Soil biota and global change at the ecosystem level: describing soil biota in mathematical models

被引:53
作者
Smith, P [1 ]
Andren, O
Brussaard, L
Dangerfield, M
Ekschmitt, K
Lavelle, P
Tate, K
机构
[1] AFRC, Inst Arable Crops Res, Dept Soil Sci, Harpenden AL5 2JQ, Herts, England
[2] SLU, Dept Soil Sci, S-75007 Uppsala, Sweden
[3] Agr Univ Wageningen, Dept Terr Ecol & Nat Conservat, NL-6708 PD Wageningen, Netherlands
[4] Macquarie Univ, Sch Biol Sci, Key Ctr Biodivers & Bioresources, Sydney, NSW 2109, Australia
[5] Univ Giessen, Dept Anim Ecol, D-35390 Giessen, Germany
[6] ORSTOM, F-93143 Bondy, France
[7] Massey Univ, Palmerston North, New Zealand
关键词
ecosystem; global environmental change; mathematical models; soil biota; soil organic matter network (SOMNET); soil organic matter;
D O I
10.1046/j.1365-2486.1998.00193.x
中图分类号
X176 [生物多样性保护];
学科分类号
090705 ;
摘要
All current mathematical models of the soil system are underpinned by a wealth of research into soil biology and new research continues to improve the description of the real world by mathematical models. In this review we examine the various approaches for describing soil biology in mathematical models and discuss the use of each type of model in global change research. The approaches represented among models participating in the Global Change and Terrestrial Ecosystems (GCTE) Soil Organic Matter Network (SOMNET) are described. We examine the relative advantages and constraints of each modelling approach and, using these, suggest appropriate uses of each. We show that for predictive purposes at ecosystem scale and higher, process-orientated models (which have only an implicit description of soil organisms) are most commonly used. As a research tool at the ecosystem level, both process-orientated and organism-orientated models (in which functional or taxonomic groups of soil organisms are explicitly described) are commonly used. Because of uncertainties introduced in internal model parameter estimation and system feedbacks, the predictive use of organism-orientated models at the ecosystem scale and larger is currently less feasible than is the use of process-orientated models. In some specific circumstances, however, an explicit description of some functional groups of soil organisms within models may be required to adequately describe the effects of global change. No existing models can adequately predict the feedback between global change, a change in soil community function, and the response of the changed system to future global change. To find out if these feedbacks exist and to what extent they affect future global change, more research is urgently required into the response of soil community function to global change and its potential ecosystem-level effects.
引用
收藏
页码:773 / 784
页数:12
相关论文
共 86 条
  • [1] THEORETICAL-ANALYSIS OF THE LONG-TERM DYNAMICS OF CARBON AND NITROGEN IN SOILS
    AGREN, GI
    BOSATTA, E
    [J]. ECOLOGY, 1987, 68 (05) : 1181 - 1189
  • [2] ECOSIMP2 MODEL - PREDICTION OF CO2 CONCENTRATION CHANGES AND CARBON STATUS IN CLOSED ECOSYSTEMS
    ANDRE, M
    THIERY, J
    COURNAC, L
    [J]. LIFE SCIENCES AND SPACE RESEARCH XXV (3): NATURAL AND ARTIFICIAL ECOSYSTEMS, 1994, 14 (11): : 323 - 326
  • [3] ANDREN O, IN PRESS ECOLOGICAL, V7, P1226
  • [4] ANDREN O, 1994, SIGNIFICANCE REGULAT, P141
  • [5] [Anonymous], SIMULATION NITROGEN
  • [6] [Anonymous], NATO ASI SERIES 1
  • [7] [Anonymous], 1986, MONOGRAPHS POPULATIO
  • [8] ARAH JRM, 1996, NATO ASI SERIES I, V38, P225
  • [9] BEARE MH, 1994, SIGNIFICANCE REGULAT, P5
  • [10] THEORETICAL-ANALYSIS OF DECOMPOSITION OF HETEROGENEOUS SUBSTRATES
    BOSATTA, E
    AGREN, GI
    [J]. SOIL BIOLOGY & BIOCHEMISTRY, 1985, 17 (05) : 601 - 610