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Recent Diversification of a Marine Genus (Tursiops spp.) Tracks Habitat Preference and Environmental Change

机译:海洋属(Tursiops spp。)最近的多样化追踪了人居偏好和环境变化

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摘要

Understanding the evolution of diversity and the resulting systematics in marine systems is confounded by the lack of clear boundaries in oceanic habitats, especially for highly mobile species like marine mammals. Dolphin populations and sibling species often show differentiation between coastal and offshore habitats, similar to the pelagic/littoral or benthic differentiation seen for some species of fish. Here we test the hypothesis that lineages within the polytypic genus Tursiops track past changes in the environment reflecting ecological drivers of evolution facilitated by habitat release. We used a known recent time point for calibration (the opening of the Bosphorus) and whole mitochondrial genome (mitogenome) sequences for high phylogenetic resolution. The pattern of lineage formation suggested an origin in Australasia and several early divisions involving forms currently inhabiting coastal habitats. Radiation in pelagic environments was relatively recent, and was likely followed by a return to coastal habitat in some regions. The timing of some nodes defining different ecotypes within the genus clustered near the two most recent interglacial transitions. A signal for an increase in diversification was also seen for dates after the last glacial maximum. Together these data suggest the tracking of habitat preference during geographic expansions, followed by transition points reflecting habitat shifts, which were likely associated with periods of environmental change. [Climatic oscillations; marine mammal; pleistocene; radiation; speciation.].
机译:由于海洋生境缺乏明确的界限,尤其是对于海洋生物等高度易移动的物种,缺乏理解界限的理解使人们对海洋系统多样性的演变以及由此产生的系统混乱感到困惑。海豚种群和同胞物种通常在沿海和近海生境之间表现出分化,类似于某些鱼类在上层/沿海或底栖生物上的分化。在这里,我们测试了这样一个假设,即多型Tursiops属中的谱系追踪环境的过去变化,反映出栖息地释放促进了进化的生态驱动力。我们使用已知的最近时间进行校准(Bosphorus的开放)和整个线粒体基因组(有丝分裂基因组)序列,以实现高系统发育分辨率。谱系形成的模式表明其起源于大洋洲和一些早期划分,涉及目前居住在沿海栖息地的形态。在远洋环境中的辐射是相对较新的,并且在某些地区可能返回到沿海生境。一些属中定义不同生态类型的节点的时间聚集在两个最近的冰期过渡附近。在最后一次冰期最大值之后的日期也看到了多样化增加的信号。这些数据加在一起表明,在地理扩展过程中追踪了栖息地的偏好,随后是反映栖息地变化的过渡点,这可能与环境变化时期有关。 [气候振荡;海洋哺乳动物更新世辐射;物种]。

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