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首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >Nonlinear averaging of thermal experience predicts population growth rates in a thermally variable environment
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Nonlinear averaging of thermal experience predicts population growth rates in a thermally variable environment

机译:热经验的非线性平均预测热可变环境中的人口增长率

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As thermal regimes change worldwide, projections of future population and species persistence often require estimates of how population growth rates depend on temperature. These projections rarely account for how temporal variation in temperature can systematically modify growth rates relative to projections based on constant temperatures. Here, we tested the hypothesis that time-averaged population growth rates in fluctuating thermal environments differ from growth rates in constant conditions as a consequence of Jensen's inequality, and that the thermal performance curves (TPCs) describing population growth in fluctuating environments can be predicted quantitatively based on TPCs generated in constant laboratory conditions. With experimental populations of the green alga Tetraselmis tetrahele, we show that nonlinear averaging techniques accurately predicted increased as well as decreased population growth rates in fluctuating thermal regimes relative to constant thermal regimes. We extrapolate from these results to project critical temperatures for population growth and persistence of 89 phytoplankton species in naturally variable thermal environments. These results advance our ability to predict population dynamics in the context of global change.
机译:随着热度制度的变化全世界,未来人口和物种持久性的预测通常需要估计人口增长率如何取决于温度。这些投影很少考虑在基于恒定温度的突起中如何系统地改变生长速率。在这里,我们测试了波动热环境中的时间平均人口增长率的假设因Jensen的不平等而与恒定条件的增长率不同,并且可以定量地预测描述波动环境中的群体生长的热性能曲线(TPC)基于在恒定实验室条件下产生的TPC。利用绿藻四轴四轴的实验群体,我们表明,在相对于恒定热状态下,温度预测的非线性平均技术以及降低的群体生长速率下降。我们从这些结果外推开,以在天然可变热环境中对89种植物生长和89​​种植物生长物种的临界温度进行临界温度。这些结果提高了我们在全球变革背景下预测人口动态的能力。

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