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- W3204685286 abstract "Global change alters ecosystems and their functioning, and biotic interactions can either buffer or amplify such changes. We utilized a long-term nitrogen (N) addition and species removal experiment in the Front Range of Colorado, USA to determine whether a codominant forb and a codominant grass, with different effects on nutrient cycling and plant community structure, would buffer or amplify the effects of simulated N deposition on soil bacterial and fungal communities. While the plant community was strongly shaped by both the presence of dominant species and N addition, we did not find a mediating effect of the plant community on soil microbial response to N. In contrast to our hypothesis, we found a decoupling of the plant and microbial communities such that the soil microbial community shifted under N independently of directional shifts in the plant community. These findings suggest there are not strong cascading effects of N deposition across the plant-soil interface in our system." @default.
- W3204685286 created "2021-10-11" @default.
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- W3204685286 date "2021-11-05" @default.
- W3204685286 modified "2023-10-15" @default.
- W3204685286 title "Do plant–soil interactions influence how the microbial community responds to environmental change?" @default.
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- W3204685286 doi "https://doi.org/10.1002/ecy.3554" @default.
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