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首页> 外文期刊>Evolution: International Journal of Organic Evolution >THE EARLY DIVERSIFICATION HISTORY OF DIDELPHID MARSUPIALS: A WINDOW INTO SOUTH AMERICA’S “SPLENDID ISOLATION”
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THE EARLY DIVERSIFICATION HISTORY OF DIDELPHID MARSUPIALS: A WINDOW INTO SOUTH AMERICA’S “SPLENDID ISOLATION”

机译:敌敌畏动物的早期多样化历史:进入南美“蜘蛛隔离”的一扇窗

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摘要

The geological record of South American mammals is spatially biased because productive fossil sites are concentrated at high latitudes. As a result, the history of mammalian diversification in Amazonia and other tropical biomes is largely unknown. Here we report diversification analyses based on a time-calibrated molecular phylogeny of opossums (Didelphidae), a species-rich clade of mostly tropical marsupials descended from a Late Oligocene common ancestor. Optimizations of habitat and geography on this phylogeny suggest that (1) basal didelphid lineages inhabited South American moist forests; (2) didelphids did not diversify in dry-forest habitats until the Late Miocene; and (3) most didelphid lineages did not enter North America until the Pliocene. We also summarize evidence for an Early- to Middle-Miocene mass extinction event, for which alternative causal explanations are discussed. To the best of our knowledge, this study provides the first published molecular-phylogenetic evidence for mass extinction in any animal clade, and it is the first time that evidence for such an event (in any plant or animal taxon) has been tested for statistical significance. Potentially falsifying observations that could help discriminate between the proposed alternative explanations for didelphid mass extinction may be obtainable from diversification analyses of other sympatric mammalian groups.
机译:由于生产性化石集中在高纬度地区,南美哺乳动物的地质记录在空间上存在偏差。结果,亚马逊河和其他热带生物群落中哺乳动物多样化的历史在很大程度上是未知的。在这里,我们根据负鼠(Didelphidae)的时间校准的分子系统发育来报告多样性分析,负鼠是一种物种丰富的进化支,主要由热带渐新世的祖先衍生而来,大部分为热带有袋动物。对这种系统发育的栖息地和地理条件的优化表明:(1)南部湿润森林中栖息着基础双足纲世系; (2)在中新世晚期之前,双足纲在干林生境中没有多样化; (3)大部分的双足纲血统直到上新世才进入北美。我们还总结了中新世早期至中期灭绝事件的证据,并讨论了其他因果解释。据我们所知,这项研究为任何动物进化中的物种灭绝提供了首次公开的分子系统发育证据,这是首次对此类事件(在任何动植物分类中)的证据进行统计检验。意义。从其他同胞哺乳动物群体的多元化分析中可以获得可能伪造的观察结果,这些观察结果可能有助于区分拟议的关于双足phi灭绝的替代解释。

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