2022 Early Hearing Detection & Intervention Virtual Conference
March 13 - 15, 2022
5/26/2021 | 8:30 AM - 10:30 AM | Temperature effects on nutrient uptake in heterotrophic streams | Virtual Platform
Temperature effects on nutrient uptake in heterotrophic streams
Warming is expected to increase the rates of biological reactions in stream ecosystems, with unknown consequences for the linked cycling of carbon, nitrogen, and phosphorus. Nutrient uptake may increase proportionally to respiration with increases in temperature; however, if the carbon or nutrient use efficiency of microbial communities changes systematically with temperature, the relationship between nutrient uptake and temperature may deviate from that of respiration with temperature. We conducted a laboratory experiment to test whether the temperature sensitivities of respiration and nutrient uptake deviate in natural heterotrophic communities. We conditioned leaf litter in natural streams, brought the leaves into the laboratory, and measured the uptake of phosphorus across a range of temperatures (4-20 C) using dark-bottle incubations. We found that the temperature sensitivity of phosphorus uptake is considerably lower (0.40 eV) than that predicted for respiration (0.65 eV), suggesting that nutrient uptake rates may increase less than respiration rates with warming. Thus, as rates of carbon loss outpace increases in phosphorus uptake, we may expect relatively less phosphorus to be retained in forested headwater streams as they warm.
- Ecosystem
- Nutrient cycling
- Nutrients
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Presenters/Authors
Nathan Tomczyk
(), University of Georgia, nathan.tomczyk@gmail.com;
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Amy Rosemond
(), University of Georgia, rosemond@uga.edu;
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Anna Kaz
(), University of Tennessee, akaz@vols.utk.edu;
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Erin Hotchkiss
(), Virginia Tech, ehotchkiss@vt.edu;
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Vlad Gulis
(), Coastal Carolina University, vgulis@coastal.edu;
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Jonathan P. Benstead
(), The University of Alabama, jbenstead@ua.edu;
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