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Phylogenomic analyses and improved resolution of Cetartiodactyla

机译:尾骨仙人掌的系统生物学分析和提高的分离度

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The remarkable antiquity, diversity, and significance in the ecology and evolution of Cetartiodactyla have inspired numerous attempts to resolve their phylogenetic relationships. However, previous analyses based on limited samples of nuclear genes or mitochondrial DNA sequences have generated results that were either inconsistent with one another, weakly supported, or highly sensitive to analytical conditions. Here, we present strongly supported results based upon over 1.4. Mb of an aligned DNA sequence matrix from 110 single-copy nuclear protein-coding genes of 21 Cetartiodactyla species, which represent major Cetartiodactyla lineages, and three species of Perissodactyla and Carnivora as outgroups. Phylogenetic analysis of this newly developed genomic sequence data using a codon-based model and recently developed models of the rate autocorrelation resolved the phylogenetic relationships of the major cetartiodactylan lineages and of those lineages with a high degree of confidence. Cetacea was found to nest within Artiodactyla as the sister group of Hippopotamidae, and Tylopoda was corroborated as the sole base clade of Cetartiodactyla. Within Cetacea, the monophyletic status of Odontoceti relative to Mysticeti, the basal position of Physeteroidea in Odontoceti, the non-monophyly of the river dolphins, and the sister relationship between Delphinidae and Monodontidae + Phocoenidae were strongly supported. In particular, the groups of Tursiops (bottlenose dolphins) and Stenella (spotted dolphins) were validated as unnatural groups. Additionally, a very narrow time frame of ~3. My (million years) was found for the rapid diversification of delphinids in the late Miocene, which made it difficult to resolve the phylogenetic relationships within the Delphinidae, especially for previous studies with limited data sets. The present study provides a statistically well-supported phylogenetic framework of Cetartiodactyla, which represents an important step toward ending some of the often-heated, century-long debate on their evolution.
机译:Cetartiodactyla在生态学和进化中非凡的古代,多样性和重要性,激发了许多尝试来解决它们的亲缘关系。但是,以前基于有限的核基因或线粒体DNA序列样本进行的分析得出的结果彼此不一致,支持不力或对分析条件高度敏感。在这里,我们基于1.4以上的结果给出了强有力的支持结果。来自21个Cetartiodactyla物种的110个单拷贝核蛋白编码基因的比对DNA序列矩阵的Mb,它们代表主要Cetartiodactyla谱系,以及Perissodactyla和Carnivora的三个物种为外群。使用基于密码子的模型对新开发的基因组序列数据进行系统发生分析,以及最近开发的速率自相关模型进行系统进化分析,可以很好地分辨主要鲸蜡三叠纪谱系以及这些谱系的系统发育关系。鲸科动物被发现是作为河马科的姊妹群体筑巢于甲虫科中的,而确证了翼足目是鲸科昆虫科的唯一基础进化枝。在鲸类科动物中,大力支持昆虫牙菌纲相对于Mysticeti的单株地位,昆虫纲在昆虫牙菌纲中的基础位置,河豚的非单性以及Delphinidae和Monodontidae + Phocoenidae之间的姐妹关系。尤其是,Tursiops(瓶鼻海豚)和Stenella(斑点海豚)的组被确认为非自然组。此外,约3个非常狭窄的时间范围。我(百万年)被发现是中新世晚期飞燕草迅速多样化的原因,这使得解决飞燕科的系统发育关系变得困难,特别是对于以前的数据集有限的研究。本研究提供了一个统计上得到良好支持的Cetartiodactyla的系统发育框架,这是朝着结束一些关于它们的进化的,经常被热烈讨论的重要步骤迈出的重要一步。

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