Department of Genetics, University of Georgia, Athens, Georgia, 30602.
Current Address: Department of Biological Sciences, University of Toronto Scarborough, Toronto, ON, M1C 1A4, Canada.
Evolution. 2019 Nov;73(11):2247-2262. doi: 10.1111/evo.13854. Epub 2019 Oct 21.
Heritable genetic variation is necessary for populations to evolve in response to anthropogenic climate change. However, antagonistic genetic correlations among traits may constrain the rate of adaptation, even if substantial genetic variation exists. We examine potential genetic responses to selection by comparing multivariate genetic variance-covariances of traits and fitness (multivariate Robertson-Price identities) across different environments in a reciprocal transplant experiment of the forb Boechera stricta in the Rocky Mountains. By transplanting populations into four common gardens arrayed along an elevational gradient, and exposing populations to control and snow removal treatments, we simulated future and current climates and snowmelt regimes. Genetic variation in flowering and germination phenology declined in plants moved downslope to warmer, drier sites, suggesting that these traits may have a limited ability to evolve under future climates. Simulated climate change via snow removal altered the strength of selection on flowering traits, but we found little evidence that genetic correlations among traits are likely to affect the rate of adaptation to climate change. Overall, our results suggest that climate change may alter the evolutionary potential of B. stricta, but reduced expression of genetic variation may be a larger impediment to adaptation than constraints imposed by antagonistic genetic correlations.
遗传变异是种群对人为气候变化做出响应而进化的必要条件。然而,即使存在大量的遗传变异,性状之间的拮抗遗传相关也可能限制适应的速度。我们通过比较沿海拔梯度排列的四个共同花园中的拟南芥 Boechera stricta 的性状和适合度的多变量遗传方差协方差(多变量 Robertson-Price 恒等式),来研究对选择的潜在遗传响应。通过将种群移植到控制和除雪处理的四个常见花园中,我们模拟了未来和当前的气候以及融雪模式。向温暖、干燥的下坡地区移动的植物的开花和发芽物候的遗传变异减少,这表明这些性状在未来的气候条件下可能具有有限的进化能力。通过除雪模拟气候变化改变了开花性状的选择强度,但我们几乎没有证据表明性状之间的遗传相关性可能会影响适应气候变化的速度。总的来说,我们的研究结果表明,气候变化可能会改变 Boechera stricta 的进化潜力,但与拮抗遗传相关所施加的限制相比,遗传变异表达的减少可能是适应气候变化的更大障碍。