Climate history shapes contemporary leaf litter decomposition

被引:55
作者
Strickland, Michael S. [1 ]
Keiser, Ashley D. [2 ]
Bradford, Mark A. [3 ]
机构
[1] Virginia Polytech Inst & State Univ, Dept Biol Sci, Blacksburg, VA 24060 USA
[2] Iowa State Univ, Dept Ecol Evolut & Organismal Biol, Ames, IA 50011 USA
[3] Yale Univ, Sch Forestry & Environm Studies, New Haven, CT 06511 USA
基金
美国国家科学基金会;
关键词
Carbon mineralization; Climate; Forests; Litter decomposition; Niche breadth; Niche optima; SOIL MICROBIAL COMMUNITIES; BACTERIAL COMMUNITIES; TEMPERATURE; RESPIRATION; ADAPTATION; RESPONSES; QUALITY; MODEL; RATES; STRATEGIES;
D O I
10.1007/s10533-014-0065-0
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Litter decomposition is mediated by multiple variables, of which climate is expected to be a dominant factor at global scales. However, like other organisms, traits of decomposers and their communities are shaped not just by the contemporary climate but also their climate history. Whether or not this affects decomposition rates is underexplored. Here we source decomposer communities from three forest sites contrasting in climate (tropical, temperate, boreal), and, using experimental microcosms, quantify decomposition of a common litter under a factorial combination of four temperature (15, 20, 25, and 30 A degrees C) and five moisture regimes (35, 55, 70, 85, and 100 % water holding capacity). We find that the climate history of the decomposer community is an important determinant of litter decomposition, explaining the same amount of variance in decomposition as both temperature and moisture. Further, climate history also shapes the effect of contemporary climate (i.e. experimental) on decomposition, both in terms of the magnitude of decomposition under optimal conditions and the range of abiotic conditions at which high decomposition rates are maintained. For example, at optimal conditions (i.e. 25 A degrees C/70 % WHC) the tropical site has a greater decomposition rate than the other two sites. However, the temperate and boreal sites have greater 'niche breadth', where decomposition rates are more sustained (i.e. decrease less) as temperature and moisture deviate further from the optimum. Our data suggest that climate history shapes the functional response of the soil decomposer community, as it does for animals and plants. Yet how this shaping affects decomposition rates across regional and global climate gradients, and how such relationships are applied to temporal predictions, remain unanswered questions.
引用
收藏
页码:165 / 174
页数:10
相关论文
共 47 条
  • [1] Simple three-pool model accurately describes patterns of long-term litter decomposition in diverse climates
    Adair, E. Carol
    Parton, William J.
    Del Grosso, Steven J.
    Silver, Whendee L.
    Harmon, Mark E.
    Hall, Sonia A.
    Burke, Ingrid C.
    Hart, Stephen C.
    [J]. GLOBAL CHANGE BIOLOGY, 2008, 14 (11) : 2636 - 2660
  • [2] Soil biota accelerate decomposition in high-elevation forests by specializing in the breakdown of litter produced by the plant species above them
    Ayres, Edward
    Steltzer, Heidi
    Berg, Sarah
    Wall, Diana H.
    [J]. JOURNAL OF ECOLOGY, 2009, 97 (05) : 901 - 912
  • [3] Home-field advantage accelerates leaf litter decomposition in forests
    Ayres, Edward
    Steltzer, Heidi
    Simmons, Breana L.
    Simpson, Rodney T.
    Steinweg, J. Megan
    Wallenstein, Matthew D.
    Mellor, Nate
    Parton, William J.
    Moore, John C.
    Wall, Diana H.
    [J]. SOIL BIOLOGY & BIOCHEMISTRY, 2009, 41 (03) : 606 - 610
  • [4] Adaptation of soil microbial communities to temperature: comparison of fungi and bacteria in a laboratory experiment
    Barcenas-Moreno, Gema
    Gomez-Brandon, Maria
    Rousk, Johannes
    Baath, Erland
    [J]. GLOBAL CHANGE BIOLOGY, 2009, 15 (12) : 2950 - 2957
  • [5] LITTER MASS-LOSS RATES IN PINE FORESTS OF EUROPE AND EASTERN UNITED-STATES - SOME RELATIONSHIPS WITH CLIMATE AND LITTER QUALITY
    BERG, B
    BERG, MP
    BOTTNER, P
    BOX, E
    BREYMEYER, A
    DEANTA, RC
    COUTEAUX, M
    ESCUDERO, A
    GALLARDO, A
    KRATZ, W
    MADEIRA, M
    MALKONEN, E
    MCCLAUGHERTY, C
    MEENTEMEYER, V
    MUNOZ, F
    PIUSSI, P
    REMACLE, J
    DESANTO, AV
    [J]. BIOGEOCHEMISTRY, 1993, 20 (03) : 127 - 159
  • [6] THE TORTOISE AND THE HARE - ECOLOGY OF ANGIOSPERM DOMINANCE AND GYMNOSPERM PERSISTENCE
    BOND, WJ
    [J]. BIOLOGICAL JOURNAL OF THE LINNEAN SOCIETY, 1989, 36 (03) : 227 - 249
  • [7] Thermal adaptation of soil microbial respiration to elevated temperature
    Bradford, Mark A.
    Davies, Christian A.
    Frey, Serita D.
    Maddox, Thomas R.
    Melillo, Jerry M.
    Mohan, Jacqueline E.
    Reynolds, James F.
    Treseder, Kathleen K.
    Wallenstein, Matthew D.
    [J]. ECOLOGY LETTERS, 2008, 11 (12) : 1316 - 1327
  • [8] Bradford MA, 2013, SOIL ECOLOGY AND ECOSYSTEM SERVICES, P189
  • [9] Bradford MA, 2014, NAT CLIM CHANGE, V4, P625, DOI [10.1038/nclimate2251, 10.1038/NCLIMATE2251]
  • [10] Thermal adaptation of decomposer communities in warming soils
    Bradford, Mark A.
    [J]. FRONTIERS IN MICROBIOLOGY, 2013, 4