Aquatic Microbiology, Institute for Biodiversity and Ecosystem Dynamics, University of Amsterdam, P.O. Box 94248, 1090 GE Amsterdam, The Netherlands.
Am Nat. 2010 Dec;176(6):E162-76. doi: 10.1086/657036. Epub 2010 Oct 13.
Nutrient limitation determines the primary production and species composition of many ecosystems. Here we apply an adaptive dynamics approach to investigate evolution of the ecological stoichiometry of primary producers and its implications for plant-herbivore interactions. The model predicts a trade-off between the competitive ability and grazing susceptibility of primary producers, driven by changes in their nutrient uptake rates. High nutrient uptake rates enhance the competitiveness of primary producers but also increase their nutritional quality for herbivores. This trade-off enables coexistence of nutrient exploiters and grazing avoiders. If herbivores are not selective, evolution favors runaway selection toward high nutrient uptake rates of the primary producers. However, if herbivores select nutritious food, the model predicts an evolutionarily stable strategy with lower nutrient uptake rates. When the model is parameterized for phytoplankton and zooplankton, the evolutionary dynamics result in plant-herbivore oscillations at ecological timescales, especially in environments with high nutrient availability and low selectivity of the herbivores. High herbivore selectivity stabilizes the community dynamics. These model predictions show that evolution permits nonequilibrium dynamics in plant-herbivore communities and shed new light on the evolutionary forces that shape the ecological stoichiometry of primary producers.
营养限制决定了许多生态系统的初级生产力和物种组成。在这里,我们应用自适应动态方法来研究初级生产者生态化学计量学的进化及其对植物-食草动物相互作用的影响。该模型预测,由于养分吸收速率的变化,初级生产者的竞争能力和食草敏感性之间存在权衡。高养分吸收速率增强了初级生产者的竞争力,但也增加了它们对食草动物的营养价值。这种权衡使养分掠夺者和食草回避者能够共存。如果食草动物没有选择性,进化就会朝着初级生产者高养分吸收速率的方向进行。然而,如果食草动物选择有营养的食物,那么模型预测的是一种具有较低养分吸收速率的进化稳定策略。当该模型针对浮游植物和浮游动物进行参数化时,进化动力学会导致植物-食草动物在生态时间尺度上的波动,特别是在营养物质供应丰富、食草动物选择性低的环境中。高食草动物选择性稳定了群落动态。这些模型预测表明,进化允许植物-食草动物群落中的非平衡动力学,并为塑造初级生产者生态化学计量学的进化力量提供了新的视角。