Nutrient cycling efficiency explains the long-term effect of ecosystem engineers on primary production

被引:55
作者
Barot, Sebastien
Ugolini, Alexis
Brikci, Fadia Bekkal
机构
[1] UMR 137-LEST, IRD
[2] GEODES, IRD
关键词
earthworm; ecosystem engineers; nutrient cycling; plant growth; recycling efficiency;
D O I
10.1111/j.1365-2435.2006.01225.x
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
1. Soil organisms, such as earthworms, accelerate mineralization of soil organic matter and are thought to be beneficial for plant growth. This has been shown in short-term microcosm experiments. It is thus legitimate to ask whether these increases in plant growth are due to brief pulses of mineralization or whether these increases are long-lasting. 2. This question was addressed using a system of differential equations modelling the effects of decomposers on nutrient cycling via trophic (nutrient assimilation) and nontrophic effects (through their ecosystem engineering activities). 3. The analytical study of this model showed that these processes increase primary production in the long term when they recycle nutrients efficiently, allowing a small fraction of the recycled nutrients to be leached out of the ecosystem. 4. Mineralization by the ecosystem engineering activities of decomposers seems to deprive them of a resource. However, it was shown that a decomposer may increase its own biomass, through its ecosystem engineering activities, provided the created recycling loop is efficient enough. 5. Mechanisms through which earthworms may modify the efficiency of nutrient cycling are discussed. The necessity of measuring the effect of earthworms on the nutrient input-output balance of ecosystems under field conditions is emphasized.
引用
收藏
页码:1 / 10
页数:10
相关论文
共 61 条
[1]  
[Anonymous], 2004, EARTH WORM ECOLOGY
[2]   Effect of earthworm addition on soil nitrogen availability, microbial biomass and litter decomposition in mesocosms [J].
Araujo, Y ;
Luizao, FJ ;
Barros, E .
BIOLOGY AND FERTILITY OF SOILS, 2004, 39 (03) :146-152
[3]   MUCUS PRODUCTION AND MICROBIAL ACTIVITY IN THE GUT OF 2 SPECIES OF AMYNTHAS (MEGASCOLECIDAE) FROM COLD AND WARM TROPICAL CLIMATES [J].
BAROIS, I .
SOIL BIOLOGY & BIOCHEMISTRY, 1992, 24 (12) :1507-1510
[4]   POSITIVE FEEDBACK OF CONSUMER POPULATION-DENSITY ON RESOURCE SUPPLY [J].
BIANCHI, TS ;
JONES, CG ;
SHACHAK, M .
TRENDS IN ECOLOGY & EVOLUTION, 1989, 4 (08) :234-238
[5]   THE PHYSICAL STRUCTURE OF CASTS OF MILLSONIA-ANOMALA (OLIGOCHAETA, MEGASCOLECIDAE) IN SHRUB SAVANNA SOILS (COTE-DIVOIRE) [J].
BLANCHART, E ;
BRUAND, A ;
LAVELLE, P .
GEODERMA, 1993, 56 (1-4) :119-132
[6]  
Blanchart E, 1999, EARTHWORM MANAGEMENT IN TROPICAL AGROECOSYSTEMS, P149
[7]   Earthworms (Millsonia anomala, Megascolecidae) do not increase rice growth through enhanced nitrogen mineralization [J].
Blouin, M. ;
Barot, S. ;
Lavelle, P. .
SOIL BIOLOGY & BIOCHEMISTRY, 2006, 38 (08) :2063-2068
[8]   Ecosystem consequences of exotic earthworm invasion of north temperate forests [J].
Bohlen, PJ ;
Groffman, PM ;
Fahey, TJ ;
Fisk, MC ;
Suárez, E ;
Pelletier, DM ;
Fahey, RT .
ECOSYSTEMS, 2004, 7 (01) :1-12
[9]  
Bohlen PJ, 1997, ECOL APPL, V7, P1341, DOI 10.1890/1051-0761(1997)007[1341:EEOCAN]2.0.CO
[10]  
2