Climate change reshapes global terrestrial ecosystems via rising temperatures and shifting precipitation, jointly regulating soil organic carbon (SOC) dynamics. Multi-factorial experiments are vital for unraveling climatic interactions, yet most only apply one warming level, leaving ecosystem nonlinear responses poor...
Meirong Chen, Li-Li Jiang, Xing-Liang Xu et al.· Communications Earth & E...· 0 citations
Biological soil crusts – photosynthetic communities of cyanobacteria, lichens, and/or mosses living on soil surfaces – represent about 12% of the global land surface, yet their role in climate mitigation remains uncertain. Here we address this knowledge gap by integrating multiscale remote sensing techniques within a u...
W. K. Smith, M. Villarreal, Cara Lauria et al.· Communications Earth & Envir...· 0 citations
Climate change is altering soil organic carbon stocks and the associated carbon fluxes of cropland ecosystems—including organic matter mineralization, microbial respiration rates, and CO2 emissions—through shifts in temperature and moisture regimes. Ecosystem respiration, the main pathway linking terrestrial carbon poo...
The temperature sensitivity of soil carbon (C) and nitrogen (N) mineralization commonly expressed as the Q
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coefficient, plays a pivotal role in regulating soil–atmosphere greenhouse gas exchanges in temperate ecosystems. This review synthesizes findings from 181 peer-reviewed studies (1960–2025) to evaluate ho...
K. N. Sheuly, Khalid Syfullah, Z. Solaiman· Biogeochemistry· 0 citations
Global climate change is profoundly altering the structure and functioning of forest ecosystems by modifying temperature and precipitation regimes, increasing the frequency of extreme climatic events, and disrupting soil biological processes. This review synthesizes current knowledge on the impacts of climate change on...
E. Babur· TURKISH JOURNAL OF FOREST SC...· 0 citations
Much of the persistent soil organic carbon (SOC) pool is microbial in origin: microorganisms process plant carbon into biomass and their necromass can associate with mineral surfaces, contributing to long-term carbon persistence. This has generated interest in microbial interventions such as inoculation to restore carb...
Lisa Cole, Tao Li, T. Goodall et al.· bioRxiv· 0 citations
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