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Simultaneous warming disrupts plant-pollinator mutualisms
De manincor, Natasha; Fisogni Alessandro; Rafferty Nicole E.
2023
 

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Keywords :
annual plants; climate change; phenology; plant-pollinator interactions; solitary bees; traits
Abstract :
[en] Climate change may disrupt plant–pollinator mutualisms by generating phenological asynchronies and by altering traits that shape interaction costs and benefits. Our knowledge is limited to studies that manipulate only one partner or focus on either phenological or trait-based mismatches. We assembled communities of three annual plants and a solitary bee prior to flowering and emergence to test how springtime warming affects phenologies, traits, interactions and reproductive output. Warming advanced community-level flowering onset, peak and end but did not alter bee emergence. Warmed plant communities produced fewer and smaller flowers with less, more-concentrated nectar, reducing attractiveness, and warmed bees were more generalized in their foraging, reducing their effectiveness. Plant–bee interactions were less frequent, shorter and peaked earlier under warming. As a result, warmed plants produced fewer, lighter seeds, indicating pollinator-mediated fitness costs. Climate change will perturb plant–pollinator mutualisms, causing wide-ranging effects on partner species and diminishing the ecosystem service they provide.
Disciplines :
Environmental sciences & ecology
Author, co-author :
De manincor, Natasha  ;  Université de Mons - UMONS > Faculté des Science > Service de Zoologie
Fisogni Alessandro;  UCR - University of California, Riverside > Evolution, Ecology, and Organismal Biology
Rafferty Nicole E.;  UCR - University of California, Riverside > Evolution, Ecology, and Organismal Biology
Language :
English
Title :
Simultaneous warming disrupts plant-pollinator mutualisms
Publication date :
2023
Event name :
SCAPE Meeting 2023
Event place :
Namur, Belgium
Event date :
from 19 to 22 October 2023
Audience :
International
Research unit :
S869 - Zoologie
Research institute :
R100 - Institut des Biosciences
European Projects :
H2020 - 101034383 - C2W - Connect with Wallonia - Come 2 Wallonia
Funders :
Union Européenne [BE]
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