Carbon availability regulates soil respiration response to nitrogen and temperature

被引:71
作者
Eberwein, J. R. [1 ]
Oikawa, P. Y. [1 ]
Allsman, L. A. [1 ]
Jenerette, G. D. [1 ]
机构
[1] Univ Calif Riverside, Dept Bot & Plant Sci, Riverside, CA 92521 USA
关键词
Soil respiration; Carbon and nitrogen interactions; Michaelis-Menten kinetics; Carbon-use efficiency; Temperature sensitivity (Q(10)); Nitrogen deposition; MICHAELIS-MENTEN KINETICS; ORGANIC-MATTER; MICROBIAL CARBON; DECOMPOSITION; SENSITIVITY; DYNAMICS; FERTILIZATION; STOICHIOMETRY; VARIABILITY; INHIBITION;
D O I
10.1016/j.soilbio.2015.05.014
中图分类号
S15 [土壤学];
学科分类号
0903 ; 090301 ;
摘要
The response of soil CO2 fluxes (R-soil) to interactions between carbon (C) and nitrogen (N) availability or C and temperature conditions is not well understood, but may increasingly affect future C storage under the combined anthropogenic impacts of N deposition and climate change. Here we addressed this uncertainty through a series of laboratory incubation experiments using soils from three contrasting ecosystems to investigate how changes in C, N, and temperature regulate R-soil through changes to Michaelis-Menten parameters (i.e. V-max and K-m). Results of this study demonstrate that R-soil response to N enrichment and changes in temperature are dependent on the C availability of soil substrates. N addition influenced R-soil through both the maximum rate (V-max) and the half saturation constant (K-m). The increase in K-m corresponded to a decrease in R-soil when C was limited. Alternatively, when C was abundant N enrichment increased R-soil, which corresponded to an increase in V-max. Regulation of temperature sensitivity through V-max and K-m was also dependent on C availability. Both V-max and K-m demonstrated positive temperature responses, supporting the hypothesis of a canceling effect at low C concentrations. While temperature sensitivity was influenced by both C quantity and C complexity, our results suggested that C quantity is a stronger predictor. Despite strong differences in climate, vegetation, and management of our soils, C-N and C-temperature interactions were markedly similar between sites, highlighting the importance of C availability in the regulation of R-soil and justifying the use of Michaelis-Menten kinetics in biogeochemical modeling. (C) 2015 Elsevier Ltd. All rights reserved.
引用
收藏
页码:158 / 164
页数:7
相关论文
共 46 条
  • [31] Environmental and stoichiometric controls on microbial carbon-use efficiency in soils
    Manzoni, Stefano
    Taylor, Philip
    Richter, Andreas
    Porporato, Amilcare
    Agren, Goran I.
    [J]. NEW PHYTOLOGIST, 2012, 196 (01) : 79 - 91
  • [32] Soil carbon and nitrogen mineralization: Theory and models across scales
    Manzoni, Stefano
    Porporato, Amilcare
    [J]. SOIL BIOLOGY & BIOCHEMISTRY, 2009, 41 (07) : 1355 - 1379
  • [33] Unifying soil respiration pulses, inhibition, and temperature hysteresis through dynamics of labile soil carbon and O2
    Oikawa, P. Y.
    Grantz, D. A.
    Chatterjee, A.
    Eberwein, J. E.
    Allsman, L. A.
    Jenerette, G. D.
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-BIOGEOSCIENCES, 2014, 119 (04) : 521 - 536
  • [34] Global-scale similarities in nitrogen release patterns during long-term decomposition
    Parton, William
    Silver, Whendee L.
    Burke, Ingrid C.
    Grassens, Leo
    Harmon, Mark E.
    Currie, William S.
    King, Jennifer Y.
    Adair, E. Carol
    Brandt, Leslie A.
    Hart, Stephen C.
    Fasth, Becky
    [J]. SCIENCE, 2007, 315 (5810) : 361 - 364
  • [35] Effects of nitrogen fertilization on soil respiration in temperate grassland in Inner Mongolia, China
    Peng, Qin
    Dong, Yunshe
    Qi, Yuchun
    Xiao, Shengsheng
    He, Yating
    Ma, Tao
    [J]. ENVIRONMENTAL EARTH SCIENCES, 2011, 62 (06) : 1163 - 1171
  • [36] Evaluation of terrestrial carbon cycle models for their response to climate variability and to CO2 trends
    Piao, Shilong
    Sitch, Stephen
    Ciais, Philippe
    Friedlingstein, Pierre
    Peylin, Philippe
    Wang, Xuhui
    Ahlstrom, Anders
    Anav, Alessandro
    Canadell, Josep G.
    Cong, Nan
    Huntingford, Chris
    Jung, Martin
    Levis, Sam
    Levy, Peter E.
    Li, Junsheng
    Lin, Xin
    Lomas, Mark R.
    Lu, Meng
    Luo, Yiqi
    Ma, Yuecun
    Myneni, Ranga B.
    Poulter, Ben
    Sun, Zhenzhong
    Wang, Tao
    Viovy, Nicolas
    Zaehle, Soenke
    Zeng, Ning
    [J]. GLOBAL CHANGE BIOLOGY, 2013, 19 (07) : 2117 - 2132
  • [37] Nitrogen fertilization inhibits soil microbial respiration regardless of the form of nitrogen applied
    Ramirez, Kelly S.
    Craine, Joseph M.
    Fierer, Noah
    [J]. SOIL BIOLOGY & BIOCHEMISTRY, 2010, 42 (12) : 2336 - 2338
  • [38] The implications of exoenzyme activity on microbial carbon and nitrogen limitation in soil: a theoretical model
    Schimel, JP
    Weintraub, MN
    [J]. SOIL BIOLOGY & BIOCHEMISTRY, 2003, 35 (04) : 549 - 563
  • [39] Schlesinger W. H., 2013, Biogeochemistry, V3
  • [40] Persistence of soil organic matter as an ecosystem property
    Schmidt, Michael W. I.
    Torn, Margaret S.
    Abiven, Samuel
    Dittmar, Thorsten
    Guggenberger, Georg
    Janssens, Ivan A.
    Kleber, Markus
    Koegel-Knabner, Ingrid
    Lehmann, Johannes
    Manning, David A. C.
    Nannipieri, Paolo
    Rasse, Daniel P.
    Weiner, Steve
    Trumbore, Susan E.
    [J]. NATURE, 2011, 478 (7367) : 49 - 56