Soil plus root respiration and microbial biomass following water, nitrogen, and phosphorus application at a high arctic semi desert

被引:74
作者
Illeris, L [1 ]
Michelsen, A [1 ]
Jonasson, S [1 ]
机构
[1] Univ Copenhagen, Inst Bot, DK-1353 Copenhagen K, Denmark
关键词
CO2; emission; decomposition; microbial biomass carbon; soil organic matter; tundra; water and nutrient limitation;
D O I
10.1023/A:1026034523499
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
In order to investigate the effects of anticipated increased precipitation and changing soil nutrient levels on soil CO2 efflux from high arctic semi desert, a field experiment was carried out in Northeast Greenland. Water, phosphorus, and nitrogen were added to plots in a fully factorial design. Soil microbial biomass carbon was analysed after one year, and respiration from soil plus roots was measured in situ throughout the third growing season after initiation of the experiment. Soil plus root respiration was enhanced by up to 47%, and the microbial biomass by 24%, by the weekly water additions, but not by nutrient additions. The direct effect of increased soil moisture on CO2 efflux suggests that future changes of precipitation levels and patterns may strongly affect below-ground respiration in arctic semi deserts, with direction of responses depending upon amounts and frequencies of precipitation events. Morover, low CO2 emission at low light intensities regardless of treatment suggests that the major part of the below-ground respiration originated from turnover of recently fixed C. Hence, the more recalcitrant soil organic matter C pool may not change in proportion to changes in below-ground respiration rate.
引用
收藏
页码:15 / 29
页数:15
相关论文
共 48 条
[1]  
[Anonymous], 1992, Arctic ecosystems in a changing climate
[2]  
Bay C, 1998, Vegetation mapping of Zackenberg valley Northeast Greenland
[3]  
Bliss LC., 1992, ARCTIC ECOSYSTEMS CH, P59, DOI DOI 10.1016/B978-0-12-168250-7.50010-9
[4]   CHLOROFORM FUMIGATION AND THE RELEASE OF SOIL-NITROGEN - A RAPID DIRECT EXTRACTION METHOD TO MEASURE MICROBIAL BIOMASS NITROGEN IN SOIL [J].
BROOKES, PC ;
LANDMAN, A ;
PRUDEN, G ;
JENKINSON, DS .
SOIL BIOLOGY & BIOCHEMISTRY, 1985, 17 (06) :837-842
[5]   Organic carbon cycling in Taylor Valley, Antarctica: quantifying soil reservoirs and soil respiration [J].
Burkins, MB ;
Virginia, RA ;
Wall, DH .
GLOBAL CHANGE BIOLOGY, 2001, 7 (01) :113-125
[6]   RESPONSES OF ARCTIC TUNDRA TO EXPERIMENTAL AND OBSERVED CHANGES IN CLIMATE [J].
CHAPIN, FS ;
SHAVER, GR ;
GIBLIN, AE ;
NADELHOFFER, KJ ;
LAUNDRE, JA .
ECOLOGY, 1995, 76 (03) :694-711
[7]  
Chapin III F. S., 1992, ARCTIC ECOSYSTEMS CH, P11, DOI DOI 10.1016/B978-0-12-168250-7.50008-0
[8]   MEASUREMENT OF MICROBIAL BIOMASS IN ARCTIC TUNDRA SOILS USING FUMIGATION EXTRACTION AND SUBSTRATE-INDUCED RESPIRATION PROCEDURES [J].
CHENG, WX ;
VIRGINIA, RA .
SOIL BIOLOGY & BIOCHEMISTRY, 1993, 25 (01) :135-141
[9]   Carbon dioxide and methane exchange of a subarctic heath in response to climate change related environmental manipulations [J].
Christensen, TR ;
Michelsen, A ;
Jonasson, S ;
Schmidt, IK .
OIKOS, 1997, 79 (01) :34-44
[10]   Trace gas exchange in a high-arctic valley 1.: Variations in CO2 and CH4 flux between tundra vegetation types [J].
Christensen, TR ;
Friborg, T ;
Sommerkorn, M ;
Kaplan, J ;
Illeris, L ;
Soegaard, H ;
Nordstroem, C ;
Jonasson, S .
GLOBAL BIOGEOCHEMICAL CYCLES, 2000, 14 (03) :701-713