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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >How diversification rates and diversity limits combine to create large-scale species–area relationships
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How diversification rates and diversity limits combine to create large-scale species–area relationships

机译:多样化率和多样性限制如何结合以建立大规模的物种-区域关系

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Species–area relationships (SARs) have mostly been treated from an ecological perspective, focusing on immigration, local extinction and resource-based limits to species coexistence. However, a full understanding across large regions is impossible without also considering speciation and global extinction. Rates of both speciation and extinction are known to be strongly affected by area and thus should contribute to spatial patterns of diversity. Here, we explore how variation in diversification rates and ecologically mediated diversity limits among regions of different sizes can result in the formation of SARs. We explain how this area-related variation in diversification can be caused by either the direct effects of area or the effects of factors that are highly correlated with area, such as habitat diversity and population size.We also review environmental, clade-specific and historical factors that affect diversification and diversity limits but are not highly correlated with region area, and thus are likely to cause scatter in observed SARs. We present new analyses using data on the distributions, ages and traits of mammalian species to illustrate these mechanisms; in doing so we provide an integrated perspective on the evolutionary processes shaping SARs.
机译:物种-区域关系(SAR)主要从生态学角度进行处理,重点是移民,局部灭绝和基于资源的物种共存限制。但是,如果不考虑物种形成和全球灭绝,就不可能对大区域进行全面了解。已知物种形成和消亡的速度都受到面积的强烈影响,因此应有助于多样性的空间格局。在这里,我们探讨了不同大小区域之间的多样性变化率和生态媒介多样性极限的变化如何导致SAR的形成。我们解释了这种与区域相关的多样性变化是如何由区域的直接影响或与区域高度相关的因素(例如栖息地多样性和人口规模)的影响引起的,并且还回顾了环境,进化枝和历史影响多样性和多样性极限但与区域面积不高度相关的因素,因此可能导致观测到的SAR发生分散。我们使用哺乳动物物种的分布,年龄和性状数据提供了新的分析方法,以说明这些机制。在此过程中,我们提供了形成SAR的进化过程的综合观点。

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