A mechanistic understanding of soil respiration is a major impediment to predicting terrestrial C fluxes spatially and temporally. Automated measurements of soil respiration offer the high-resolution information necessary to observe temporal variation in soil respiration, but spatially these measurements are under-represented in water-limited and non-forested ecosystems. We measured soil respiration with automated chambers over the growing season, at two sites with the same semi-arid climate, but with different dominant vegetation, perennial grasses and shrubs in the Owens Valley, CA, USA. An isotope mass balance technique was used to partition soil respiration into autotrophic and heterotrophic components at two time points, early and late...
Quantification of the fate of carbon (C) used by plant metabolism is necessary to improve prediction...
Responses of soil respiration (Rs) to anthropogenic climate change will affect terrestrial carbon st...
Recent advances in the partitioning of autotrophic from heterotrophic respiration processes in soils...
A mechanistic understanding of soil respiration is a major impediment to predicting terrestrial C fl...
A mechanistic understanding of soil respiration is a major impediment to predicting terrestrial C fl...
A mechanistic understanding of soil respiration is a major impediment to predicting terrestrial C fl...
pre-printSemi-arid ecosystems with annual moisture inputs dominated by snowmelt cover much of the we...
Soil respiration (SR) constitutes the largest flux of CO₂ from terrestrial ecosystems to the atmosph...
[1] Field-chamber measurements of soil respiration from 17 different forest and shrubland sites in E...
Soil respiration is derived from heterotrophic (decomposition of soil organic matter) and autotrophi...
[1] Field-chamber measurements of soil respiration from 17 different forest and shrubland sites in E...
Soil respiration rates vary significantly among major plant biomes, suggesting that vegetation type ...
Soil respiration (SR) is highly sensitive to future climate change, and particularly to global warmi...
ABSTRACT piration and heterotrophic microbial respiration. Net ecosystem exchange of CO2 as an integ...
Soil respiration is derived from heterotrophic (decomposition of soil organic matter) and autotrophi...
Quantification of the fate of carbon (C) used by plant metabolism is necessary to improve prediction...
Responses of soil respiration (Rs) to anthropogenic climate change will affect terrestrial carbon st...
Recent advances in the partitioning of autotrophic from heterotrophic respiration processes in soils...
A mechanistic understanding of soil respiration is a major impediment to predicting terrestrial C fl...
A mechanistic understanding of soil respiration is a major impediment to predicting terrestrial C fl...
A mechanistic understanding of soil respiration is a major impediment to predicting terrestrial C fl...
pre-printSemi-arid ecosystems with annual moisture inputs dominated by snowmelt cover much of the we...
Soil respiration (SR) constitutes the largest flux of CO₂ from terrestrial ecosystems to the atmosph...
[1] Field-chamber measurements of soil respiration from 17 different forest and shrubland sites in E...
Soil respiration is derived from heterotrophic (decomposition of soil organic matter) and autotrophi...
[1] Field-chamber measurements of soil respiration from 17 different forest and shrubland sites in E...
Soil respiration rates vary significantly among major plant biomes, suggesting that vegetation type ...
Soil respiration (SR) is highly sensitive to future climate change, and particularly to global warmi...
ABSTRACT piration and heterotrophic microbial respiration. Net ecosystem exchange of CO2 as an integ...
Soil respiration is derived from heterotrophic (decomposition of soil organic matter) and autotrophi...
Quantification of the fate of carbon (C) used by plant metabolism is necessary to improve prediction...
Responses of soil respiration (Rs) to anthropogenic climate change will affect terrestrial carbon st...
Recent advances in the partitioning of autotrophic from heterotrophic respiration processes in soils...