Evolutionary Adaptation in Heterogeneous and Changing Environments.

IF 3.1 2区 环境科学与生态学 Q2 ECOLOGY Evolution Pub Date : 2024-12-22 DOI:10.1093/evolut/qpae144
Nandita Chaturvedi, Purba Chatterjee
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引用次数: 0

Abstract

Organisms that are adapting to long-term environmental change almost always deal with multiple environments and trade-offs that affect their optimal phenotypic strategy. Here, we combine the idea of repeated variation or heterogeneity, like seasonal shifts, with long-term directional dynamics. Using the framework of fitness sets, we determine the dynamics of the optimal phenotype in two competing environments encountered with different frequencies, one of which changes with time. When such an optimal strategy is selected for in simulations of evolving populations, we observe rich behavior that is qualitatively different from and more complex than adaptation to long-term change in a single environment. The probability of survival and the critical rate of environmental change above which populations go extinct depend crucially on the relative frequency of the two environments and the strength and asymmetry of their selection pressures. We identify a critical frequency for the stationary environment, above which populations can escape the pressure to constantly evolve by adapting to the stationary optimum. In the neighborhood of this critical frequency, we also find the counter-intuitive possibility of a lower bound on the rate of environmental change, below which populations go extinct, and above which a process of evolutionary rescue is possible.

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异质和不断变化的环境中的进化适应。
适应长期环境变化的生物几乎总是要面对多重环境和影响其最佳表型策略的权衡。在这里,我们将重复变异或异质性(如季节性变化)与长期方向性动力学结合起来。利用适性集框架,我们确定了在两个不同频率的竞争环境中最优表型的动态,其中一个环境会随着时间的变化而变化。当在模拟进化种群中选择这种最优策略时,我们观察到了丰富的行为,这些行为与适应单一环境中的长期变化有着本质区别,而且更为复杂。种群灭绝的生存概率和临界环境变化率在很大程度上取决于两种环境的相对频率及其选择压力的强度和不对称性。我们确定了静止环境的临界频率,在此频率之上,种群可以通过适应静止的最佳环境来摆脱不断进化的压力。在这个临界频率附近,我们还发现了一种与直觉相反的可能性,那就是环境变化率的下限,低于这个下限,种群就会灭绝,而高于这个下限,种群就有可能得到进化拯救。
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来源期刊
Evolution
Evolution 环境科学-进化生物学
CiteScore
5.00
自引率
9.10%
发文量
0
审稿时长
3-6 weeks
期刊介绍: Evolution, published for the Society for the Study of Evolution, is the premier publication devoted to the study of organic evolution and the integration of the various fields of science concerned with evolution. The journal presents significant and original results that extend our understanding of evolutionary phenomena and processes.
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