首页> 美国卫生研究院文献>Frontiers in Plant Science >Using targeted enrichment of nuclear genes to increase phylogenetic resolution in the neotropical rain forest genus Inga (Leguminosae: Mimosoideae)
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Using targeted enrichment of nuclear genes to increase phylogenetic resolution in the neotropical rain forest genus Inga (Leguminosae: Mimosoideae)

机译:利用靶基因富集核基因来增加新热带雨林印加属的系统发育分辨率(豆科:含羞草科)

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摘要

Evolutionary radiations are prominent and pervasive across many plant lineages in diverse geographical and ecological settings; in neotropical rainforests there is growing evidence suggesting that a significant fraction of species richness is the result of recent radiations. Understanding the evolutionary trajectories and mechanisms underlying these radiations demands much greater phylogenetic resolution than is currently available for these groups. The neotropical tree genus Inga (Leguminosae) is a good example, with ~300 extant species and a crown age of 2–10 MY, yet over 6 kb of plastid and nuclear DNA sequence data gives only poor phylogenetic resolution among species. Here we explore the use of larger-scale nuclear gene data obtained though targeted enrichment to increase phylogenetic resolution within Inga. Transcriptome data from three Inga species were used to select 264 nuclear loci for targeted enrichment and sequencing. Following quality control to remove probable paralogs from these sequence data, the final dataset comprised 259,313 bases from 194 loci for 24 accessions representing 22 Inga species and an outgroup (Zygia). Bayesian phylogenies reconstructed using either all loci concatenated or a gene-tree/species-tree approach yielded highly resolved phylogenies. We used coalescent approaches to show that the same targeted enrichment data also have significant power to discriminate among alternative within-species population histories within the widespread species I. umbellifera. In either application, targeted enrichment simplifies the informatics challenge of identifying orthologous loci associated with de novo genome sequencing. We conclude that targeted enrichment provides the large volumes of phylogenetically-informative sequence data required to resolve relationships within recent plant species radiations, both at the species level and for within-species phylogeographic studies.
机译:在不同的地理和生态环境中,进化辐射在许多植物谱系中都十分突出和普遍。在新热带雨林中,越来越多的证据表明,物种丰富度的很大一部分是最近辐射的结果。理解这些辐射的进化轨迹和机理比目前这些群体需要更大的系统发育分辨率。新热带树属Inga(Leguminosae)是一个很好的例子,有约300种现存物种,树冠年龄为2-10 MY,但是超过6 kb的质体和核DNA序列数据在物种间的系统发育分辨力很差。在这里,我们探索了通过有针对性的富集获得的大规模核基因数据,以增加Inga内的系统发育分辨率。来自三个Inga物种的转录组数据被用于选择264个核基因座,用于靶向富集和测序。在进行质量控制以从这些序列数据中删除可能的旁系同源物后,最终的数据集包含来自194个基因座的259,313个碱基,代表24个种,代表22个Inga物种和一个外群(Zygia)。使用所有级联位点或基因树/物种树方法重建的贝叶斯系统发育产生了高度解析的系统发育。我们使用合并方法表明,相同的靶向富集数据也具有很大的能力,可以在广泛的伞形目一中区分不同的物种内种群历史。在这两种应用中,靶向富集简化了鉴定与从头基因组测序相关的直系同源基因座的信息学挑战。我们得出的结论是,有针对性的富集提供了大量的系统信息学上的序列数据,以解决最近的植物物种辐射内的关系,无论是在物种层面上还是在物种内部系统地理学研究中。

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