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Synergistic influences of phase, density, and climatic variation on the dynamics of fluctuating populations

机译:相位,密度和气候变化对人口变动动态的协同影响

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Although ecologists have long recognized that certain mammalian species exhibit high-amplitude, often multiannual, fluctuations in abundance, their causes have remained poorly understood and the subject of intense debate. A key contention has been the relative role of density-dependent and density-independent processes in governing population dynamics. We applied capture-mark-recapture analysis to 25 years of monthly trapping data from a fluctuating prairie vole Microtus ochrogaster population in Illinois, USA, to estimate realized population growth rates and associated vital rates (survival and recruitment) and modeled them as a function of vole density and density-independent climatic variation. We also tested for phase dependence and seasonality in the effects of the above processes. Variation in the realized population growth rate was best explained by phase-specific changes in vole density lagged by one month and mean monthly temperatures with no time lags. The underlying vital rates, survival and recruitment, were influenced by the additive and interactive effects of phase, vole density, and mean monthly temperatures. Our results are consistent with the observation that large-scale population fluctuations are characterized by phase-specific changes in demographic and physiological characteristics. Our findings also support the growing realization that the interaction between climatic variables and density-dependent factors may be a widespread phenomenon, and they suggest that the direction and magnitude of such interactive effects may be phase specific. We conclude that density-dependent and density-independent climatic variables work in tandem during each phase of density fluctuations to drive the dynamics of fluctuating populations.
机译:尽管生态学家早就认识到某些哺乳动物物种呈现出高幅度的变化,通常是多年一次的波动,但其原因仍然知之甚少,并引起了激烈的争论。一个关键的争论是密度依赖和密度独立过程在控制种群动态中的相对作用。我们对来自美国伊利诺伊州动荡的草原田鼠a蛇种群的25年月度捕获数据进行了捕获标记-捕获分析,以估算实际种群增长率和相关的生命率(生存和补充),并根据田鼠密度和与密度无关的气候变化。我们还测试了上述过程对相位依赖性和季节性的影响。实地人口增长率的变化最好用田鼠密度的特定阶段变化来解释,该变化滞后一个月和平均每月温度,没有时间滞后。基本的生命率,生存和补充受阶段,田鼠密度和平均每月温度的累加和交互作用影响。我们的结果与以下观察结果一致:大规模人口波动的特征是人口统计和生理特征的特定阶段变化。我们的发现还支持人们日益认识到,气候变量和依赖密度的因素之间的相互作用可能是一种普遍现象,并且他们表明这种相互作用的方向和强度可能是特定于相的。我们得出结论,密度相关和密度独立的气候变量在密度波动的每个阶段协同工作,以驱动不断变化的种群动态。

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