Traits explain community disassembly and trophic contraction following experimental environmental change

被引:74
作者
Lindo, Zoe [1 ]
Whiteley, Jonathan [1 ]
Gonzalez, Andrew [1 ]
机构
[1] McGill Univ, Dept Biol, Montreal, PQ H3A 1B1, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
biodiversity loss; body size spectra; climate change; community disassembly; habitat fragmentation; natural abundance stable isotopes; traits; trophic space; SOIL BIODIVERSITY; CLIMATE-CHANGE; TERRESTRIAL ECOSYSTEMS; ECOLOGICAL NETWORKS; 4TH-CORNER PROBLEM; ORIBATID MITES; SPECIES TRAITS; GLOBAL CHANGE; BODY-SIZE; EXTINCTION;
D O I
10.1111/j.1365-2486.2012.02725.x
中图分类号
X176 [生物多样性保护];
学科分类号
090705 ;
摘要
Many ecosystems are currently undergoing dramatic changes in biodiversity due to habitat loss and climate change. Responses to global change at the community level are poorly understood, as are the impacts of community disassembly on ecosystem-level processes. Uncertainties remain regarding the patterns of extirpation and persistence under single vs. multiple forms of environmental change. Here, we use a trait-based and food web approach to examine the effects of experimentally changing moisture, temperature and habitat openness on a functionally important group of microarthropods associated with a boreal forest floor bryosphere (detrital moss) system. Overall, the outcome of community disassembly was mediated by the correlation between our environmental factors and species traits, particularly body size. Minor increases in summer temperatures maintained greater species richness, whereas drought stress had a significant negative effect on community-level abundance and richness. These effects were reflected in modifications to the community-wide body-size spectra. Habitat openness alleviated biodiversity loss in the larger-bodied species of the most abundant taxonomic group, but did not fully mitigate the effects of drought. The most striking result of this experiment was an overall contraction of the food web among persistent species under drought stress (i.e. those not extirpated by environmental change). These results suggest that major changes in boreal microarthropod community structure are likely to occur in response to common forms of global change. Moreover, the contraction in trophic structure even amongst tolerant species suggests that ecosystem function within the bryosphere can be altered by environmental change.
引用
收藏
页码:2448 / 2457
页数:10
相关论文
共 63 条
[31]   Niche width collapse in a resilient top predator following ecosystem fragmentation [J].
Layman, Craig A. ;
Quattrochi, John P. ;
Peyer, Caroline M. ;
Allgeier, Jacob E. .
ECOLOGY LETTERS, 2007, 10 (10) :937-944
[32]  
Layman CA, 2007, ECOLOGY, V88, P42, DOI 10.1890/0012-9658(2007)88[42:CSIRPF]2.0.CO
[33]  
2
[34]   DIURNAL AND SEASONAL STRUCTURE OF CLIMATE AT SCHEFFERVILLE, QUEBEC [J].
LECHOWICZ, MJ ;
ADAMS, MS .
ARCTIC AND ALPINE RESEARCH, 1978, 10 (01) :95-104
[35]  
Legendre P, 1997, ECOLOGY, V78, P547
[36]   Population responses of oribatid mites and collembolans after drought [J].
Lindberg, N ;
Bengtsson, J .
APPLIED SOIL ECOLOGY, 2005, 28 (02) :163-174
[37]   Nested patterns of community assembly in the colonisation of artificial canopy habitats by oribatid mites [J].
Lindo, Zoe ;
Winchester, Neville N. ;
Didham, Raphael K. .
OIKOS, 2008, 117 (12) :1856-1864
[38]   Scale dependent diversity patterns in arboreal and terrestrial oribatid mite (Acari: Oribatida) communities [J].
Lindo, Zoe ;
Winchester, Neville N. .
ECOGRAPHY, 2008, 31 (01) :53-60
[39]   The Bryosphere: An Integral and Influential Component of the Earth's Biosphere [J].
Lindo, Zoe ;
Gonzalez, Andrew .
ECOSYSTEMS, 2010, 13 (04) :612-627
[40]   Interactions between climate and habitat loss effects on biodiversity: a systematic review and meta-analysis [J].
Mantyka-Pringle, Chrystal S. ;
Martin, Tara G. ;
Rhodes, Jonathan R. .
GLOBAL CHANGE BIOLOGY, 2012, 18 (04) :1239-1252