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Management practices, such as forest thinning, may support bee communities by increasing the abundance and diversity of floral resources in forest ecosystems. However, these enhancements could also concentrate foraging bees, potentially facilitating disease spread. In this study, we surveyed understory plant and bee communities and the prevalence of bee parasites across forest stands of different ages and management histories...
Evidence of climate‐driven selection on tree traits and trait plasticity across the climatic range of a riparian foundation speciesNARA Subscribed
Selection on quantitative traits by heterogeneous climatic conditions can lead to substantial trait variation across a species range. In the context of rapidly changing environments, however, it is equally important to understand selection on trait plasticity. To evaluate the role of selection in driving divergences in traits and their associated plasticities within a widespread species, we compared molecular and quantitative...
Climate change is threatening the persistence of many tree species via independent and interactive effects on abiotic and biotic conditions. In addition, changes in temperature, precipitation, and insect attacks can alter the traits of these trees, disrupting communities and ecosystems. For foundation species such as Populus , phytochemical traits are key mechanisms linking trees with their environment and are likely jointly d...
Plastic responses to hot temperatures homogenize riparian leaf litter, speed decomposition, and reduce detritivoresNARA Subscribed
Efforts to maintain the function of critical ecosystems under climate change often begin with foundation species. In the southwestern United States, cottonwood trees support diverse communities in riparian ecosystems that are threatened by rising temperatures. Genetic variation within cottonwoods shapes communities and ecosystems, but these effects may be modified by phenotypic plasticity, where genotype traits change in respo...
Species faced with rapidly shifting environments must be able to move, adapt, or acclimate in order to survive. One mechanism to meet this challenge is phenotypic plasticity: altering phenotype in response to environmental change. Here, we investigated the magnitude, direction, and consequences of changes in two key phenology traits (fall bud set and spring bud flush) in a widespread riparian tree species, Populus fremontii ....
Initial results from Phase 2 of the international urban energy balance model comparisonNARA Subscribed
Urban land surface schemes have been developed to model the distinct features of the urban surface and the associated energy exchange processes. These models have been developed for a range of purposes and make different assumptions related to the inclusion and representation of the relevant processes. Here, the first results of Phase 2 from an international comparison project to evaluate 32 urban land surface schemes are pres...
Prey diversity is associated with weaker consumer effects in a meta‐analysis of benthic marine experimentsNARA Subscribed
Ecology Letters (2010) 13: 194–201 Abstract A rapidly accumulating body of research has shown that species diversity consistently affects the functioning of ecosystems. The incorporation of trophic complexity and the extension of this research to larger scales and natural ranges in species diversity remain as important challenges for understanding the true magnitude of these effects in natural systems. Here, we test whether th...
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