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首页> 外文期刊>Integrative and Comparative Biology >The importance of even highly incomplete fossil taxa in reconstructing the phylogenetic relationships of the Tetraodontiformes (Acanthomorpha: Pisces)
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The importance of even highly incomplete fossil taxa in reconstructing the phylogenetic relationships of the Tetraodontiformes (Acanthomorpha: Pisces)

机译:高度不完整的化石类群在重建四齿动物的系统发育关系中的重要性(棘突动物:双鱼座)

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摘要

The use of fossils in the phylogenetics of extant clades traditionally has been a contentious issue. Fossils usually are relatively incomplete, and their use commonly leads to an increase in the number of equally most parsimonious trees and a decrease in the resolution of phylogenies. Fossils alone, however, provide certain kinds of information about the biological history of a clade, and computer simulations have shown that even highly incomplete material can, under certain circumstances, increase the accuracy of a phylogeny, rather than decrease it. Because empirical data are still scarce on the effects of the inclusion of fossils on phylogenetic reconstructions, we attempted to investigate this problem by using a relatively well-known group of acanthomorph fishes, the Tetraodontiformes (triggerfishes, pufferfishes, and ocean sunfishes), for which robust phylogenies using extant taxa already exist and that has a well-studied fossil record. Adding incomplete fossil taxa of tetraodontiforms usually increases the number of equally most parsimonious trees and often decreases the resolution of consensus trees. However, adding fossil taxa may help to correctly establish relationships among lineages that have experienced high degrees of morphological diversification by allowing for a reinterpretation of homologous and homoplastic features, increasing the resolution rather than decreasing it. Furthermore, taxa that were scored for 25% or more of their characters did not cause a significant loss of resolution, while providing unique biological information.
机译:传统上,在现存进化枝的系统发育中使用化石一直是一个有争议的问题。化石通常是相对不完整的,它们的使用通常会导致同等最简约的树木数量增加,系统发育的分辨率降低。但是,仅化石就可以提供有关进化枝生物学史的某些信息,计算机模拟显示,即使高度不完整的材料在某些情况下也可以提高系统发育的准确性,而不是降低系统发育的准确性。由于经验数据仍然缺乏关于化石纳入对系统发育重建的影响的信息,因此我们尝试通过使用一组相对知名的棘手鱼,四齿类鱼类(三角鱼,河豚和海洋翻车鱼)来调查此问题。使用现存的分类单元的稳健的系统发育已经存在,并且已经有充分研究的化石记录。添加不完整的四齿类化石分类单元通常会增加同等数量的简约树的数量,并且通常会降低共识树的分辨率。但是,添加化石分类单元可能会允许重新解释同源和同质特征,提高分辨率而不是降低分辨率,从而有助于正确建立经历了高度形态多样化的谱系之间的关系。此外,在提供独特的生物学信息的同时,得分超过或等于其字符25%的分类单元不会造成重大的分辨率损失。

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