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Mechanisms of speciation and faunal enrichment in Atlantic parrotfishes

机译:大西洋鹦嘴鱼的物种形成和动物区系富集机制

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摘要

Relationships based on mtDNA and nDNA sequences were used to assess effects of two major geographic barriers (the > 30 myo Atlantic ocean and the similar to 11 myo Amazon-Orinoco outflow) on speciation among Atlantic parrotfishes (Sparisoma and Nicholsina). Allopatric distributions of sister taxa implicate isolating actions of both barriers in all recent speciation in these fishes, with no clear indications that any speciation resulted from other mechanisms. Molecular clock estimates of the timing of lineage splits indicate that both barriers acted by limiting dispersal well after they formed, although the Amazon barrier also may have been a vicariance agent. Fluctuations in sealevel, climate, and ocean-current dynamics over the past similar to 10 my likely produced marked variation in the effectiveness of both barriers, but particularly the Amazon barrier, allowing intermittent dispersal leading to establishment and allopatric speciation. A dynamic Amazon barrier represents a major engine of West Atlantic faunal enrichment that has repeatedly facilitated bidirectional dispersal, allopatric speciation, and remixing of the Caribbean and Brazilian faunas.(c) 2006 Elsevier Inc. All rights reserved.
机译:基于mtDNA和nDNA序列的关系被用来评估两个主要的地理障碍(> 30 Myo大西洋和类似于11 myo Amazon-Orinoco流出)对大西洋鹦嘴鱼(Sparisoma和Nicholsina)物种形成的影响。姊妹类群的异源分布暗示了这些鱼类最近所有物种形成过程中两种屏障的隔离作用,但没有明确迹象表明任何物种形成是由其他机制引起的。分子时钟对谱系分裂时间的估计表明,这两个屏障在形成后都通过限制扩散而发挥了作用,尽管亚马逊屏障也可能是一种驱散剂。过去,海平面,气候和洋流动态的波动与10相似,这两种屏障(尤其是亚马逊屏障)的有效性可能产生了显着差异,从而导致间歇性扩散导致建立和异源物种形成。充满活力的亚马逊屏障代表了西大西洋动物群富集的主要引擎,该引擎反复促进了双向扩散,异源物种形成以及加勒比和巴西动物群的重新混合。(c)2006 Elsevier Inc.保留所有权利。

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