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Climate change impacts the soil carbon cycle, yet there is no scientific consensus on the vulnerability of soil organic carbon (SOC) stocks to global warming. Here, we studied soil organic matter (SOM) changes across 50 Swiss forest sites covering an elevation gradient from 270 to 2020 m, with dominant tree species changing from sub-Mediterranean pubescent oak to mountain pine at treeline. We sought to assess how elevation, serving as an integrating variable for climate variation, affects the stocks, transformation state, and radiocarbon (C)-based turnover of SOM fractions in the organic layer, as well as in particulate organic matter (POM) and mineral-associated organic matter (MOM) fractions in forest mineral soils (0-20 cm). Our results show consistent enrichment in C and N across all SOM fractions with increasing elevation, indicating a ubiquitous transformation state among SOM fractions regardless of environmental conditions. However, C stocks in the organic layer and in mineral soil POM increased proportionally relative to MOM with increasing elevation. Additionally, C-based turnover times in the organic layer, the free POM, and the fine MOM fractions increased with elevation, indicating slower SOM processing and a reduced transformation of POM to MOM under harsher climatic conditions. In contrast to individual SOM fractions, total SOC stocks and C-based turnover times in the bulk mineral soil showed no elevational pattern. This indicates that with increasing elevation, the shift in composition towards POM, which has a shorter turnover time than MOM, offsets the increased turnover time within each fraction. As a result, the overall SOC turnover time remains stable across the entire elevation gradient. However, the higher proportion of C stored in the more vulnerable POM fractions in high-elevation forests indicates that their SOC stocks may be at higher risk under climate change.
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http://dx.doi.org/10.1111/gcb.70326 | DOI Listing |
Adv Mater
August 2025
Key Laboratory of Photochemical Conversion and Optoelectronic Materials & CAS-HKU Joint Laboratory on New Materials, New Cornerstone Science Laboratory, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, 29 Zhongguancun East Road, Beijing, 100190, China.
Artificial photosynthesis using semiconductor quantum dots (QDs) is one of the most promising pathways toward converting CO into valuable chemicals. However, the multistep process of CO-to-chemical conversion endows the regulation of reaction trajectory from CO to specific products very challenging in aqueous solution. Here, it is first disclosed that the anisotropic growth of CdSe-S-InS interface in ultrafine heterojunction QDs alters the trajectory of CO photoreduction in water, i.
View Article and Find Full Text PDFGlob Chang Biol
July 2025
Swiss Federal Institute for Forest, Snow and Landscape Research (WSL), Zurich, Switzerland.
Climate change impacts the soil carbon cycle, yet there is no scientific consensus on the vulnerability of soil organic carbon (SOC) stocks to global warming. Here, we studied soil organic matter (SOM) changes across 50 Swiss forest sites covering an elevation gradient from 270 to 2020 m, with dominant tree species changing from sub-Mediterranean pubescent oak to mountain pine at treeline. We sought to assess how elevation, serving as an integrating variable for climate variation, affects the stocks, transformation state, and radiocarbon (C)-based turnover of SOM fractions in the organic layer, as well as in particulate organic matter (POM) and mineral-associated organic matter (MOM) fractions in forest mineral soils (0-20 cm).
View Article and Find Full Text PDFSmall
August 2023
Institute of Micro/Nano Materials and Devices, Ningbo University of Technology, Ningbo, 315211, P. R. China.
The development of low-cost single-atom electrocatalysts for oxygen reduction reaction (ORR) is highly desired but remains a grand challenge. Superior to the conventional techniques, a microwave-assisted strategy is reported for rapid production of high-quality Fe/N/C single-atom catalysts (SACs) with profoundly enhanced reaction rate and remarkably reduced energy consumption. The as-synthesized catalysts exhibit an excellent ORR performance with a positive half-wave potential up to 0.
View Article and Find Full Text PDFCommun Biol
April 2022
Department of Neurology, University of Erlangen-Nuremberg, Erlangen, Germany.
The human amygdala is involved in processing of memory, decision-making, and emotional responses. Previous studies suggested that the amygdala may represent a neurogenic niche in mammals. By combining two distinct methodological approaches, lipofuscin quantification and C-based retrospective birth dating of neurons, along with mathematical modelling, we here explored whether postnatal neurogenesis exists in the human amygdala.
View Article and Find Full Text PDFAppl Environ Microbiol
February 2022
Department of Biology, University of Massachusetts Dartmouth, North Dartmouth, Massachusetts, USA.
Marine biofilms are diverse microbial communities and important ecological habitats forming on surfaces submerged in the ocean. Biofilm communities resist environmental disturbance, making them a nuisance to some human activities ("biofouling"). Antifouling solutions rarely address the underlying stability or compositional responses of these biofilms.
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