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Curr Opin Insect Sci ; 47: 125-135, 2021 10.
Artigo em Inglês | MEDLINE | ID: mdl-34252593

RESUMO

If we are to sustainably provide food to a rapidly growing human population, biological pest control (BPC) should integrate food web theory and evolution. This will account for the impacts of climate warming on the complex community settings of agroecosystems. We review recent studies looking for top-down augmentative pest control being hampered/promoted by biotic (community contexts) and/or abiotic (climate) drivers. Most studies found either positive or neutral effects on BPC. However, most ignored potential evolutionary responses occurring in the environments under study. We propose engineering food webs by engaging in a continuous feedback between ecological and evolutionary data, and individual-based modelling of agroecosystems. This should speed up the procurement of strains of efficient natural enemies better adapted to warming.


Assuntos
Cadeia Alimentar , Controle Biológico de Vetores , Animais , Clima , Mudança Climática
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