{"database":"biostudies-literature","file_versions":[],"scores":null,"additional":{"submitter":["Karp DS"],"funding":["Natural Environment Research Council","Biotechnology and Biological Sciences Research Council"],"pagination":["E7863-E7870"],"full_dataset_link":["https://www.ebi.ac.uk/biostudies/studies/S-EPMC6099893"],"repository":["biostudies-literature"],"omics_type":["Unknown"],"volume":["115(33)"],"pubmed_abstract":["The idea that noncrop habitat enhances pest control and represents a win-win opportunity to conserve biodiversity and bolster yields has emerged as an agroecological paradigm. However, while noncrop habitat in landscapes surrounding farms sometimes benefits pest predators, natural enemy responses remain heterogeneous across studies and effects on pests are inconclusive. The observed heterogeneity in species responses to noncrop habitat may be biological in origin or could result from variation in how habitat and biocontrol are measured. Here, we use a pest-control database encompassing 132 studies and 6,759 sites worldwide to model natural enemy and pest abundances, predation rates, and crop damage as a function of landscape composition. Our results showed that although landscape compositi"],"journal":["Proceedings of the National Academy of Sciences of the United States of America"],"pubmed_title":["Crop pests and predators exhibit inconsistent responses to surrounding landscape composition."],"pmcid":["PMC6099893"],"funding_grant_id":["BB/I000348/1","CEH010010"],"pubmed_authors":["Molina GAR","Hajian-Forooshani Z","Wyckhuys K","Angelella GM","Jacot K","Plantegenest M","Grab H","O'Neal ME","Batary P","Martinson HM","Larsen AE","Costamagna AC","Tricault Y","Herrmann JD","Ostman O","Van Trinh M","Kishinevsky M","Cayuela L","Martin EA","Sivakoff FS","Birkhofer K","Entling MH","Zubair Anjum M","Avelino J","Iv P","Bommarco R","Frank T","Heimpel GE","Stack Whitney K","Luttermoser T","Mitchell MGE","Molina-Montenegro MA","Mace K","Peterson JA","Pywell RF","Valantin-Morison M","de Kraker J","Werling BP","Nash M","Bohnenblust EW","Lavigne C","Ragsdale DW","Landis DA","Tschumi M","Potts SG","Poveda K","Carvalheiro LG","Parry H","DeClerck F","Madeira F","Liere H","Albrecht M","Bianchi FJJA","Cetkovic A","Schneider G","Martinez-Salinas A","Desneux N","Rusch A","Kaiser M","Takada MB","Maas B","Carriere Y","Le Ralec A","Opatovsky I","Goodell PB","Stutz S","Caballero-Lopez B","Ortiz-Martinez S","Perovic DJ","Chaplin-Kramer R","Paredes D","Xiao H","Ricci B","Schellhorn NA","Wickens JB","Ouin A","Kim TN","Gurr GM","Keasar T","Sargent C","Lemessa D","Lu Y","Karp DS","Jonsson M","Inclan DJ","Meehan TD","Pak D","Frank van Veen FJ","Pons X","Ingrao AJ","Smith HG","Schmidt NP","Yasuda M","Szendrei Z","Getachew A","Tsafack N","Brewer MJ","Alignier A","Schuepp C","Diehl E","Tamburini G","Hunt L","Mader V","Thomson LJ","van der Werf W","Miyashita T","Sarthou JP","Garratt MPD","Rand TA","Pluess T","Diekotter T","Schackermann J","Yoshioka A","Jones L","Rosenheim JA","Chabert A","Martinez E","Gagic V","Gonthier DJ","O'Rourke ME","Graziosi I","Johnson GA","Kaser JM","Groves RL","Raymond L","Zou Y","Cortesero AM","Tscharntke T","Iverson AL","Fiedler D","Vierling KT","Woodcock BA","De la Mora A","Philpott SM","Adler LS","Letourneau DK","Saulais J","Plecas M","Lubin Y","Henri DC","Lavandero B","Wratten SD","Marini L","Perez-Alvarez R","Dormann CF","Franck P","Zhang W","Eckberg JO","Menozzi P","Taki H","Parsa S","Wickens VJ","Centrella M","Baveco JM","Petit S","Gratton C","Huseth AS"],"additional_accession":[]},"is_claimable":false,"name":"Crop pests and predators exhibit inconsistent responses to surrounding landscape composition.","description":"The idea that noncrop habitat enhances pest control and represents a win-win opportunity to conserve biodiversity and bolster yields has emerged as an agroecological paradigm. However, while noncrop habitat in landscapes surrounding farms sometimes benefits pest predators, natural enemy responses remain heterogeneous across studies and effects on pests are inconclusive. The observed heterogeneity in species responses to noncrop habitat may be biological in origin or could result from variation in how habitat and biocontrol are measured. Here, we use a pest-control database encompassing 132 studies and 6,759 sites worldwide to model natural enemy and pest abundances, predation rates, and crop damage as a function of landscape composition. Our results showed that although landscape compositi","dates":{"release":"2018-01-01T00:00:00Z","publication":"2018 Aug","modification":"2026-05-06T06:44:56.388Z","creation":"2025-05-18T12:16:49.189Z"},"accession":"S-EPMC6099893","cross_references":{"pubmed":["30072434"],"doi":["10.1073/pnas.1800042115"]}}