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首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >Timing in a fluctuating environment: Environmental variability and asymmetric fitness curves can lead to adaptively mismatched avian reproduction
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Timing in a fluctuating environment: Environmental variability and asymmetric fitness curves can lead to adaptively mismatched avian reproduction

机译:波动环境中的时间安排:环境变异性和不对称适应曲线可能会导致禽类适应性失配

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摘要

Adaptation in dynamic environments depends on the grain, magnitude and predictability of ecological fluctuations experienced within and across generations. Phenotypic plasticity is a well-studied mechanism in this regard, yet the potentially complex effects of stochastic environmental variation on optimal mean trait values are often overlooked. Using an optimality model inspired by timing of reproduction in great tits, we show that temporal variation affects not only optimal reaction norm slope, but also elevation. With increased environmental variation and an asymmetric relationship between fitness and breeding date, optimal timing shifts away from the side of the fitness curve with the steepest decline. In a relatively constant environment, the timing of the birds is matched with the seasonal food peak, but they become adaptively mismatched in environments with temporal variation in temperature whenever the fitness curve is asymmetric. Various processes affecting the survival of offspring and parents influence this asymmetry, which collectively determine the 'safest' strategy, i.e. whether females should breed before, on, or after the food peak in a variable environment. As climate change might affect the (co)variance of environmental variables as well as their averages, risk aversion may influence how species should shift their seasonal timing in a warming world.
机译:在动态环境中的适应取决于代代之间以及代代之间经历的生态波动的大小,大小和可预测性。在这方面,表型可塑性是一个经过充分研究的机制,但是随机环境变化对最佳平均性状价值的潜在复杂影响却常常被忽略。使用受大山雀繁殖时间启发的最佳模型,我们表明时间变化不仅影响最佳反应范数斜率,而且影响海拔。随着环境变化的增加以及适应性和育种日期之间的不对称关系,最佳时机从适应性曲线的一侧移开,下降幅度最大。在相对恒定的环境中,鸟类的时机与季节性食物的高峰相匹配,但是当健身曲线不对称时,它们会在温度随时间变化的环境中适应性地失配。影响后代和父母生存的各种过程都会影响这种不对称性,这共同决定了“最安全”的策略,即在变化的环境中,女性应该在食物高峰之前,之后还是之后进行繁殖。由于气候变化可能会影响环境变量及其平均值的(协)方差,因此规避风险可能会影响物种在变暖的世界中应如何改变其季节时机。

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