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首页> 外文期刊>The ISME journal emultidisciplinary journal of microbial ecology >Strain-specific functional and numerical responses are required to evaluate impacts on predator-prey dynamics
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Strain-specific functional and numerical responses are required to evaluate impacts on predator-prey dynamics

机译:需要特定于应变的功能和数值响应来评估对捕食者-猎物动力学的影响

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摘要

We use strains recently collected from the field to establish cultures; then, through laboratory studies we investigate how among strain variation in protozoan ingestion and growth rates influences population dynamics and intraspecific competition. We focused on the impact of changing temperature because of its well-established effects on protozoan rates and its ecological relevance, from daily fluctuations to climate change. We show, first, that there is considerable inter-strain variability in thermal sensitivity of maximum growth rate, revealing distinct differences among multiple strains of our model species Oxyrrhis marina. We then intensively examined two representative strains that exhibit distinctly different thermal responses and parameterised the influence of temperature on their functional and numerical responses. Finally, we assessed how these responses alter predator-prey population dynamics. We do this first considering a standard approach, which assumes that functional and numerical responses are directly coupled, and then compare these results with a novel framework that incorporates both functional and numerical responses in a fully parameterised model. We conclude that: (i) including functional diversity of protozoa at the sub-species level will alter model predictions and (ii) including directly measured, independent functional and numerical responses in a model can provide a more realistic account of predator-prey dynamics.
机译:我们使用最近从田间收集的菌株来建立文化。然后,通过实验室研究,我们研究了原生动物摄食和生长速率之间的变异如何影响种群动态和种内竞争。我们关注温度变化的影响,因为它对原生动物的生长率及其从日常波动到气候变化的生态相关性均具有公认的影响。首先,我们表明最大生长速率的热敏感性在菌株间存在很大差异,这揭示了我们的模型种Oxyrrhis marina的多个菌株之间的明显差异。然后,我们集中检查了两个代表性的菌株,它们表现出明显不同的热响应,并设定了温度对其功能和数值响应的影响。最后,我们评估了这些反应如何改变捕食者-被捕者种群动态。我们首先考虑一种标准方法,该方法假定功能和数值响应是直接耦合的,然后将这些结果与一个新颖的框架进行比较,该框架在完全参数化的模型中同时包含了功能和数值响应。我们得出的结论是:(i)在亚物种水平上包括原生动物的功能多样性将改变模型的预测,并且(ii)在模型中包括直接测量的,独立的功能和数字响应可以提供对捕食者-猎物动力学的更现实的解释。

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