水蚤
生物
表型可塑性
水蚤
进化生物学
遗传变异
可塑性
水晶
自然选择
选择(遗传算法)
稳定选择
动物
捕食
生态学
遗传学
基因
甲壳动物
热力学
物理
人工智能
计算机科学
作者
Dörthe Becker,Karen Barnard-Kubow,Robert Porter,Austin Edwards,Erin Voss,Andrew P. Beckerman,Alan O. Bergland
标识
DOI:10.1038/s41559-022-01837-5
摘要
The adaptive nature of phenotypic plasticity is widely documented. However, little is known about the evolutionary forces that shape genetic variation of plasticity within populations. Whether genetic variation in plasticity is driven by stabilizing or diversifying selection and whether the strength of such forces remains constant through time, remain open questions. Here, we address this issue by assessing the evolutionary forces that shape genetic variation in antipredator developmental plasticity of Daphnia pulex. Antipredator plasticity in D. pulex is characterized by the growth of a pedestal and spikes in the dorsal head region upon exposure to predator cue. We characterized genetic variation in plasticity using a method that describes the entire dorsal shape amongst >100 D. pulex strains recently derived from the wild. We observed the strongest reduction in genetic variation in dorsal areas where plastic responses were greatest, consistent with stabilizing selection. We compared mutational variation (Vm) to standing variation (Vg) and found that Vg/Vm is lowest in areas of greatest plasticity, again consistent with stabilizing selection. Our results suggest that stabilizing selection operates directly on phenotypic plasticity in Daphnia and provide a rare glimpse into the evolution of fitness-related traits in natural populations.
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