Spatial heterogeneity in soil nutrient supply modulates nutrient and biomass responses to multiple global change drivers in model grassland communities

被引:45
作者
Maestre, Fernando T.
Reynolds, James F.
机构
[1] Duke Univ, Dept Biol, Durham, NC 27708 USA
[2] Duke Univ, Div Environm Sci & Policy, Nicholas Sch Environm, Durham, NC 27708 USA
关键词
climate change; diversity; evenness; Holcus lanatus; Lolium perenne; microcosm; nutrient availability; nutrient heterogeneity; Plantago lanceolata; productivity;
D O I
10.1111/j.1365-2486.2006.01262.x
中图分类号
X176 [生物多样性保护];
学科分类号
090705 ;
摘要
Changes in the atmospheric concentration of carbon dioxide ([CO2]), nutrient availability and biotic diversity are three major drivers of the ongoing global change impacting terrestrial ecosystems worldwide. While it is well established that soil nutrient heterogeneity exerts a strong influence on the development of plant individuals and communities, it is virtually unknown how nutrient heterogeneity and global change drivers interact to affect plant performance and ecosystem functioning. We conducted a microcosm experiment to evaluate the effect of simultaneous changes in [CO2], nutrient heterogeneity (NH), nutrient availability (NA) and species evenness on the biomass and nutrient uptake patterns of assemblages formed by Lolium perenne, Plantago lanceolata and Holcus lanatus. When the nutrients were heterogeneously supplied, assemblages exhibited precise root foraging patterns, and had higher above- and belowground biomass (average increases of 32% and 29% for above- and belowground biomass, respectively). Nutrient heterogeneity also modulated the effects of NA on biomass production, complementarity in nitrogen uptake and below: aboveground ratio, as well as those of [CO2] on the nutrient use efficiency at the assemblage level. Our results show that nutrient heterogeneity has the potential to influence the response of plant assemblages to simultaneous changes in [CO2], nutrient availability and biotic diversity, and suggest that it is an important environmental factor to interpret and assess plant assemblage responses to global change.
引用
收藏
页码:2431 / 2441
页数:11
相关论文
共 46 条
[1]   THE RELATION BETWEEN ABOVEGROUND AND BELOWGROUND BIOMASS ALLOCATION PATTERNS AND COMPETITIVE ABILITY [J].
AERTS, R ;
BOOT, RGA ;
VANDERAART, PJM .
OECOLOGIA, 1991, 87 (04) :551-559
[2]  
[Anonymous], 2002, EVOL ECOL
[3]  
[Anonymous], [No title captured]
[4]   Measuring plant interactions: A new comparative index [J].
Armas, C ;
Ordiales, R ;
Pugnaire, FI .
ECOLOGY, 2004, 85 (10) :2682-2686
[5]   Temporal responses of community fine root populations to long-term elevated atmospheric CO2 and soil nutrient patches in model tropical ecosystems [J].
Arnone, JA .
ACTA OECOLOGICA-INTERNATIONAL JOURNAL OF ECOLOGY, 1997, 18 (03) :367-376
[6]   Elevated CO2 reduces the nitrogen concentration of plant tissues [J].
Cotrufo, MF ;
Ineson, P ;
Scott, A .
GLOBAL CHANGE BIOLOGY, 1998, 4 (01) :43-54
[7]   The role of plant species in biomass production and response to elevated CO2 and N [J].
Craine, JM ;
Reich, PB ;
Tilman, GD ;
Ellsworth, D ;
Fargione, J ;
Knops, J ;
Naeem, S .
ECOLOGY LETTERS, 2003, 6 (07) :623-630
[8]   The effects of spatial pattern of nutrient supply on yield, structure and mortality in plant populations [J].
Day, KJ ;
Hutchings, MJ ;
John, EA .
JOURNAL OF ECOLOGY, 2003, 91 (04) :541-553
[9]   Nutrient foraging traits in 10 co-occurring plant species of contrasting life forms [J].
Einsmann, JC ;
Jones, RH ;
Pu, M ;
Mitchell, RJ .
JOURNAL OF ECOLOGY, 1999, 87 (04) :609-619
[10]  
Fransen B, 2001, ECOLOGY, V82, P2534, DOI 10.1890/0012-9658(2001)082[2534:SNHACB]2.0.CO