Benítez-Villaseñor Adriana, Granados Mendoza Carolina, Wanke Stefan, Peñafiel Cevallos Marcia, Freire M Efraín, Lemmon Emily Moriarty, Lemmon Alan R, Magallón Susana
Posgrado en Ciencias Biológicas, Instituto de Biología, Universidad Nacional Autónoma de México, A. P. 70-153, C.P.04510 Ciudad de México, Mexico.
Departamento de Botánica, Instituto de Biología, Universidad Nacional Autónoma de México, 3er Circuito de Ciudad Universitaria, Coyoacán, Mexico City 04510, Mexico; Institut für Botanik, Technische Universität Dresden, Zellescher Weg 20, 01217 Dresden, Germany.
Mol Phylogenet Evol. 2023 Apr;181:107714. doi: 10.1016/j.ympev.2023.107714. Epub 2023 Jan 25.
Anchored Hybrid Enrichment (AHE) is a tool for capturing orthologous regions of the nuclear genome shared in low or single copy across lineages. Despite the increasing number of studies using this method, its usefulness to estimate relationships at deeper taxonomic levels in plants has not been fully explored. Here we present a proof of concept about the performance of nuclear loci obtained with AHE to infer phylogenetic relationships and explore the use of gene sampling schemes to estimate divergence times in Asterales. We recovered low-copy nuclear loci using the AHE method from herbarium material and silica-preserved samples. Maximum likelihood, Bayesian inference, and coalescence approaches were used to reconstruct phylogenomic relationships. Dating analyses were conducted under a multispecies coalescent approach by jointly inferring species tree and divergence times with random gene sampling schemes and multiple calibrations. We recovered 403 low-copy nuclear loci for 63 species representing nine out of eleven families of Asterales. Phylogenetic hypotheses were congruent among the applied methods and previously published results. Analyses with concatenated datasets were strongly supported, but coalescence-based analyses showed low support for the phylogenetic position of families Argophyllaceae and Alseuosmiaceae. Estimated family ages were congruent among gene sampling schemes, with the mean age for Asterales around 130 Myr. Our study documents the usefulness of AHE for resolving phylogenetic relationships at deep phylogenetic levels in Asterales. Observed phylogenetic inconsistencies were possibly due to the non-inclusion of families Phellinceae and Pentaphragmataceae. Random gene sampling schemes produced consistent age estimates with coalescence and species tree relaxed clock approaches.
锚定混合富集(AHE)是一种用于捕获不同谱系间以低拷贝或单拷贝形式共享的核基因组直系同源区域的工具。尽管使用该方法的研究数量不断增加,但其在估计植物更深分类水平上的亲缘关系方面的效用尚未得到充分探索。在此,我们展示了一个关于用AHE获得的核基因座推断系统发育关系的性能的概念验证,并探索了基因抽样方案在估计菊目分歧时间方面的应用。我们使用AHE方法从标本材料和硅胶保存的样本中回收低拷贝核基因座。使用最大似然法、贝叶斯推断法和溯祖方法重建系统发育关系。在多物种溯祖方法下进行定年分析,通过随机基因抽样方案和多次校准联合推断物种树和分歧时间。我们为代表菊目11个科中9个科的63个物种回收了403个低拷贝核基因座。应用方法之间的系统发育假设与先前发表的结果一致。串联数据集的分析得到了有力支持,但基于溯祖的分析对银叶树科和假轮叶科的系统发育位置支持度较低。在基因抽样方案中估计的科年龄是一致的,菊目的平均年龄约为1.3亿年。我们的研究证明了AHE在解决菊目深层系统发育水平上的系统发育关系方面的效用。观察到的系统发育不一致可能是由于未纳入桑寄生科和五膜草科。随机基因抽样方案与溯祖法和物种树宽松时钟法产生了一致的年龄估计。