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The latitudinal diversity gradient in South American mammals revisited using a regional analysis approach: The importance of climate at extra-tropical latitudes and history towards the tropics

机译:使用区域分析方法重新审视南美哺乳动物的纬度多样性梯度:温带纬度的气候和热带历史对热带的重要性

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摘要

The latitudinal diversity gradient has been considered a consequence of a shift in the impact of abiotic and biotic factors that limit species distributions from the poles to the equator, thus influencing species richness variation. It has also been considered the outcome of evolutionary processes that vary over geographical space. We used six South American mammal groups to test the association of environmental and evolutionary factors and the ecological structuring of mammal assemblages with spatial variation in taxonomic richness (TR), at a spatial resolution of 110 km x 110 km, at tropical and extra-tropical latitudes. Based on attributes that represent what mammal species do in ecosystems, we estimated ecological diversity (ED) as a mean pairwise ecological distance between all co-occurring taxa. The mean pairwise phylogenetic distance between all co-occurring taxa (AvPD) was used as an estimation of phylogenetic diversity. Geographically Weighted Regression analyses performed separately for each mammal group identified tropical and extra-tropical high R2 areas where environmental and evolutionary factors strongly accounted for richness variation. Temperature was the most important predictor of TR in high R2 areas outside the tropics, as was AvPD within the tropics. The proportion of TR variation accounted for by environment (either independently or combined with AvPD) was higher in tropical areas of high richness and low ecological diversity than in tropical areas of high richness and high ecological diversity. In conclusion, we confirmed a shift in the impact of environmental factors, mainly temperature, that best account for mammal richness variation in extra-tropical regions, whereas phylogenetic diversity best accounts for richness variation within the tropics. Environment in combination with evolutionary history explained the coexistence of a high number of ecologically similar species within the tropics. Consideration of the influence of contemporary environmental variables and evolutionary history is crucial to understanding of the latitudinal diversity gradient.
机译:纬度多样性梯度被认为是非生物和生物因素影响转移的结果,非生物和生物因素限制了物种从极点到赤道的分布,从而影响了物种丰富度的变化。它也被认为是随着地理空间而变化的进化过程的结果。我们使用六个南美哺乳动物群体,以110 km x 110 km的空间分辨率在热带和亚热带地区,测试了环境和进化因素与哺乳动物种群生态结构的关联,这些物种具有分类学丰富度(TR)的空间变化。纬度。基于代表哺乳动物物种在生态系统中起作用的属性,我们将生态多样性(ED)估计为所有同时出现的类群之间的平均成对生态距离。所有同时出现的类群(AvPD)之间的平均成对系统发育距离被用作系统发育多样性的估计。对每个哺乳动物组分别进行的地理加权回归分析确定了热带和亚热带高R 2 区域,其中环境和进化因素是丰富度变化的重要原因。在热带以外的高R 2 地区,温度是热带地区最重要的TR预测指标,热带地区的AvPD也是如此。高丰富度和低生态多样性的热带地区由环境(独立或与AvPD结合)造成的TR变化的比例要高于高丰富度和高生态多样性的热带地区。总之,我们确认了环境因素(主要是温度)的影响发生了变化,这最能说明热带地区的哺乳动物丰富度变化,而系统发育多样性最能说明热带地区的丰富度变化。环境与进化史相结合,解释了热带地区大量生态相似物种的共存。考虑当代环境变量和进化史的影响对于理解纬度多样性梯度至关重要。

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