Department of Ecology and Evolutionary Biology, University of California Santa Cruz, 130 McAllister Way, Santa Cruz, CA, 95060, USA.
Oecologia. 2020 Feb;192(2):553-564. doi: 10.1007/s00442-019-04591-x. Epub 2020 Jan 13.
Trait variation among populations is important for shaping ecological dynamics. In marine intertidal systems, seawater temperature, low tide emersion temperature, and pH can drive variation in traits and affect species interactions. In western North America, Nucella dogwhelks are intertidal drilling predators of the habitat-forming mussel Mytilus californianus. Nucella exhibit local adaptation, but it is not known to what extent environmental factors and genetic structure contribute to variation in prey selectivity among populations. We surveyed drilled mussels at sites across Oregon and California, USA, and used multiple regression and Mantel tests to test the effects of abiotic factors and Nucella neutral genetic relatedness on the size of mussels drilled across sites. Our results show that Nucella at sites characterized by higher and less variable temperature and pH drilled larger mussels. Warmer temperatures appear to induce faster handling time, and more stable pH conditions may prolong opportunities for active foraging by reducing exposure to repeated stressful conditions. In contrast, there was no significant effect of genetic relatedness on prey size selectivity. Our results emphasize the role of climate in shaping marine predator selectivity on a foundation species. As coastal climates change, predator traits will respond to localized environmental conditions, changing ecological interactions.
种群间的特征变异对于塑造生态动态至关重要。在海洋潮间带系统中,海水温度、低潮时的露出温度和 pH 值会驱动特征的变化,并影响物种间的相互作用。在北美西海岸,石磺是生境形成贻贝加利福尼亚贻贝的钻食性捕食者。石磺表现出局部适应性,但尚不清楚环境因素和遗传结构在多大程度上导致了种群间对猎物选择性的变异。我们在美国俄勒冈州和加利福尼亚州的多个地点调查了被钻的贻贝,并使用多元回归和 Mantel 检验来检验非生物因素和石磺中性遗传亲缘关系对跨地点钻贝大小的影响。我们的结果表明,温度和 pH 值较高且变化较小的地点的石磺钻的贻贝更大。较高的温度似乎会导致更快的处理时间,而更稳定的 pH 值条件可能会通过减少对反复胁迫条件的暴露,延长积极觅食的机会。相比之下,遗传亲缘关系对猎物大小选择性没有显著影响。我们的研究结果强调了气候在塑造海洋捕食者对基础物种选择性方面的作用。随着沿海气候的变化,捕食者的特征将根据局部环境条件做出响应,从而改变生态相互作用。