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Mazer, S. J.

Publications and source records attributed to Mazer, S. J..

2 recordsLinked to original sources

Estimates of the rate of adaptive evolution in four wild populations of Nemophila menziesii

Populations that have detectable additive genetic variance for fitness (VA(W)) have the capacity for increase in their mean fitness through natural selection. The extent to which the magnitude of VA(W) in wild populations is predictive of the rate of adaptation is not well known, because few empirical field-based studies have been designed to address this question. Here, we report a two-year field experiment with pedigreed seeds embedded in four natural populations of the annual wildflower Baby Blue Eyes (Nemophila menziesii H. & A.), a species native to western North America. We first estimated VA(W) in a parental generation and then evaluated whether that estimate accurately predicted the adaptive response observed in the subsequent offspring generation grown under natural field conditions. We achieved this by directly comparing the mean fitnesses of the parental generation and their progeny grown under the same environmental conditions. We detected VA(W) and evidence of adaptation in all populations despite inter-annual differences in environmental conditions that directly affected fitness. Genotype-by-year interactions in fitness indicate that the fitness ranking of families differed between years, implying that the selective environment shifted over time. Additionally, although the environment in the second year reduced population mean fitness in three sites, the offspring generation maintained mean fitness at or above replacement, suggesting that adaptive evolution may have buffered the effects of environmental change. Overall, our results suggest that the four populations harbored sufficient VA(W) for adaptation through natural selection to the environmental conditions observed during the two years of this study.

evolutionary biology↗

Herbarium specimens reliably track plant phenological responses to climate change in understudied montane biomes

Long-term field observations typically are the "gold-standard" for inferences of phenological sensitivities in montane systems but are spatially limited. Herbarium specimens provide broader spatial coverage, but their utility to accurately capture montane phenology remains poorly known. We compared flowering phenology of 45 species inferred from herbarium specimens with comparable data from nearly 50 years of direct observations at the Rocky Mountain Biological Laboratory. Estimates of flowering time and phenological sensitivity to snow density were consistent between herbarium specimens and observations, but observations revealed secondary flowering peaks. Herbarium specimens additionally yielded shallower estimates of phenological sensitivity to spring temperature than did field observations. Across co-occurring species, "early" flowering individuals inferred from herbarium specimens, rather than the mean response across all individuals, may better approximate community-level phenological responses to temperature changes. We conclude that herbarium specimens are reliable resources for closing gaps in understanding phenological variation along elevational gradients of montane systems.

ecology↗