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Origins and relationships of the Pleuronectoidei: Molecular and morphological analysis of living and fossil taxa

机译:胸腔切除症的起源和关系:生活和化石分类的分子与形态学分析

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Flatfishes (Pleuronectiformes) are a species-rich and distinct group of fishes characterized by cranial asymmetry. Flatfishes occupy a wide diversity of habitats, including the tropical deep-sea and freshwaters, and often are small-bodied fishes. Most scientific effort, however, has been focused on large-bodied temperate marine species important in fisheries. Phylogenetic study of flatfishes has also long been limited in scope and focused on the placement and monophyly of flatfishes. As a result, several questions in systematic biology have persisted that molecular phylogenetic study can answer. We examine the Pleuronectoidei, the largest suborder of Pleuronectiformes with >99% of species diversity of the order, in detail with a multilocus nuclear and mitochondrial data set of 57 pleuronectoids from 13 families covering a wide range of habitats. We combine the molecular data with a morphological matrix to construct a total evidence phylogeny that places fossil flatfishes among extant lineages. Utilizing a time-calibrated phylogeny, we examine the timing of diversification, area of origin and ancestral temperature preference of Pleuronectoidei. We find polyphyly or paraphyly of two flatfish families, the Paralichthyidae and the Rhombosoleidae, and support the creation of two additional families-Cyclopsettidae and Oncopteridae-to resolve their non-monophyletic status. Our findings also support the distinctiveness of Paralichthodidae and refine the placement of that lineage. Despite a core fossil record in Europe, the observed recent diversity of pleuronectoids in the Indo-West Pacific is most likely a result of the Indo-West Pacific being the area of origin for pleuronectoids and the ancestral temperature preference of flatfishes is most likely tropical.
机译:扁豆(胸膜肠细胞)是一种具有颅不对称的富含物种和不同的鱼类,其特征是颅不对称。扁豆占据了广泛的栖息地,包括热带深海和新鲜水域,往往是小型的鱼类。然而,大多数科学努力都集中在渔业中的大型温带海洋物种。紫前鱼的系统发育研究也长期受限于范围,并专注于私人的置入和单层。结果,系统生物学中的一些问题持续存在分子系统发育研究可以回答。我们将胸腔切除症,最大的胸腔切除症,具有> 99%的物种多样性,详细介绍了来自覆盖各种栖息地各种栖息地的13个家庭的多能核和线粒体数据集。我们将分子数据与形态学基质结合在一起,构建总有证据系统,以将化石扁豆之间的产物血统置于现存的谱系中。利用时间校准的系统发育,我们研究了胸腔切除的多样化,原产地和祖先温度偏好的时间。我们发现两种扁平鱼家族,普拉亚噻肟和菱形,并支持产生两种额外的家庭 - 雪雪石和卵鹅卵石 - 以解决它们的非单细胞状况。我们的调查结果也支持帕拉莱希(Paralichthodidae的独特性,并细化所述血统的位置。尽管欧洲核心化石记录,但观察到近期印度西太平洋的胸膜切开素多样性最有可能是印度 - 西太平洋是胸膜切开素的原产地,扁豆的祖先温度偏好最有可能是热带的。

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