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Global patterns of the beta diversity-energy relationship in terrestrial vertebrates

机译:陆地脊椎动物β多样性-能量关系的整体模式

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Patterns in beta diversity or species turnover, describing the change in species composition between places, have their wide implication for ecological and evolutionary issues. It is thought that beta diversity increases with increasing energy availability, but very few studies have directly tested this hypothesis. We examined the beta diversity-energy relationship for four classes of terrestrial vertebrates (mammals, birds, reptiles, and amphibians) in ecoregions across the world. The relationship was examined for each class in each of six biogeographic realms. We show that beta diversity is generally higher in areas with higher energy availability, measured as annual potential evapotranspiration. A higher level of beta diversity in areas with higher energy availability may have contributed to the well-known latitudinal diversity gradient (i.e., species richness increases towards the equator).
机译:β多样性或物种更新的模式描述了不同地点之间物种组成的变化,对生态和进化问题具有广泛的意义。人们认为,β多样性会随着可用能量的增加而增加,但是很少有研究直接检验这种假设。我们研究了全球生态区域中四类陆生脊椎动物(哺乳动物,鸟类,爬行动物和两栖动物)的β多样性-能量关系。在六个生物地理领域中的每个领域检查了这种关系。我们显示,以年潜在蒸散量衡量,在具有较高能源利用率的地区,β多样性通常较高。具有较高能源利用率的区域中较高的β多样性可能导致了众所周知的纬度多样性梯度(即物种丰富度向赤道增加)。

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