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Simulating Species Richness Using Agents with Evolving Niches, with an Example of Galapagos Plants

机译:使用具有不断发展的生态位的媒介模拟物种丰富度,以加拉帕戈斯植物为例

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摘要

I sought to evolve plant species richness patterns on 22 Galapagos Islands, Ecuador, as an exploration of the utility of evolutionary computation and an agent-based approach in biogeography research. The simulation was spatially explicit, where agentswere plant monocultures defined by three niche dimensions, lava (yes or no), elevation, and slope. Niches were represented as standard normal curves subjected to selection pressure, where neighboring plants bred if their niches overlapped sufficiently,and were considered the same species, otherwise they were different species. Plants that bred produced seeds with mutated niches. Seeds dispersed locally and longer distances, and established if the habitat was appropriate given the seed's niche. From asingle species colonizing a random location, hundreds of species evolved to fill the islands. Evolved plant species richness agreed very well with observed plant species richness. I review potential uses of an agent-based representation of evolving niches in biogeography research.
机译:我试图在厄瓜多尔的22个加拉帕戈斯群岛上开发植物物种丰富度模式,以探索进化计算的实用性和基于代理的方法来进行生物地理学研究。该模拟在空间上是明确的,其中代理人是由三个生态位维度(熔岩(是或否),海拔和坡度)定义的植物单一栽培。生态位表示为经受选择压力的标准正态曲线,如果相邻植物的生态位充分重叠,则将其育种,并认为它们是同一物种,否则它们是不同物种。育种的植物产生的种子具有变异的生态位。种子散布在本地且距离较远,并根据种子的生态位确定栖息地是否合适。从单一物种在随机位置上定居,数百种物种演变成充满岛屿。进化的植物物种丰富度与观察到的植物物种丰富度非常吻合。我回顾了生物地理研究中基于角色的进化生态位代表的潜在用途。

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