Fifteen years of climate change manipulations alter soil microbial communities in a subarctic heath ecosystem

被引:301
作者
Rinnan, Riikka
Michelsen, Anders
Baath, Erland
Jonasson, Sven
机构
[1] Univ Copenhagen, Inst Biol, Dept Terr Ecol, DK-1353 Copenhagen K, Denmark
[2] Univ Kuopio, Dept Ecol & Environm Sci, FI-70211 Kuopio, Finland
[3] Lund Univ, Dept Microbial Ecol, SE-22362 Lund, Sweden
关键词
Arctic; ergosterol; fertilization; microbial biomass; microbial community composition; nutrient availability; phospholipid fatty acids; shading; warming; NORWAY SPRUCE FOREST; ENVIRONMENTAL PERTURBATIONS; NITROGEN AVAILABILITY; MYCORRHIZAL FUNGI; CARBON-DIOXIDE; DWARF-SHRUB; FOOD WEBS; RESPONSES; BIOMASS; TERM;
D O I
10.1111/j.1365-2486.2006.01263.x
中图分类号
X176 [生物多样性保护];
学科分类号
090705 ;
摘要
Soil microbial biomass in arctic heaths has been shown to be largely unaffected by treatments simulating climate change with temperature, nutrient and light manipulations. Here, we demonstrate that more than 10 years is needed for development of significant responses, and that changes in microbial biomass are accompanied with strong alterations in microbial community composition. In contrast to slight or nonsignificant responses after 5, 6 and 10 treatment years, 15 years of inorganic NPK fertilizer addition to a subarctic heath had strong effects on the microbial community and, as observed for the first time, warming and shading also led to significant responses, often in opposite direction to the fertilization responses. The effects were clearer in the top 5 cm soil than at the 5-10 cm depth. Fertilization increased microbial biomass C and more than doubled microbial biomass P compared to the non-fertilized plots. However, it only increased microbial biomass N at the 5-10 cm depth. Fertilization increased fungal biomass and the relative abundance of phospholipid fatty acid (PLFA) markers of gram-positive bacteria. Warming and shading decreased the relative abundance of fungal PLFAs, and shading also altered the composition of the bacterial community. The long time lag in responses may be associated with indirect effects of the gradual changes in the plant biomass and community composition. The contrasting responses to warming and fertilization treatments show that results from fertilizer addition may not be similar to the effects of increased nutrient mineralization and availability following climatic warming.
引用
收藏
页码:28 / 39
页数:12
相关论文
共 56 条
[11]   An examination of the biodiversity-ecosystem function relationship in arable soil microbial communities [J].
Griffiths, BS ;
Ritz, K ;
Wheatley, R ;
Kuan, HL ;
Boag, B ;
Christensen, S ;
Ekelund, F ;
Sorensen, SJ ;
Muller, S ;
Bloem, J .
SOIL BIOLOGY & BIOCHEMISTRY, 2001, 33 (12-13) :1713-1722
[12]   Ecosystem response of pasture soil communities to fumigation-induced microbial diversity reductions:: an examination of the biodiversity-ecosystem function relationship [J].
Griffiths, BS ;
Ritz, K ;
Bardgett, RD ;
Cook, R ;
Christensen, S ;
Ekelund, F ;
Sorensen, SJ ;
Bååth, E ;
Bloem, J ;
de Ruiter, PC ;
Dolfing, J ;
Nicolardot, B .
OIKOS, 2000, 90 (02) :279-294
[13]   DIFFERENTIAL GROWTH-RESPONSES OF CASSIOPE-TETRAGONA, AN ARCTIC DWARF-SHRUB, TO ENVIRONMENTAL PERTURBATIONS AMONG 3 CONTRASTING HIGH SITES AND SUB-ARCTIC SITES [J].
HAVSTROM, M ;
CALLAGHAN, TV ;
JONASSON, S .
OIKOS, 1993, 66 (03) :389-402
[14]   Trophic interactions in changing landscapes:: responses of soil food webs [J].
Hedlund, K ;
Griffiths, B ;
Christensen, S ;
Scheu, S ;
Setälä, H ;
Tscharntke, T ;
Verhoef, H .
BASIC AND APPLIED ECOLOGY, 2004, 5 (06) :495-503
[15]   Contrasting effects of nitrogen availability on plant carbon supply to mycorrhizal fungi and saprotrophs -: a hypothesis based on field observations in boreal forest [J].
Högberg, MN ;
Bååth, E ;
Nordgren, A ;
Arnebrant, K ;
Högberg, P .
NEW PHYTOLOGIST, 2003, 160 (01) :225-238
[16]  
Illeris L, 2004, ARCT ANTARCT ALP RES, V36, P456, DOI 10.1657/1523-0430(2004)036[0456:GCDFIA]2.0.CO
[17]  
2
[18]   Soil plus root respiration and microbial biomass following water, nitrogen, and phosphorus application at a high arctic semi desert [J].
Illeris, L ;
Michelsen, A ;
Jonasson, S .
BIOGEOCHEMISTRY, 2003, 65 (01) :15-29
[19]   EFFECTS OF BIOCIDAL TREATMENTS ON METABOLISM IN SOIL .5. METHOD FOR MEASURING SOIL BIOMASS [J].
JENKINSON, DS ;
POWLSON, DS .
SOIL BIOLOGY & BIOCHEMISTRY, 1976, 8 (03) :209-213
[20]   The fumigation-extraction method to estimate soil microbial biomass: Calibration of the k(EC) value [J].
Joergensen, RG .
SOIL BIOLOGY & BIOCHEMISTRY, 1996, 28 (01) :25-31