Drought shifts soil nematode trophic groups and mediates the heterotrophic respiration
Abstract As the most diverse metazoan taxa, soil nematodes serve a diversity of functions in soil food webs and thus can regulate microbial community composition and affect organic matter decomposition and nutrient turnover rates. Because nematodes depend on water films to access food resources, drought can negatively affect nematode ...
Cancan Zhao +9 more
openaire +1 more source
Decomposability of soil organic matter over time: the Soil Incubation Database (SIDb, version 1.0) and guidance for incubation procedures [PDF]
Beem-Miller, J. +10 more
core +1 more source
Measurements of soil respiration and simple models dependent on moisture and temperature for an Amazonian southwest tropical forest [PDF]
Soil respiration plays a significant role in the carbon cycle of Amazonian tropical forests, although in situ measurements have only been poorly reported and the dependence of soil moisture and soil temperature also weakly understood.
Freitas, H.C., De +5 more
core +2 more sources
Changes in soil oxidase activity induced by microbial life history strategies mediate the soil heterotrophic respiration response to drought and nitrogen enrichment. [PDF]
Zhuang W +12 more
europepmc +1 more source
Amplifying effects of land-use change on future atmospheric CO2 levels [PDF]
We constructed a model to analyze the interactions between land-use change and atmospheric CO2 during the recent past and for the future. The primary impact of the conversion of forested lands to cultivated lands is to increase atmospheric CO2, via ...
Philippe Ciais, Vincent Gitz
core
Effects of soil moisture on the temperature sensitivity of soil heterotrophic respiration: a laboratory incubation study. [PDF]
Zhou W, Hui D, Shen W.
europepmc +1 more source
Harmonized global soil carbon and respiration datasets with derived turnover time and temperature sensitivity. [PDF]
Hashimoto S, Ito A, Nishina K.
europepmc +1 more source
Shifts in Microbial Thermal Traits Mitigate Heat-Induced Carbon Losses in Soils. [PDF]
Brangarí AC +3 more
europepmc +1 more source
Converging Patterns of Heterotrophic Respiration Between Growing and Non-Growing Seasons in Northern Temperate Grasslands. [PDF]
Liu C, Jiang H, Guo X.
europepmc +1 more source
Soil heterotrophic and autotrophic respiration respond differently to seasonal variations in temperature and water content under monsoon continental climate. [PDF]
Kim H, Kim S, Woo S, Min K.
europepmc +1 more source

