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首页> 外文期刊>Botanical Journal of the Linnean Society >Towards integrative taxonomy in Neotropical botany: disentangling the Pagamea guianensis species complex (Rubiaceae)
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Towards integrative taxonomy in Neotropical botany: disentangling the Pagamea guianensis species complex (Rubiaceae)

机译:在新植物植物学中综合分类:解开PagameaGuianensis种复合物(Rubiaceae)

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摘要

Species complexes are common in the Neotropical flora, and the Pagamea guianensis complex is one of the most widespread groups of species in the Amazonian white-sand flora. Previous analyses suggested the occurrence of ten species in this group, but species limits remained unclear due to poor sampling, morphological overlap and low molecular variation. Here we present the most comprehensive population and molecular sampling across the geographical distribution of the P. guianensis complex to date in order to test the monophyly of this group and to clarify species limits. Using a high-throughput DNA sequencing approach, we sequenced 431 loci (>34 M bases) for 179 individuals. We applied phylogenetic and species tree analyses to resolve phylogenetic relationships among the sampled individuals. Species delimitation was inferred based on genomic data, and we tested whether hypothesized species could be differentiated using morphological, ecological and near-infrared spectroscopy data. We confirm the monophyly of the P guianensis complex and accept 15 distinct and well-supported lineages, here proposed as 14 species and one subspecies. Our findings highlight the importance of multiple lines of evidence from independent datasets in the process of species delimitation and species discovery in species complexes in the Neotropics.
机译:物种复合物在新植物植物群中常见,并且PagameaGuianensis Complex是亚马逊白砂菌群中最广泛的物种之一。先前的分析表明,由于采样差,形态重叠和低分子变异,但物种限值仍然不清楚。在这里,我们迄今为止,迄今为止,迄今为止,迄今为止,迄今为止,迄今为止,迄今为止,迄今为止,迄今为止的地理分布的人口和分子采样。使用高通量DNA测序方法,我们对179个人进行测序431个基因座(> 34米基础)。我们应用系统发育和物种树分析以解决采样个体中的系统发育关系。基于基因组数据推断出物种划界,我们测试了假设物种是否可以使用形态,生态和近红外光谱数据进行分化。我们确认了P Guianensis Complex的一定程度,并接受了15个不同良好的谱系,这里提出为14种和一个亚种。我们的调查结果突出了在新药综合物种划界和物种发现过程中从独立数据集中突出了多条证据的重要性。

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