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Molecular phylogeny of Oreochromis (Cichlidae: Oreochromini) reveals mito-nuclear discordance and multiple colonisation of adverse aquatic environments

机译:Oreochromis(CICHLIDAE:OREOCHROMINI)的分子系统发育揭示了核心核不和谐和不良水生环境的多种殖民化

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Although the majority of cichlid diversity occurs in the African Great Lakes, these fish have also diversified across the African continent. Such continental radiations, occurring in both rivers and lakes have received far less attention than lacustrine radiations despite some members, such as the oreochromine cichlids (commonly referred to as 'tilapia'), having significant scientific and socio-economic importance both within and beyond their native range. Unique among cichlids, several species of the genus Oreochromis exhibit adaptation to soda conditions (including tolerance to elevated temperatures and salinity), which are of interest from evolutionary biology research and aquaculture perspectives. Questions remain regarding the factors facilitating the diversification of this group, which to date have not been addressed within a phylogenetic framework. Here we present the first comprehensive (32/37 described species) multi-marker molecular phylogeny of Oreochromis and closely related Alcolapia, based on mitochondrial (1583 bp) and nuclear (3092 bp) sequence data. We show widespread discordance between nuclear DNA and mitochondrial DNA trees. This could be the result of incomplete lineage sorting and/or introgression in mitochondrial loci, although we did not find a strong signal for the latter. Based on our nuclear phylogeny we demonstrate that adaptation to adverse conditions (elevated salinity, temperature, or alkalinity) has occurred multiple times within Oreochromis, but that adaptation to extreme (soda) conditions (high salinity, temperature, and alkalinity) has likely arisen once in the lineage leading to O. amphimelas and Alcolapia. We also show Alcolapia is nested within Oreochromis, which is in agreement with previous studies, and here revise the taxonomy to synonymise the genus in Oreochromis, retaining the designation as subgenus Oreochromis (Alcolapia).
机译:虽然在非洲大湖中发生了大多数慈鲷多样性,但这些鱼也在非洲大陆中多元化。在河流和湖泊中发生的这种大陆辐射受到湖泊辐射的关注程度远远不受影响,尽管有些成员(例如羚羊牛皮(通常称为'罗非鱼)),在其内部和之外都有显着的科学和社会经济重要性本机范围。在碱性中,几种属植物属植物属植物属的种类表现出对苏打条件的适应(包括耐高温和盐度),这对进化生物学研究和水产养殖观点感到兴趣。仍然存在关于促进该组多元化的因素的问题,该组迄今为止尚未在系统发育框架内进行解决。在这里,我们提出了基于线粒体(1583bp)和核(3092bp)序列数据的第一综合(32/37描述的物种)多标记分子系统的砧瘤和密切相关的Alcolapia。我们在核DNA和线粒体DNA树之间展现了广泛的不等味。这可能是线粒体基因座中不完全谱系分类和/或迟发的结果,尽管我们没有找到后者的强信号。基于我们的核系统发育,我们证明适应不良条件(盐度升高,温度或碱度)在OREOCHROMIS内多次发生,但适应极端(苏打水)条件(高盐度,温度和碱度)可能出现一次在通往O. Amphimelas和Alcolapia的谱系中。我们还显示Alcolapia嵌套在oreochromis内,这与以前的研究一致,在这里修改分类法以将羚羊属植物同义为同义,将指定作为子根属植物(Alcolapia)保持同义。

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