The dynamics of semi-arid plant communities are determined by the Interplay between competition and facilitation among plants The sign and strength of these biotic interactions depend on plant traits However the relationships between plant traits and biotic interactions and the consequences for plant communities are still poorly understood Our objective here was to investigate with a modelling approach the role of plant reproductive traits on biotic interactions and the consequences for processes such as plant succession and invasion The dynamics of two plant types were modelled with a spatially-explicit integrodifferential model (1) a plant with seed dispersal (colonizer of bare soil) and (2) a plant with local vegetative propagation (local competitor) Both plant types were involved in facilitation due to a local positive feedback between vegetation biomass and soil water availability which promoted establishment and growth Plants in the system also competed for limited water The efficiency in water acquisition (dependent on reproductive and growth plant traits) determined which plant type dominated the community at the steady state Facilitative interactions between plant types also played an important role in the community dynamics promoting establishment in the driest conditions and recovery from low biomass Plants with vegetative propagation took advantage of the ability of seed dispersers to establish on bare soil from a low initial biomass Seed dispersers were good invaders maintained high biomass at intermediate and high rainfall and showed a high ability in taking profit from the positive feedback originated by plants with vegetative propagation under the driest conditions However seed dispersers lost competitiveness with an increasing investment in fecundity All together our results showed that reproductive plant traits can affect the balance between facilitative and competitive interactions Understanding this effect of plant traits on biotic interactions provides insights in processes such as plant succession and shrub encroachment (C) 2010 Elsevier Inc All rights reserved
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UNIV BUENOS AIRES,FAC AGRON,DEPT ECOL,AVE SAN MARTIN 4453,RA-1417 BUENOS AIRES,ARGENTINAUNIV BUENOS AIRES,FAC AGRON,DEPT ECOL,AVE SAN MARTIN 4453,RA-1417 BUENOS AIRES,ARGENTINA
AGUIAR, MR
SORIANO, A
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UNIV BUENOS AIRES,FAC AGRON,DEPT ECOL,AVE SAN MARTIN 4453,RA-1417 BUENOS AIRES,ARGENTINAUNIV BUENOS AIRES,FAC AGRON,DEPT ECOL,AVE SAN MARTIN 4453,RA-1417 BUENOS AIRES,ARGENTINA
SORIANO, A
SALA, OE
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UNIV BUENOS AIRES,FAC AGRON,DEPT ECOL,AVE SAN MARTIN 4453,RA-1417 BUENOS AIRES,ARGENTINAUNIV BUENOS AIRES,FAC AGRON,DEPT ECOL,AVE SAN MARTIN 4453,RA-1417 BUENOS AIRES,ARGENTINA
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Centro Nacional Patagónico (CONICET), 9120 Puerto Madryn, Chubut, Boulevard Brown S/NCentro Nacional Patagónico (CONICET), 9120 Puerto Madryn, Chubut, Boulevard Brown S/N
Bisigato A.J.
Bertiller M.B.
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Centro Nacional Patagónico (CONICET), 9120 Puerto Madryn, Chubut, Boulevard Brown S/NCentro Nacional Patagónico (CONICET), 9120 Puerto Madryn, Chubut, Boulevard Brown S/N
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UNIV BUENOS AIRES,FAC AGRON,DEPT ECOL,AVE SAN MARTIN 4453,RA-1417 BUENOS AIRES,ARGENTINAUNIV BUENOS AIRES,FAC AGRON,DEPT ECOL,AVE SAN MARTIN 4453,RA-1417 BUENOS AIRES,ARGENTINA
AGUIAR, MR
SORIANO, A
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UNIV BUENOS AIRES,FAC AGRON,DEPT ECOL,AVE SAN MARTIN 4453,RA-1417 BUENOS AIRES,ARGENTINAUNIV BUENOS AIRES,FAC AGRON,DEPT ECOL,AVE SAN MARTIN 4453,RA-1417 BUENOS AIRES,ARGENTINA
SORIANO, A
SALA, OE
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UNIV BUENOS AIRES,FAC AGRON,DEPT ECOL,AVE SAN MARTIN 4453,RA-1417 BUENOS AIRES,ARGENTINAUNIV BUENOS AIRES,FAC AGRON,DEPT ECOL,AVE SAN MARTIN 4453,RA-1417 BUENOS AIRES,ARGENTINA
机构:
Centro Nacional Patagónico (CONICET), 9120 Puerto Madryn, Chubut, Boulevard Brown S/NCentro Nacional Patagónico (CONICET), 9120 Puerto Madryn, Chubut, Boulevard Brown S/N
Bisigato A.J.
Bertiller M.B.
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Centro Nacional Patagónico (CONICET), 9120 Puerto Madryn, Chubut, Boulevard Brown S/NCentro Nacional Patagónico (CONICET), 9120 Puerto Madryn, Chubut, Boulevard Brown S/N