首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Reconsidering the importance of the past in predator–prey models: both numerical and functional responses depend on delayed prey densities
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Reconsidering the importance of the past in predator–prey models: both numerical and functional responses depend on delayed prey densities

机译:重新考虑过去在捕食者-猎物模型中的重要性:数字和功能响应均取决于延迟的猎物密度

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摘要

We propose that delayed predator–prey models may provide superficially acceptable predictions for spurious reasons. Through experimentation and modelling, we offer a new approach: using a model experimental predator–prey system (the ciliates Didinium and Paramecium), we determine the influence of past-prey abundance at a fixed delay (approx. one generation) on both functional and numerical responses (i.e. the influence of present : past-prey abundance on ingestion and growth, respectively). We reveal a nonlinear influence of past-prey abundance on both responses, with the two responding differently. Including these responses in a model indicated that delay in the numerical response drives population oscillations, supporting the accepted (but untested) notion that reproduction, not feeding, is highly dependent on the past. We next indicate how delays impact short- and long-term population dynamics. Critically, we show that although superficially the standard (parsimonious) approach to modelling can reasonably fit independently obtained time-series data, it does so by relying on biologically unrealistic parameter values. By contrast, including our fully parametrized delayed density dependence provides a better fit, offering insights into underlying mechanisms. We therefore present a new approach to explore time-series data and a revised framework for further theoretical studies.
机译:我们建议,由于虚假原因,延迟的捕食者-猎物模型可以提供表面上可接受的预测。通过实验和建模,我们提供了一种新方法:使用模型实验性捕食者-猎物系统(纤毛虫迪迪尼姆和草履虫),以固定的延迟(大约一代)确定过去猎物的丰度对功能和行为的影响。数值响应(即当前:过去猎物的丰富度分别对摄食和生长的影响)。我们揭示了食饵丰富度对两个响应的非线性影响,两个响应的响应不同。将这些响应包括在模型中表明,数值响应的延迟会导致种群振荡,从而支持了公认的(但未经检验的)观念,即繁殖而非喂养是高度依赖过去的。接下来,我们将说明延迟如何影响短期和长期的人口动态。至关重要的是,我们表明尽管表面上的标准(简约)建模方法可以合理地拟合独立获得的时间序列数据,但它依靠生物学上不切实际的参数值来实现。相比之下,包括我们完全参数化的延迟密度依赖性将提供更好的契合度,从而深入了解潜在的机制。因此,我们提出了一种探索时间序列数据的新方法,并提出了用于进一步理论研究的修订框架。

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