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NATURE CLIMATE CHANGE, ISSN 1758-678X, 10/2018, Volume 8, Issue 10, pp. 859 - 860
Earth’s future climate depends, in part, on rapid soil microbial processes that may add up to long-term impacts. Observations from a geothermal gradient reveal... 
ENVIRONMENTAL SCIENCES | CARBON | ENVIRONMENTAL STUDIES | MODELS | METEOROLOGY & ATMOSPHERIC SCIENCES | Earth | Microbial activity | Future climates | Soils | Microorganisms | Geothermal gradient | Soil loss | Biological activity
Journal Article
Frontiers in Ecology and the Environment, ISSN 1540-9295, 10/2012, Volume 10, Issue 8, pp. 416 - 424
Recent, large-scale outbreaks of bark beetle infestations have affected millions of hectares of forest in western North America, covering an area similar in... 
Trees | REVIEWS | Coniferous forests | Mortality | Boreal forests | Soil water | Forest canopy | Bark beetles | Pine trees | Forest ecosystems | Forest soils | VEGETATION MORTALITY | SUB-ALPINE FORESTS | ENVIRONMENTAL SCIENCES | WESTERN UNITED-STATES | LODGEPOLE PINE | BOREAL FOREST | CLIMATE-CHANGE | ECOLOGY | MOUNTAIN PINE-BEETLE | SNOW ACCUMULATION | CHANGE-TYPE DROUGHT | PONDEROSA PINE
Journal Article
Agriculture, Ecosystems and Environment, ISSN 0167-8809, 05/2016, Volume 224, Issue C, pp. 50 - 55
Numerous studies suggest that rhizosphere priming can mediate decomposition of soil organic matter (SOM), but direct evidence of priming-induced soil SOM... 
Elevated CO2 | Plant N uptake | Soil organic matter | Decomposition | Rhizosphere priming | Stable isotopes | Elevated CO | CARBON DECOMPOSITION | SOIL CARBON | SEMIARID GRASSLAND | FEEDBACKS | RESPONSES | ENVIRONMENTAL SCIENCES | GREAT-PLAINS | PRODUCTIVITY | AGRICULTURE, MULTIDISCIPLINARY | SHORTGRASS STEPPE | ECOLOGY | C-4 GRASSES | CLIMATE
Journal Article
Global Ecology and Biogeography, ISSN 1466-822X, 9/2013, Volume 22, Issue 9/10, pp. 1095 - 1105
Journal Article
Biogeosciences, ISSN 1726-4170, 10/2016, Volume 13, Issue 21, pp. 5895 - 5916
Journal Article
Agriculture, Ecosystems and Environment, ISSN 0167-8809, 05/2016, Volume 224, p. 50
* We tested rhizosphere priming effects on plant N availability under elevated CO.sub.2. * We used a dual-isotope labelling technique with.sup.13C-depleted... 
Journal Article
Journal Article
Science of the Total Environment, ISSN 0048-9697, 10/2019, Volume 688, pp. 324 - 332
Journal Article
Ecology Letters, ISSN 1461-023X, 11/2018, Volume 21, Issue 11, pp. 1639 - 1648
Journal Article
SCIENTIFIC REPORTS, ISSN 2045-2322, 03/2015, Volume 5, Issue 1, p. 9212
Increased plant productivity and decreased microbial respiratory C loss can potentially mitigate increasing atmospheric CO2, but we currently lack effective... 
SEMIARID GRASSLAND | COMMUNITY STRUCTURE | ATMOSPHERIC CO2 | ARBUSCULAR MYCORRHIZAL FUNGI | MULTIDISCIPLINARY SCIENCES | TREE ROOTS | CLIMATE-CHANGE | GENETIC ARCHITECTURE | SOIL ORGANIC-MATTER | CARBON-DIOXIDE | N AVAILABILITY | Productivity | Competition | Rhizosphere | Climate change | Climate | Soil microorganisms | Plant growth | Ecosystem management | Carbon dioxide | Decomposition | Biomass
Journal Article