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首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >Faunal breaks and species composition of Indo-Pacific corals: the role of plate tectonics, environment and habitat distribution
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Faunal breaks and species composition of Indo-Pacific corals: the role of plate tectonics, environment and habitat distribution

机译:印度洋-太平洋珊瑚的植物区系破裂和物种组成:板块构造,环境和生境分布的作用

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摘要

Species richness gradients are ubiquitous in nature, but the mechanisms that generate and maintain these patterns at macroecological scales remain unresolved. We use a new approach that focuses on overlapping geographical ranges of species to reveal that Indo-Pacific corals are assembled within 11 distinct faunal provinces. Province limits are characterized by co-occurrence of multiple species range boundaries. Unexpectedly, these faunal breaks are poorly predicted by contemporary environmental conditions and the present-day distribution of habitat. Instead, faunal breaks show striking concordance with geological features (tectonic plates and mantle plume tracks). The depth range over which a species occurs, its larval development rate and genus age are important determinants of the likelihood that species will straddle faunal breaks. Our findings indicate that historical processes, habitat heterogeneity and species colonization ability account for more of the present-day biogeographical patterns of corals than explanations based on the contemporary distribution of reefs or environmental conditions.
机译:物种丰富度梯度在自然界无处不在,但是在宏观生态学尺度上产生和维持这些模式的机制仍未解决。我们使用一种新方法,重点关注物种的重叠地理范围,以揭示印度洋-太平洋珊瑚在11个不同的动物区系内聚集在一起。省域限制的特征是同时存在多个物种范围边界。出乎意料的是,由于现代环境条件和当今栖息地的分布,这些动物区系中断的预测很差。相反,动物区系断裂显示出与地质特征(构造板块和地幔柱流迹)惊人的一致性。一个物种发生的深度范围,其幼体发育速度和属龄是决定物种跨越动物群破裂可能性的重要决定因素。我们的发现表明,历史过程,栖息地异质性和物种定殖能力比当今基于珊瑚礁或环境条件的解释更能说明当今珊瑚的生物地理格局。

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