生物扩散
消光(光学矿物学)
生态学
生物多样性
物种丰富度
多元化(营销策略)
空间生态学
遗传算法
地理
分类单元
气候变化
生物
古生物学
人口
营销
人口学
业务
社会学
作者
Thiago F. Rangel,Neil R. Edwards,Philip B. Holden,José Alexandre Felizola Diniz‐Filho,William D. Gosling,Marco Túlio Pacheco Coelho,Fernanda A. S. Cassemiro,Carsten Rahbek,Robert K. Colwell
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2018-07-19
卷期号:361 (6399)
被引量:412
标识
DOI:10.1126/science.aar5452
摘要
Individual processes shaping geographical patterns of biodiversity are increasingly understood, but their complex interactions on broad spatial and temporal scales remain beyond the reach of analytical models and traditional experiments. To meet this challenge, we built a spatially explicit, mechanistic simulation model implementing adaptation, range shifts, fragmentation, speciation, dispersal, competition, and extinction, driven by modeled climates of the past 800,000 years in South America. Experimental topographic smoothing confirmed the impact of climate heterogeneity on diversification. The simulations identified regions and episodes of speciation (cradles), persistence (museums), and extinction (graves). Although the simulations had no target pattern and were not parameterized with empirical data, emerging richness maps closely resembled contemporary maps for major taxa, confirming powerful roles for evolution and diversification driven by topography and climate.
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