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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Partial island submergence and speciation in an adaptive radiation: a multilocus analysis of the Cuban green anoles.
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Partial island submergence and speciation in an adaptive radiation: a multilocus analysis of the Cuban green anoles.

机译:适应性辐射中的部分岛屿浸没和物种形成:古巴绿Anole的多位点分析。

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Sympatric speciation is often proposed to account for species-rich adaptive radiations within lakes or islands, where barriers to gene flow or dispersal may be lacking. However, allopatric speciation may also occur in such situations, especially when ranges are fragmented by fluctuating water levels. We test the hypothesis that Miocene fragmentation of Cuba into three palaeo-archipelagos accompanied species-level divergence in the adaptive radiation of West Indian Anolis lizards. Analysis of morphology, mitochondrial DNA (mt DNA) and nuclear DNA in the Cuban green anoles (carolinensis subgroup) strongly supports three pre dictions made by this hypothesis. First, three geographical sets of populations, whose ranges correspond with palaeo-archipelago boundaries, are distinct and warrant recognition as independent evolutionary lineages or species. Coalescence of nuclear sequence fragments sampled from these species and the large divergences observed between their mtDNA haplotypes suggest separation prior to the subsequent unification of Cuba ca. 5 Myr ago. Second, molecular phylogenetic relationships among these species reflect historical geographical relationships rather than morphological similarity. Third, all three species remain distinct despite extensive geographical contact subsequent to island unification, occasional hybridization and introgression of mtDNA haplotypes. Allopatric speciation initiated during partial island submergence may play an important role in speciation during the adaptive radiation of Anolis lizards.
机译:人们经常提出同伴形态学来解释湖泊或岛屿中物种丰富的适应性辐射,那里可能缺乏阻碍基因流动或扩散的障碍。但是,在这种情况下,也可能发生异特异物种形成,特别是当范围因水位波动而分散时。我们测试的假设是,中新世破碎成三个古群岛的古巴中新世碎片伴随西印度Anolis蜥蜴的适应性辐射中的物种水平发散。对古巴绿Anole(carolinensis亚组)的形态,线粒体DNA(mt DNA)和核DNA的分析有力地支持了这一假设的三个预测。首先,三个地理上的种群集(其范围对应于古-archipelago边界)是截然不同的,因此需要被确认为独立的进化谱系或物种。从这些物种采样的核序列片段的合并以及在其mtDNA单倍型之间观察到的巨大差异表明在随后的古巴ca.统一之前分离。 5 Myr前。第二,这些物种之间的分子系统发育关系反映了历史地理关系,而不是形态相似性。第三,尽管岛国统一,mtDNA单倍型偶尔杂交和渗入之后,尽管广泛的地理接触,所有这三个物种仍然保持着独特性。在部分岛屿浸没期间引发的异源物种形成可能在Anolis蜥蜴的适应性辐射过程中起重要作用。

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