Asymmetrical warming of growing/non-growing season increases soil respiration during growing season in an alpine meadow
Author:
Funder
Chinese Academy of Sciences Youth Innovation Promotion Association
Publisher
Elsevier BV
Subject
Pollution,Waste Management and Disposal,Environmental Chemistry,Environmental Engineering
Reference58 articles.
1. A meta-analysis of experimental warming effects on terrestrial nitrogen pools and dynamics;Bai;New Phytol.,2013
2. Analysis of winter and summer warming rates in gridded temperature time series;Balling;Clim. Res.,1998
3. Labile, recalcitrant, and microbial carbon and nitrogen pools of a tallgrass prairie soil in the US Great Plains subjected to experimental warming and clipping;Belay-Tedla;Soil Biol. Biochem.,2009
4. Growing season length and soil moisture interactively constrain high elevation aboveground net primary production;Berdanier;Ecosystems,2011
5. Initial effects of experimental warming on carbon exchange rates, plant growth and microbial dynamics of a lichen-rich dwarf shrub tundra in Siberia;Biasi;Plant Soil,2008
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