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Evolutionary Origin And Early Biogeography Of Otophysan Fishes (Ostariophysi: Teleostei)

机译:音藻鱼类的进化起源和早期生物地理学(Ostariophysi:Teleostei)

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摘要

The biogeography of the mega-diverse, freshwater, and globally distributed Otophysi has received considerable attention. This attraction largely stems from assumptions as to their ancient origin, the clade being almost exclusively freshwater, and their suitability as to explanations of trans-oceanic distributions. Despite multiple hypotheses explaining present-day distributions, problems remain, precluding more parsimonious explanations. Underlying previous hypotheses are alternative phylogenies for Otophysi, uncertainties as to temporal diversification and assumptions integral to various explanations. We reexamine the origin and early diversification of this clade based on a comprehensive time-calibrated, molecular-based phylogenetic analysis and event-based approaches for ancestral range inference of lineages. Our results do not corroborate current phylogenetic classifications of otophysans. We demonstrate Siluriformes are never sister to Gymnotiformes and Characiformes are most likely nonmonophyletic. Divergence time estimates specify a split between Cypriniformes and Characiphysi with the fragmentation of Pangea. The early diversification of characiphysans either predated, or was contemporary with, the separation of Africa and South America, and involved a combination of within- and between-continental divergence events for these lineages. The intercontinental diversification of siluroids and characoids postdated major intercontinental tectonic fragmentations (<90 Mya). Post-tectonic drift dispersal events are hypothesized to account for their current distribution patterns.
机译:种类繁多,淡水和全球分布的耳镜的生物地理学受到了广泛关注。这种吸引力主要来自对它们的古老起源,进化枝几乎完全是淡水的假设以及对跨洋分布解释的适用性的假设。尽管有多种假设解释了当今的分布,但仍然存在问题,排除了更简约的解释。之前的假设的基础是耳物理学的替代系统发育,时间多样性的不确定性以及各种解释所必需的假设。我们基于全面的基于时间校准的,基于分子的系统发育分析和基于事件的沿袭宗谱范围推断方法,重新检查了该进化枝的起源和早期多样化。我们的结果不能证实目前的耳菌素系统发育分类。我们证明,鸭Sil形目绝不是裸not形目的姊妹,而Characiformes最有可能是非单形性的。估计的发散时间指定了鲤形目和Characiphysi之间的分裂以及Pangea的分裂。非洲和南美分离之前或以前,Characiphysans的早期多样化是当代的,并且涉及这些谱系的陆内和陆间发散事件的组合。十二指肠和类蕉的洲际多样性早于主要的洲际构造断裂(<90 Mya)。假设构造后的漂移扩散事件是考虑到它们当前的分布模式。

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