The potential for indirect effects between co-flowering plants via shared pollinators depends on resource abundance, accessibility and relatedness


Autoria(s): Carvalheiro,LG; Biesmeijer,JC; Benadi,G; Fründ,J; Stang,M; Bartomeus,I; Kaiser-Bunbury,CN; Baude,M; Gomes,SIF; Merckx,V; Baldock,KCR; Bennett,ATD; Boada,R; Bommarco,R; Cartar,R; Chacoff,N; Dänhardt,J; Dicks,LV; Dormann,CF; Ekroos,J; Henson,KSE; Holzschuh,A; Junker,RR; Lopezaraiza-Mikel,M; Memmott,J; Montero-Castaño,A; Nelson,IL; Petanidou,T; Power,EF; Rundlöf,M; Smith,HG; Stout,JC; Temitope,K; Tscharntke,T; Tscheulin,T; Vilà,M; Kunin,WE
Data(s)

01/11/2014

Resumo

Co-flowering plant species commonly share flower visitors, and thus have the potential to influence each other's pollination. In this study we analysed 750 quantitative plant-pollinator networks from 28 studies representing diverse biomes worldwide. We show that the potential for one plant species to influence another indirectly via shared pollinators was greater for plants whose resources were more abundant (higher floral unit number and nectar sugar content) and more accessible. The potential indirect influence was also stronger between phylogenetically closer plant species and was independent of plant geographic origin (native vs. non-native). The positive effect of nectar sugar content and phylogenetic proximity was much more accentuated for bees than for other groups. Consequently, the impact of these factors depends on the pollination mode of plants, e.g. bee or fly pollinated. Our findings may help predict which plant species have the greatest importance in the functioning of plant-pollination networks.

Identificador

http://hdl.handle.net/10536/DRO/DU:30072157

Idioma(s)

eng

Publicador

Wiley-Blackwell Publishing

Relação

http://dro.deakin.edu.au/eserv/DU:30072157/bennett-thepotentialfor-2014.pdf

http://www.dx.doi.org/10.1111/ele.12342

Direitos

2014, Wiley-Blackwell Publishing

Palavras-Chave #Facilitation #Floral traits #Flower density #Flower resources #Indirect interactions #Interspecific competition #Morphological similarity #Nectar #Phylogenetic distance #Plant-pollinator networks
Tipo

Journal Article