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Speciation in North American black basses, Micropterus (Actinopterygii : Centrarchidae)

机译:北美黑鲈的物种,Micropterus(Actinopterygii:Centrarchidae)

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The Pleistocene Epoch has been frequently cited as a period of intense speciation for a significant portion of temperate continental biotas. To critically assess the role of Pleistocene glaciations on the evolution of the freshwater fish clade Micropterus, we use a phylogenetic analysis of complete gene sequences from two mitochondrial genes (cytochrome b and ND2), and a fossil calibration of the molecular clock to estimate ages of speciation events and rates of diversification. The absence of substantial morphological and ecological divergence together with endemism of five of the eight species in North American tributaries of the Gulf of Mexico may be interpreted as the result of a recent Pleistocene origin for these species. Speciation dates in Micropterus range from 1.01 +/- 0.32 to 11.17 +/- 1.02 million years ago. Only one speciation event is dated to the Pleistocene, and rates of diversification are not significantly variable in Micropterus. The premise that the Pleistocene was an exceptional period of speciation in Micropterus is not supported. Instead, a Gulf Coast allopatric speciation model is proposed, and predicts periods of dynamic speciation driven by sea level fluctuations in the Late Miocene and Pliocene. The Pleistocene, however, was a period of significant intraspecific mitochondrial lineage diversification. The application of the Gulf Coast allopatric speciation model to the remaining aquatic fauna of the Gulf of Mexico coast in North America will rely on robust phylogenetic hypotheses and accurate age estimations of speciation events. [References: 70]
机译:更新世时期经常被认为是温带大陆生物群很大一部分的强烈物种形成时期。为了严格评估更新世冰川在淡水鱼进化枝微翅目进化中的作用,我们对两个线粒体基因(细胞色素b和ND2)的完整基因序列进行了系统发育分析,并对分子钟进行了化石校准以估计年龄。物种形成事件和多样化的速度。墨西哥湾北美支流中八个物种中的五个没有形态学和生态学上的显着差异,这可能是由于这些物种最近更新世而来。 Micropterus的物种形成日期在1.01 +/- 0.32到11.17 +/- 1.02百万年前。更新世只有一次物种形成事件,而Micropterus中的多样化速率没有显着变化。不支持以更新世为Micropterus中一个特殊的物种形成时期。取而代之的是,提出了墨西哥湾沿岸的异地物种形成模型,并预测了中新世和上新世晚期海平面波动驱动的动态物种形成时期。然而,更新世是一个重要的种内线粒体谱系多样化时期。墨西哥湾沿岸异地物种形成模型在北美墨西哥湾沿岸其余水生动物中的应用将依赖可靠的系统发育假说和物种形成事件的准确年龄估计。 [参考:70]

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