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Response of lake metabolism to catchment inputs inferred using high-frequency lake and stream data from across the northern hemisphere
School of Natural Resources, University of Nebraska–Lincoln, NE, Lincoln, United States.
Integrated Information Dissemination Division, U.S. Geological Survey, CA, San Francisco, United States.
Biology Department, Fairfield University, CT, Fairfield, United States.
Environmental Studies Department, Colby College, ME, Waterville, United States.
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2023 (Engelska)Ingår i: Limnology and Oceanography, ISSN 0024-3590, E-ISSN 1939-5590, Vol. 68, nr 12, s. 2617-2631Artikel i tidskrift (Refereegranskat) Published
Abstract [en]

In lakes, the rates of gross primary production (GPP), ecosystem respiration (R), and net ecosystem production (NEP) are often controlled by resource availability. Herein, we explore how catchment vs. within lake predictors of metabolism compare using data from 16 lakes spanning 39°N to 64°N, a range of inflowing streams, and trophic status. For each lake, we combined stream loads of dissolved organic carbon (DOC), total nitrogen (TN), and total phosphorus (TP) with lake DOC, TN, and TP concentrations and high frequency in situ monitoring of dissolved oxygen. We found that stream load stoichiometry indicated lake stoichiometry for C : N and C : P (r2 = 0.74 and r2 = 0.84, respectively), but not for N : P (r2 = 0.04). As we found a strong positive correlation between TN and TP, we only used TP in our statistical models. For the catchment model, GPP and R were best predicted by DOC load, TP load, and load N : P (R2 = 0.85 and R2 = 0.82, respectively). For the lake model, GPP and R were best predicted by TP concentrations (R2 = 0.86 and R2 = 0.67, respectively). The inclusion of N : P in the catchment model, but not the lake model, suggests that both N and P regulate metabolism and that organisms may be responding more strongly to catchment inputs than lake resources. Our models predicted NEP poorly, though it is unclear why. Overall, our work stresses the importance of characterizing lake catchment loads to predict metabolic rates, a result that may be particularly important in catchments experiencing changing hydrologic regimes related to global environmental change.

Ort, förlag, år, upplaga, sidor
John Wiley & Sons, 2023. Vol. 68, nr 12, s. 2617-2631
Nationell ämneskategori
Oceanografi, hydrologi och vattenresurser Ekologi
Identifikatorer
URN: urn:nbn:se:umu:diva-216880DOI: 10.1002/lno.12449ISI: 001098633000001Scopus ID: 2-s2.0-85176234704OAI: oai:DiVA.org:umu-216880DiVA, id: diva2:1818710
Forskningsfinansiär
Forskningsrådet Formas, 210-2012-1461Kempestiftelserna, SMK-1240Tillgänglig från: 2023-12-12 Skapad: 2023-12-12 Senast uppdaterad: 2024-01-15Bibliografiskt granskad

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Karlsson, Jan

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Institutionen för ekologi, miljö och geovetenskap
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Limnology and Oceanography
Oceanografi, hydrologi och vattenresurserEkologi

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