Coupled energy pathways and the resilience of size-structured food webs

被引:77
作者
Blanchard, Julia L. [1 ]
Law, Richard [2 ]
Castle, Matthew D. [3 ]
Jennings, Simon [1 ]
机构
[1] Ctr Environm Fisheries & Aquaculture Sci, Lowestoft Lab, Lowestoft NR33 0HT, Suffolk, England
[2] Univ York, Dept Biol, York YO1 5YW, N Yorkshire, England
[3] Univ Cambridge, Dept Plant Sci, Cambridge CB2 3EA, England
关键词
Benthic-pelagic links; Food web dynamics; Predator-prey; Size spectrum; Stability; Trophic interactions; BODY-SIZE; CHAIN LENGTH; TROPHIC INTERACTIONS; STABILITY; DYNAMICS; SPECTRA; FISH; PREDATION; CARBON; MODEL;
D O I
10.1007/s12080-010-0078-9
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Size-based food-web models, which focus on body size rather than species identity, capture the generalist and transient feeding interactions in most marine ecosystems and are well-supported by data. Here, we develop a size-based model that incorporates dynamic interactions between marine benthic (detritus-based) and pelagic (primary producer based) pathways to investigate how the coupling of these pathways affects food web stability and resilience. All model configurations produced stable steady-state size spectra. Resilience was measured by the return speed obtained from local stability analysis. Return times following large perturbations away from steady-state were also measured. Resilience varied nonlinearly with both predator and detrital coupling, and high resilience came from predators (1) feeding entirely in the slow benthic zone or (2) feeding across the two energy pathways, with most food coming from the fast pelagic pathway. When most of the energy flowed through the pelagic pathway, resilience was positively related to turnover rate. When most of the energy flowed through the benthic pathway, resilience was negatively related to turnover rate. Analysis of the effects of large perturbations revealed that resilience for pelagic ecosystems depended on the nature of the perturbation and the degree of benthic-pelagic coupling. Areas with very little or no benthic-pelagic coupling (e.g. deep seas or highly stratified water columns) may return more quickly following pulses of detrital fallout or primary production but could be much less resilient to the effects of human-induced mortality (harvesting).
引用
收藏
页码:289 / 300
页数:12
相关论文
共 57 条
[1]   RELATION BETWEEN PRODUCTION AND BIOMASS [J].
ALLEN, KR .
JOURNAL OF THE FISHERIES RESEARCH BOARD OF CANADA, 1971, 28 (10) :1573-&
[2]   Network structure, predator-prey modules, and stability in large food webs [J].
Allesina, Stefano ;
Pascual, Mercedes .
THEORETICAL ECOLOGY, 2008, 1 (01) :55-64
[3]  
[Anonymous], 2005, Aquatic Food Webs: An ecosystem approach
[4]   Stable model structures for representing biogeochemical diversity and size spectra in plankton communities [J].
Armstrong, RA .
JOURNAL OF PLANKTON RESEARCH, 1999, 21 (03) :445-464
[5]   A size-resolved pelagic ecosystem model [J].
Baird, Mark E. ;
Suthers, Iain M. .
ECOLOGICAL MODELLING, 2007, 203 (3-4) :185-203
[6]  
Barnes C, 2008, ECOLOGY, V89
[7]   A continuous model of biomass size spectra governed by predation and the effects of fishing on them [J].
Benoît, E ;
Rochet, MJ .
JOURNAL OF THEORETICAL BIOLOGY, 2004, 226 (01) :9-21
[8]   Impact of fishing on size composition and diversity of demersal fish communities [J].
Bianchi, G ;
Gislason, H ;
Graham, K ;
Hill, L ;
Jin, X ;
Koranteng, K ;
Manickchand-Heileman, S ;
Payá, I ;
Sainsbury, K ;
Sanchez, F ;
Zwanenburg, K .
ICES JOURNAL OF MARINE SCIENCE, 2000, 57 (03) :558-571
[9]   How does abundance scale with body size in coupled size-structured food webs? [J].
Blanchard, Julia L. ;
Jennings, Simon ;
Law, Richard ;
Castle, Matthew D. ;
McCloghrie, Paul ;
Rochet, Marie-Joelle ;
Benoit, Eric .
JOURNAL OF ANIMAL ECOLOGY, 2009, 78 (01) :270-280
[10]  
Blumenshine SC, 2000, ECOLOGY, V81, P374, DOI 10.2307/177434