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Rapid speciation and ecological divergence in the American seven-spined gobies (Gobiidae, Gobiosomatini) inferred from a molecular phylogeny

机译:从分子系统发育学推断的美国七旋虾虎鱼(Gobiidae,Gobiosomatini)的快速物种形成和生态多样性

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The American seven-spined gobies (Gobiidae, Gobiosomatini) are highly diverse both in morphology and ecology with many endemics in the Caribbean region. We have reconstructed a molecular phylogeny of 54 Gobiosomatini taxa (65 individuals) based on a 1646-bp region that includes the mitochondrial 12S rRNA, tRNA-Val, and 16S rRNA genes. Our results support the monophyly of the seven-spined gobies and are in agreement with the existence of two major groups within the tribe, the Gobiosoma group and the Microgobius group. However, they reject the monophyly of some of the Gobiosomatini genera. We use the molecular phylogeny to study the dynamics of speciation in the Gobiosomatini by testing for departures from the constant speciation rate model. We observe a burst of speciation in the early evolutionary history of the group and a subsequent slowdown. Our results show a split among clades into coastal-estuarian, deep ocean, and tropical reef habitats. Major habitat shifts account for the early significant acceleration in lineage splitting and speciation rate and the initial divergence of the main Gobiosomatini clades. We found that subsequent diversification is triggered by behavior and niche specializations at least in the reef-associated clades. Overall, our results confirm that the diversity of Gobiosomatini has arisen during episodes of adaptive radiation, and emphasize the importance of ecology in marine speciation. [References: 82]
机译:美国的七旋虾虎鱼(Gobiidae,Gobiosomatini)在形态和生态上都高度多样化,加勒比地区有许多地方病。我们基于一个包括线粒体12S rRNA,tRNA-Val和16S rRNA基因的1646 bp区域重建了54个Gobiosomatini类群(65个个体)的分子系统发育。我们的研究结果支持了七旋虾虎鱼的单方面性,并且与该部落中存在两个主要群体,戈比奥索马(Gobiosoma)群和Microgobius群体一致。但是,他们拒绝了某些Gobiosomatini属的单性。我们使用分子系统发生学,通过测试偏离恒定物种形成速率模型的方式来研究戈氏菌属中物种形成的动力学。我们在该小组的早期进化史中观察到物种的爆发,随后出现了放缓。我们的研究结果表明,进化枝分为沿海河口,深海和热带珊瑚礁栖息地。栖息地的主要变化是沿袭分裂和物种形成速率的早期显着加快,以及主要的戈比索马蒂尼进化枝的初始分化。我们发现,至少在与珊瑚礁相关的进化枝中,行为和生态位专业化触发了随后的多样化。总体而言,我们的结果证实,在适应性辐射事件中已经出现了戈比索马提尼的多样性,并强调了生态学在海洋物种形成中的重要性。 [参考:82]

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