Plant species and functional group effects on abiotic and microbial soil properties and plant-soil feedback responses in two grasslands

被引:306
作者
Bezemer, T. Martijn
Lawson, Clare S.
Hedlund, Katarina
Edwards, Andrew R.
Brook, Alex J.
Igual, Jose M.
Mortimer, Simon R.
Van der Putten, Wim H.
机构
[1] Netherlands Inst Ecol, NIOO KNAW, Ctr Terr Ecol, NL-6666 ZG Heteren, Netherlands
[2] Univ Wageningen & Res Ctr, Nematol Lab, NL-6700 ES Wageningen, Netherlands
[3] Univ Wageningen & Res Ctr, Entomol Lab, NL-6700 EH Wageningen, Netherlands
[4] Univ Reading, Dept Agr, Ctr Agri Environm Res, Reading RG6 6AR, Berks, England
[5] Lund Univ, Dept Ecol, S-22362 Lund, Sweden
[6] CSIC, Inst Recursos Nat & Agrobiol, E-37008 Salamanca, Spain
关键词
chalk grassland; ecosystem functioning; mechanisms of plant-soil feedback; PLFA; soil biodiversity; soil chemistry; stability; succession; variance partitioning;
D O I
10.1111/j.1365-2745.2006.01158.x
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
1 Plant species differ in their capacity to influence soil organic matter, soil nutrient availability and the composition of soil microbial communities. Their influences on soil properties result in net positive or negative feedback effects, which influence plant performance and plant community composition. 2 For two grassland systems, one on a sandy soil in the Netherlands and one on a chalk soil in the United Kingdom, we investigated how individual plant species grown in monocultures changed abiotic and biotic soil conditions. Then, we determined feedback effects of these soils to plants of the same or different species. Feedback effects were analysed at the level of plant species and plant taxonomic groups (grasses vs. forbs). 3 In the sandy soils, plant species differed in their effects on soil chemical properties, in particular potassium levels, but PLFA (phospholipid fatty acid) signatures of the soil microbial community did not differ between plant species. The effects of soil chemical properties were even greater when grasses and forbs were compared, especially because potassium levels were lower in grass monocultures. 4 In the chalk soil, there were no effects of plant species on soil chemical properties, but PLFA profiles differed significantly between soils from different monocultures. PLFA profiles differed between species, rather than between grasses and forbs. 5 In the feedback experiment, all plant species in sandy soils grew less vigorously in soils conditioned by grasses than in soils conditioned by forbs. These effects correlated significantly with soil chemical properties. None of the seven plant species showed significant differences between performance in soil conditioned by the same vs. other plant species. 6 In the chalk soil, Sanguisorba minor and in particular Briza media performed best in soil collected from conspecifics, while Bromus erectus performed best in soil from heterospecifics. There was no distinctive pattern between soils collected from forb and grass monocultures, and plant performance could not be related to soil chemical properties or PLFA signatures. 7 Our study shows that mechanisms of plant-soil feedback can depend on plant species, plant taxonomic (or functional) groups and site-specific differences in abiotic and biotic soil properties. Understanding how plant species can influence their rhizosphere, and how other plant species respond to these changes, will greatly enhance our understanding of the functioning and stability of ecosystems.
引用
收藏
页码:893 / 904
页数:12
相关论文
共 57 条
[1]  
Aerts R, 2000, ADV ECOL RES, V30, P1, DOI 10.1016/S0065-2504(08)60016-1
[2]   Plant species and nitrogen effects on soil biological properties of temperate upland grasslands [J].
Bardgett, RD ;
Mawdsley, JL ;
Edwards, S ;
Hobbs, PJ ;
Rodwell, JS ;
Davies, WJ .
FUNCTIONAL ECOLOGY, 1999, 13 (05) :650-660
[3]   LITTER DECOMPOSABILITY - A NEGLECTED COMPONENT OF PLANT FITNESS [J].
BERENDSE, F .
JOURNAL OF ECOLOGY, 1994, 82 (01) :187-190
[4]   Incorporating the soil community into plant population dynamics: the utility of the feedback approach [J].
Bever, JD ;
Westover, KM ;
Antonovics, J .
JOURNAL OF ECOLOGY, 1997, 85 (05) :561-573
[5]  
BEVER JD, 2003, NEW PHYTOL, V157, P456
[6]  
BEZEMER TM, 2006, IN PRESS ECOLOGY
[7]   Interactions between above- and belowground biota: importance for small-scale vegetation mosaics in a grassland ecosystem [J].
Blomqvist, MM ;
Olff, H ;
Blaauw, MB ;
Bongers, T ;
van der Putten, WH .
OIKOS, 2000, 90 (03) :582-598
[8]   Negative plant-soil feedback and species coexistence [J].
Bonanomi, G ;
Giannino, F ;
Mazzoleni, S .
OIKOS, 2005, 111 (02) :311-321
[9]   Plant-soil interactions in temperate grasslands [J].
Burke, IC ;
Lauenroth, WK ;
Vinton, MA ;
Hook, PB ;
Kelly, RH ;
Epstein, HE ;
Aguiar, MR ;
Robles, MD ;
Aguilera, MO ;
Murphy, KL ;
Gill, RA .
BIOGEOCHEMISTRY, 1998, 42 (1-2) :121-143
[10]   Plants actively control nitrogen cycling: uncorking the microbial bottleneck [J].
Chapman, SK ;
Langley, JA ;
Hart, SC ;
Koch, GW .
NEW PHYTOLOGIST, 2006, 169 (01) :27-34