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首页> 外文期刊>Theoretical Ecology >When individual life history matters: conditions for juvenile-adult stage structure effects on population dynamics
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When individual life history matters: conditions for juvenile-adult stage structure effects on population dynamics

机译:当个人生活历史问题很重要:少年成人阶段结构对人口动态的影响

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Ecological theory about the dynamics of interacting populations is mainly based on unstructured models that account for species abundances only. In turn, these models constitute the basis for our understanding of the functioning of ecological communities and ecosystems and their responses to environmental change, natural disturbances and human impacts. Structured models that take into account differences between individuals in age, stage or size have been shown to sometimes make predictions that run counter to the predictions of unstructured analogues. It is however unclear which biological mechanisms that are accounted for in the structured models give rise to these contrasting predictions. Focusing on two particular rules-of-thumb that generally hold in unstructured consumer-resource models, one relating to the relationship between mortality and equilibrium density of the consumer and the other relating to the stability of the equilibrium, I investigate the necessary conditions under which accounting for juvenile-adult stage structure can lead to qualitatively different model predictions. In particular, juvenile-adult stage structure is shown to overturn the two rules-of-thumb in case the model also accounts for the energetic requirements for basic metabolic maintenance. Given the fundamental nature of both juvenile-adult stage structure as well as metabolic maintenance requirements, these results call into question the generality of the predictions derived from unstructured models.
机译:关于交互群体动态的生态学理论主要基于仅针对物种丰富的非结构化模型。反过来,这些模型构成了我们对生态社区和生态系统的运作的理解以及对环境变化,自然骚乱和人类影响的反应的基础。已经显示了在年龄,阶段或大小之间进行个人之间的差异的结构化模型,有时会使预测与非结构化类似物的预测运行。然而,目前不清楚在结构化模型中占的哪种生物机制引起了这些对比预测。专注于两种特定的拇指规则,通常持有非结构化的消费资源模型,与消费者的死亡率和平衡密度之间的关系有关,我研究了必要的条件少年成人阶段结构的核算可以导致定性不同的模型预测。特别是,少年成人阶段结构被显示为推翻两项拇指规则,以防模型也占基本代谢维护的能量要求。鉴于少年成人阶段结构的基本性质以及代谢维护要求,这些结果调查了来自非结构化模型的预测的一般性。

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