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首页> 外文期刊>Molecular phylogenetics and evolution >Phylogenomic reappraisal of the Neotropical catfish family Loricariidae (Teleostei: Siluriformes) using ultraconserved elements
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Phylogenomic reappraisal of the Neotropical catfish family Loricariidae (Teleostei: Siluriformes) using ultraconserved elements

机译:使用超法元素的新型鲶鱼系列(Teleostei:Siluriformes)的系统染发剂Reappraisal

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摘要

Neotropical freshwaters host more than 6000 fish species, of which 983 are suckermouth armored catfishes of the family Loricariidae - the most-diverse catfish family and fifth most species-rich vertebrate family on Earth. Given their diversity and ubiquitous distribution across many habitat types, loricariids are an excellent system in which to investigate factors that create and maintain Neotropical fish diversity, yet robust phylogenies needed to support such ecological and evolutionary studies are lacking. We sought to buttress the systematic understanding of loricariid catfishes by generating a genome-scale data set (1041 loci, 328,330 bp) for 140 species spanning 75 genera and five of six previously proposed subfamilies. Both maximum likelihood and Bayesian analyses strongly supported the monophyly of Loricariidae. Our results also reinforced the established backbone of loricariid interrelationships: Delturinae as sister to all other analyzed loricariids, with subfamily Rhinelepinae diverging next, followed by Loricariinae sister to Hypostominae + Hypoptopomatinae. Previous DNA-based relationships within Hypostominae and Loricariinae were strongly supported. However, we evaluated for the first time DNA-based relationships among many Hypoptopomatinae genera and found significant differences with this subfamily's current genus-level classification, prompting several taxonomic changes. Finally, we placed our topological results within a fossil-calibrated temporal context indicating that early Loricariidae diversification occurred across the Cretaceous-Paleogene boundary similar to 65 million years ago (Ma). Our study lays a strong foundation for future research to focus on relationships among species and the macroevolutionary processes affecting loricariid diversification rates and patterns.
机译:新营养不良的鱼类宿主超过6000个鱼类,其中983个是家庭的Suffermouth Armored鲶鱼,罗伊拉西亚群岛 - 最多样化的鲶鱼家庭和最丰富的地球上丰富的脊椎动物家庭。鉴于许多栖息地类型的多样性和无处不在的分布,Loricariids是一种优秀的系统,可以调查创造和维持新猪鱼类的因素,但缺乏支持这种生态和进化研究所需的强大文学。我们试图通过产生75个属和六个先前提出的亚壳中的五种物种的基因组级数据集(1041个基因座,328,330bp)来保护对荷尼加犬的系统理解。最大可能性和贝叶斯分析都强烈支持鲁伯里达的一定程度。我们的结果还加强了鲁伯里亚的建立的骨干:Delturinae作为姐姐对所有其他分析的洛尼加西亚氏菌,亚家族Rhinelepinae分歧,其次是Loricariinae姐妹到鼠标疗法+催眠术。强烈支持先前的乳房内的基于DNA的关系和鲁伯里娜。然而,我们评估了许多次拷贝属的第一次基于DNA的关系,并发现与这种亚家族的目前的属级分类有显着差异,促使几个分类法变化。最后,我们将我们的拓扑结果置于化石校准的时间背景下,表明在白垩纪 - 古代界的早期的兰科希氏菌多样化,类似于6500万年前(MA)。我们的研究为未来的研究奠定了强大的基础,以重点关注物种之间的关系和影响鲁莫里德多样化率和模式的宏观调度过程。

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