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The impact of herbivore-plant coevolution on plant community structure

机译:草食动物-植物共进化对植物群落结构的影响

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Coevolutionary theory proposes that the diversity of chemical structures found in plants is, in large part, the result of selection by herbivores. Because herbivores often feed on chemically similar plants, they should impose selective pressures on plants to diverge chemically or bias community assembly toward chemical divergence. Using a coevolved interaction between a group of chrysomelid beetles and their host plants, I tested whether coexisting plants of the Mexican tropical dry forest tend to be chemically more dissimilar than random. Results show that some of the communities are chemically overdispersed and that overdispersion is related to the tightness of the interaction between plants and herbivores and the spatial scale at which communities are measured. As coevolutionary specialization increases and spatial scale decreases, communities tend to be more chemically dissimilar. At fairly local scales and where herbivores have tight, one-to-one interactions with plants, communities have a strong pattern of chemical disparity.
机译:协同进化理论提出,植物中化学结构的多样性在很大程度上是食草动物选择的结果。由于食草动物通常以化学相似的植物为食,因此它们应向植物施加选择性压力以使化学差异或使群落组装偏向化学差异。通过使用一组金龟子甲虫与其寄主植物之间共同进化的相互作用,我测试了墨西哥热带干旱森林中并存的植物在化学上是否倾向于比随机的更相似。结果表明,某些群落在化学上过度分散,过度分散与植物与草食动物之间相互作用的紧密性以及测量群落的空间规模有关。随着协同进化专业化程度的提高和空间尺度的减小,群落在化学上趋于不同。在相当局部的规模上,并且食草动物与植物之间存在紧密的一对一相互作用,社区具有强烈的化学差异。

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