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部分免受波动选择的保护会导致种群大小波动范围变宽,并产生新的平衡选择机制。

Partial protection from fluctuating selection leads to evolution towards wider population size fluctuation and a novel mechanism of balancing selection.

机构信息

Division of EcoScience and Department of Life Science, Ewha Womans University, Ewhayeodae-gil 52, Seodaemun-gu, Seoul 03760, Korea.

出版信息

Proc Biol Sci. 2023 Jun 28;290(2001):20230822. doi: 10.1098/rspb.2023.0822. Epub 2023 Jun 21.

Abstract

When a population is partially protected from fluctuating selection, as when a seed bank is present, variance in fitness will be reduced and reproductive success of the population will be promoted. This study further investigates the effect of such a 'refuge' from fluctuating selection using a mathematical model that couples demographic and evolutionary dynamics. While alleles that cause smaller fluctuations in population density should be positively selected according to classical theoretic predictions, this study finds the opposite: alleles that increase the amplitude of population size fluctuation are positively selected if population density is weakly regulated. Under strong density regulation with a constant carrying capacity, long-term maintenance of polymorphism caused by the storage effect emerges. However, if the carrying capacity of the population is oscillating, mutant alleles whose fitness fluctuates in the same direction as population size are positively selected, eventually reaching fixation or intermediate frequencies that oscillate over time. This oscillatory polymorphism, which requires fitness fluctuations that can arise with simple trade-offs in life-history traits, is a novel form of balancing selection. These results highlight the importance of allowing joint demographic and population genetic changes in models, the failure of which prevents the discovery of novel eco-evolutionary dynamics.

摘要

当一个种群部分免受波动选择时,例如当存在种子库时,适应性的方差将会降低,种群的生殖成功率将会提高。本研究使用耦合人口统计和进化动态的数学模型,进一步研究了这种免受波动选择的“避难所”的影响。虽然根据经典理论预测,导致种群密度波动较小的等位基因应该受到正选择,但本研究发现了相反的情况:如果种群密度弱调节,则增加种群大小波动幅度的等位基因受到正选择。在具有恒定承载能力的强密度调节下,由于存储效应而长期维持多态性。然而,如果种群的承载能力在波动,那么与种群大小波动方向一致的适应度波动的突变等位基因受到正选择,最终达到固定或随时间波动的中间频率。这种需要可以通过简单的生活史特征权衡产生的适应性波动的振荡多态性,是一种新的平衡选择形式。这些结果强调了在模型中允许人口统计和种群遗传变化联合的重要性,这种失败会阻止新的生态进化动态的发现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/21d5/10281806/ff0083d2475d/rspb20230822f01.jpg

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