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Population context matters: Predicting the effects of metabolic stress mediated by food availability and predation with an agent- and energy budget-based model

机译:人口背景问题:预测食品可用性和捕食介导的代谢应力与基于代理和能源预算的模型的影响

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Population effects of stressors, such as toxic chemicals or increased temperatures, affecting the energy budgets of organisms are mediated by predation pressure and food availability. However, these two population contexts have mostly been considered separately. Moreover, because the sensitivity of the different pathways of energy to stress may differ, it is difficult to predict combined stressor effects. We used an agent-based model of fathead minnows (Pimephales promelas) to infer the population-level impacts of a hypothetical, sublethal stressor that affects an individual's metabolism (growth, reproduction, maintenance, or assimilation) in systems in which population size is controlled by different combinations of food availability and predation. We found that population-level effects are rarely directly proportional to individual-level effects, and were greater when the stressor impacted assimilation and populations were predation-controlled. Our results suggest that individual level measurements alone are insufficient for inferring population-level impacts of stressors and that accurate inference hinges on insight into how populations are regulated. We suggest incorporating individual-level data into mechanistic models that take into account both the energy budgets of individuals and the population-level
机译:通过捕食压力和食物可用性介导的压力源或增加有毒化学物质或增加的温度,这些压力源的人口效应是通过捕食压力和食品的介导的。但是,这两个人口大多数人都被分开考虑。此外,由于能量的不同通路对应力的敏感性可能不同,因此难以预测组合的压力效应。我们使用了基于代理的Fathead Minnows(Pimephales Promelas)模型,推断出假设的止结性压力源的人口级别影响,这些反诉应激源在控制人口规模的系统中影响个人的新陈代谢(增长,繁殖,维护或同化)通过不同的食物可用性和捕食组合。我们发现人口水平效应很少与个体级别效应成正比,当压力频率受到影响和填充的捕食控制时,更大。我们的研究结果表明,单独的个人水平测量不足以推断压力源的人口水平影响,并且准确的推理铰链在洞察中讨论人口如何受到监管。我们建议将个性级数据纳入机械模型,以考虑个人的能源预算和人口级别

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