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Soil and forest floor respiration already acclimated to increasing temperatures in a mixed deciduous forest

作者:Liliana Scapucci, Luana Krebs, Susanne Burri, Lukas Hörtnagl, Nina Buchmann · 发表于:Ecological Processes · 年份:2025 · DOI:10.1186/s13717-025-00639-4 · 被引用次数:2 · 研究领域:Plant Water Relations and Carbon Dynamics、Forest ecology and management、Tree Root and Stability Studies

Abstract Background Forest ecosystems are in the spotlight for their potential to mitigate anthropogenic carbon dioxide (CO 2 ) emissions through net photosynthesis. However, this mitigation potential can be counteracted by respiratory losses, e.g., from soils and the forest floor. With global warming, soil respiration (SR) rates are expected to increase, unless acclimation occurs. Using manual and automated chambers as well as a below-canopy eddy-covariance system, we quantified SR and forest floor net CO 2 exchange (NEE ff ) for 13 years throughout an 18-year study period (2006–2010, 2015–2016, 2018–2023) in a mixed deciduous forest ecosystem in Switzerland. We identified the contribution of environmental drivers for SR and NEE ff using Extreme Gradient Boosting models and Shapley additive explanations (SHAP) analyses and assessed the long-term temperature sensitivity of SR and NEE ff . Results Over the 18-year study period, soil temperature increased significantly and was the main driver of both SR and NEE ff , explaining over 50% of their temporal variability. Differences in drivers and magnitudes of SR vs. NEE ff were only found in early spring, when the forest floor vegetation showed net CO 2 uptake. Finally, we found no evidence that SR or NEE ff (at mean annual temperatures) had increased between 2006 and 2023. Similarly, no significant change in the temperature sensitivity of SR and NEE ff was observed. Conclusions Combining multiple techniques to assess long-term re...