Experimental fire increases soil carbon dioxide efflux in a grassland long-term multifactor global change experiment

被引:24
作者
Strong, Aaron L. [1 ,2 ]
Johnson, Tera P. [3 ]
Chiariello, Nona R. [4 ]
Field, Christopher B. [5 ]
机构
[1] Univ Maine, Sch Marine Sci, Libby Hall Room 227A, Orono, ME 04469 USA
[2] Univ Maine, Program Ecol & Environm Sci, Libby Hall Room 227A, Orono, ME 04469 USA
[3] Skidmore Coll, Environm Studies Program, 815 North Broadway, Saratoga Springs, NY 12866 USA
[4] Stanford Univ, Main Off, Jasper Ridge Biol Preserve, Stanford, CA 94305 USA
[5] Stanford Woods Inst Environm, Yang & Yamazaki Energy & Environm Bldg, Stanford, CA 94305 USA
基金
美国国家科学基金会;
关键词
disturbance; global environmental change; grassland; nitrogen enrichment; soil carbon; wildfire; ELEVATED CO2; NITROGEN DEPOSITION; TEMPERATURE SENSITIVITY; PLANT DIVERSITY; RESPIRATION; RESPONSES; PRECIPITATION; DYNAMICS; CLIMATE; FLUX;
D O I
10.1111/gcb.13525
中图分类号
X176 [生物多样性保护];
学科分类号
090705 ;
摘要
Numerous studies have demonstrated that soil respiration rates increase under experimental warming, although the long-term, multiyear dynamics of this feedback are not well constrained. Less is known about the effects of single, punctuated events in combination with other longer-duration anthropogenic influences on the dynamics of soil carbon (C) loss. In 2012 and 2013, we assessed the effects of decadal-scale anthropogenic global change -warming, increased nitrogen (N) deposition, elevated carbon dioxide (CO2), and increased precipitation - on soil respiration rates in an annual-dominated Mediterranean grassland. We also investigated how controlled fire and an artificial wet-up event, in combination with exposure to the longer-duration anthropogenic global change factors, influenced the dynamics of C cycling in this system. Decade-duration surface soil warming (1-2 degrees C) had no effect on soil respiration rates, while + N addition and elevated CO2 concentrations increased growing-season soil CO2 efflux rates by increasing annual aboveground net primary production (NPP) and belowground fine root production, respectively. Low-intensity experimental fire significantly elevated soil CO2 efflux rates in the next growing season. Based on mixed-effects modeling and structural equation modeling, low-intensity fire increased growing-season soil respiration rates through a combination of three mechanisms: large increases in soil temperature (3-5 degrees C), significant increases in fine root production, and elevated aboveground NPP. Our study shows that in ecosystems where soil respiration has acclimated to moderate warming, further increases in soil temperature can stimulate greater soil CO2 efflux. We also demonstrate that punctuated short-duration events such as fire can influence soil C dynamics with implications for both the parameterization of earth system models (ESMs) and the implementation of climate change mitigation policies that involve land-sector C accounting.
引用
收藏
页码:1975 / 1987
页数:13
相关论文
共 56 条
[1]   Soil-carbon response to warming dependent on microbial physiology [J].
Allison, Steven D. ;
Wallenstein, Matthew D. ;
Bradford, Mark A. .
NATURE GEOSCIENCE, 2010, 3 (05) :336-340
[2]   Prescribed fire, soil inorganic nitrogen dynamics, and plant responses in a semiarid grassland [J].
Augustine, David J. ;
Brewer, Paul ;
Blumenthal, Dana M. ;
Derner, Justin D. ;
von Fischer, Joseph C. .
JOURNAL OF ARID ENVIRONMENTS, 2014, 104 :59-66
[3]   Several components of global change alter nitrifying and denitrifying activities in an annual grassland [J].
Barnard, R. ;
Le Roux, X. ;
Hungate, B. A. ;
Cleland, E. E. ;
Blankinship, J. C. ;
Barthes, L. ;
Leadley, P. W. .
FUNCTIONAL ECOLOGY, 2006, 20 (04) :557-564
[4]   Fitting Linear Mixed-Effects Models Using lme4 [J].
Bates, Douglas ;
Maechler, Martin ;
Bolker, Benjamin M. ;
Walker, Steven C. .
JOURNAL OF STATISTICAL SOFTWARE, 2015, 67 (01) :1-48
[5]  
Blair JM, 1997, ECOLOGY, V78, P2359, DOI 10.1890/0012-9658(1997)078[2359:FNAAPR]2.0.CO
[6]  
2
[7]   A global database of soil respiration data [J].
Bond-Lamberty, B. ;
Thomson, A. .
BIOGEOSCIENCES, 2010, 7 (06) :1915-1926
[8]   Reappraisal of drying and wetting effects on C and N mineralization and fluxes in soils [J].
Borken, Werner ;
Matzner, Egbert .
GLOBAL CHANGE BIOLOGY, 2009, 15 (04) :808-824
[9]  
Bowling DR, 2011, J GEOPHYS RES-BIOGEO, V116, DOI [10.1029/2011JG001722, 10.1029/2011JG001643]
[10]   Effects of multiple global change treatments on soil N2O fluxes [J].
Brown, Jamie R. ;
Blankinship, Joseph C. ;
Niboyet, Audrey ;
van Groenigen, Kees Jan ;
Dijkstra, Paul ;
Le Roux, Xavier ;
Leadley, Paul W. ;
Hungate, Bruce A. .
BIOGEOCHEMISTRY, 2012, 109 (1-3) :85-100