2022 Early Hearing Detection & Intervention Virtual Conference
March 13 - 15, 2022
5/25/2021 | 2:00 PM - 3:30 PM | DETRITAL NUTRIENT RESPONSES TO WARMING AND ELEVATED CO2 IN A PEATLAND ECOSYSTEM | Virtual Platform
DETRITAL NUTRIENT RESPONSES TO WARMING AND ELEVATED CO2 IN A PEATLAND ECOSYSTEM
Boreal peatlands are carbon-rich and nutrient-poor ecosystems that are vulnerable to climate change. We investigated how climate change affects detrital nutrient dynamics by measuring decomposition rates and changes in carbon, nitrogen, and phosphorus contents of 6 litter types (spruce needles and fine roots, Labrador tea leaves and fine roots, and two Sphagnum species) over two years in the Spruce and Peatland Responses Under Changing Environments (SPRUCE) experiment. SPRUCE uses ten enclosures to elevate air and peat temperatures (+0 to +9°C) at ambient and elevated CO2 (eCO2) (+500 ppm) in a northern Minnesota peatland. We also examined whether the chemistry of senescent litter from vegetation growing in the enclosures was affected by warming and eCO2. There was little effect of temperature and eCO2 on aboveground litter decomposition and leaf-tissue chemistries; however, fine-root breakdown increased with warming. There was no clear effect of warming on senescent litter chemistry but eCO2 resulted in lower nitrogen content in leaves of two shrub species. Overall, there was little initial response of litter breakdown and nutrient contents to warming, but eCO2 decreased the nutrient content of senescent litter, which may have cascading effects to decomposition.
- Nutrients
- Climate change
- Ecosystem
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Presenters/Authors
Natalie A. Griffiths
(), Oak Ridge National Laboratory, griffithsna@ornl.gov;
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Randy Kolka
(), USDA Forest Service Northern Research Station, rkolka@fs.fed.us;
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Colleen Iversen
(), Oak Ridge National Laboratory, iversencm@ornl.gov;
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Scott Tiegs
(), Dept. of Biological Sciences, Oakland University, tiegs@oakland.edu;
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Sarah Shelley
(), Oak Ridge National Laboratory, shelleysj@ornl.gov;
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