiency of RNA-seq in resolving relationships of closely related congeneric species. Flower transcriptomes were sequenced for all species of sect. Cyathophora and two outgroup species. Forty-one highly conserved single-/low-copy nuclear genes and 1553 orthologous groups (OGs) were identified and concatenated into five datasets based on gene copy numbers and Ka/Ks values to reconstruct the phylogeny of section Cyathophora. We also tested how many genes minimally can resolve the interspecific relationships, and reconstructed the evolutionary history of some floral characters in sect. Cyathophora. The results showed that the five different datasets consistently resolved the interspecific relationships of sect. Cyathophora, and the interspecific relationships can be robustly reconstructed with maximal support when >= 20 single-/low-copy nuclear genes or 25 OGs are used. Our study suggests that all OGs under different selective pressures can be concatenated for phylogenomic reconstruction, and provides a successful and efficient use of RNA-seq in reconstructing interspecific relationships of a non-model plant group with recent radiations. (C) 2016 Elsevier Inc. All rights reserved.
机译:系统核糖学在解决不同的分类水平的进化关系方面表现出巨大的潜力。然而,它仍然存在涉及在不同选择性压力下的所有正交基因可以均相用于系统孕球重建。在这里,我们使用了。 Pedicularis的CyoThophora,北半球高山和北极地区的最多富含物种的高血管植物之一,作为探讨RNA-SEQ效率在解决密切相关的基因物种关系中的模型。为所有派生测序花转录om。 Cyathophora和两个小组物种。基于基因拷贝数和KA / KS值鉴定401个高度保守的单/低拷贝核基因和1553个局部核基因和1553个局部组(OGS),以重建段CyoThophora的系统发育。我们还测试了多少基因,最小值可以解决差异的关系,并重建派系中某些花卉人物的进化历史。 Cyathophora。结果表明,五个不同的数据集一贯解决了教派的特异性关系。 Cyathophora,当使用> = 20个单/低拷贝核基因或25个OGS时,可以通过最大支撑来强大地重建间质的关系。我们的研究表明,在不同选择性压力下的所有OG都可以依赖于系统托运重建,并在重建非模型植物组与最近的辐射方面取得成功有效地使用RNA-SEQ。 (c)2016年Elsevier Inc.保留所有权利。

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