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Phylogeny and Evolution of the Neotropical Radiation of Lachemilla (Rosaceae): Uncovering a History of Reticulate Evolution and Implications for Infrageneric Classification

机译:Lachemilla(Rosaceae)的探测器的系统发育和演化:揭示了对InfraGeneric分类的网状演化历史和影响

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—Reticulate evolution often leads to incongruence between nuclear and plastid phylogenies, and comparisons between them have been used as a first approximation to disentangle patterns of hybridization. Because other processes like incomplete lineage sortingand phylogenetic error also produce similar incongruence patterns, additional sources of evidence must be incorporated. Here we focus on reconstructing the phylogeny of Lachemilla (Rosaceae) using nuclear ribosomal ITS and plastid trnL-F DNA sequences, and explore widespreadpatterns of cytonuclear discordance in this group. Lachemilla is a highly morphologically variable group of perennial herbs and shrubs, and a nearly ubiquitous member of the diverse Neotropical high-altitude grasslands. Our analyses identified four major clades within Lachemillathat are in part congruent with previous morphological classifications of the group. Furthermore, using multiple sources of evidence, including a procrustean approach to cophylogeny estimation, coalescent-based simulations, phylogenetic networks, chromosome counts, and genome size estimations,we also revealed a large-scale pattern of incongruence between the plastid and nuclear phylogenies in Lachemilla, which is mainly the result of widespread hybridization and polyploidy. We also estimated that the origin of Lachemilla in South America (∼14.5 MYA) predates the“rapid-uplift” diversification model that has been suggested for other high species-richness Andean plant clades, but following the formation of the high-elevation Andean grasslands during the last 5 MYA, a rapid accumulation of particular nested lineages has contributed to theubiquitous presence of Lachemilla in these biomes.
机译:—网状演化经常导致核和体层之间的不协调,它们之间的比较已被用作杂交模式的第一近似。因为其他过程中的其他过程,如不完全的谱系分类和系统发育错误也产生了类似的不协调模式,所以必须纳入额外的证据来源。在这里,我们专注于使用核核糖体其和塑性TRNL-F DNA序列重建Lachemilla(Rosaceae)的系统发育,并探讨该组中的人性心算不全的广泛模板。 Lachemilla是一种高度形态的多年落草药和灌木组,以及几乎无处不在的多元化高原草地。我们的分析确定了Lachemillathat中的四个主要片片,部分是全体的本集团的形态分类。此外,使用多种证据来源,包括对促进基因发生估计,基于聚合的模拟,系统发育网络,染色体计数和基因组大小估计的预科方法,我们还揭示了Lachemilla中的塑性和核系统之间的大规模不一致模式,这主要是杂交杂交和多倍体的结果。我们还估计,Lachemilla的起源于南美洲(∼ 14.5 mya)预测“迅速隆起和amp;#8221;已经为其他高品种丰富的Andean植物植物而建议的多样化模型,但在过去的5个Mya中形成高度高度的草原之后,特定嵌套谱系的快速积累促成了这些生物群系中Lachemilla的无懈地存在。

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