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Data from: Interactive effects of pests increase seed yield
负责人:
Vesna Gagic
关键词:
Herbivore oilseed rape plant compensation plant damage pollen beetle weevil
DOI:
doi:10.5061/dryad.8g3j2
摘要:
. We investigated the interactive impacts on crop yield of four insect pests attacking different plant parts at different times during the cropping season. In 15
Data from: Climate change, transgenic corn adoption and field-evolved resistance in corn earworm
负责人:
Venugopal, P. Dilip
关键词:
climate change and phenology temperature anomaly transgenic crops crop-pest interactions insect resistance
DOI:
doi:10.5061/dryad.q9d78
摘要:
. However, the implications of climate change on Bt croppest interactions and insect resistance to Bt crops remains unexamined. We analysed the relations
: implications for trophic interactions
负责人:
Schmidt, Jason M.
关键词:
habitat management landscape configuration landscape heterogeniety metabarcoding molecular gut content analysis Predator-prey interactions
DOI:
doi:10.5061/dryad.52c2k52
摘要:
d Drosophila suzukii (SWD) and natural enemy distributions and trophic interactions in blueberry systems of the southeast US in relation to local management
Data from: Additive and interactive effects of pollination and biological pest control on crop yield
负责人:
关键词:
non-additive effects;cotton;ecosystem services;biological control;pest suppression;biocontrol;multifunctionality
DOI:
doi:10.5061/dryad.n0m33vv
摘要:
pressures and biocontrol levels. 3. We found both additive and interactive effects of insect pollination and biocontrol within a single crop system depe
Data from: Contrasting effects of landscape composition on crop yield mediated by specialist herbivores
负责人:
Perez-Alvarez, Ricardo
关键词:
crop production ecosystem services landscape composition parasitoid-host ratios path analysis pest control yield.
DOI:
doi:10.5061/dryad.484tt
摘要:
ee specialist cruciferous pests (aphids, flea beetles and leaf-feeding Lepidoptera), lepidopteran parasitoids, and crop yield across a gradient
Data from: Pest suppression in cultivar mixtures is influenced by neighbor-specific plant-plant communication
负责人:
Dahlin, Iris
关键词:
DOI:
doi:10.5061/dryad.224h5kr
摘要:
bivore population responses to crop genotypic diversity can depend on plant-plant volatile interactions, which can lead to changes in herbivore response to individual
Data from: Deployment of organic farming at a landscape scale maintains low pest infestation and high crop productivity in vineyards
负责人:
Rusch, Adrien
关键词:
conventional farming landscape complexity pest community biological pest control pathogens pesticide use Treatment Frequency Index yield organic farming vineyard
DOI:
doi:10.5061/dryad.vv1t9.1
摘要:
pest and disease infestations but will reduce the pesticide treatment intensity and maintain crop productivity. Moreover, the interactions bet
Data from: Deployment of organic farming at a landscape scale maintains low pest infestation and high crop productivity in vineyards
负责人:
关键词:
vineyard;pest community;pathogens;pesticide use;yield;biological pest control;conventional farming;Landscape complexity;Treatment Frequency Index;organic farming
DOI:
doi:10.5061/dryad.vv1t9
摘要:
pest and disease infestations but will reduce the pesticide treatment intensity and maintain crop productivity. Moreover, the interactions bet
Data from: Agriculture shapes the trophic niche of a bat preying on multiple pest arthropods across Europe: evidence from DNA metabarcoding
负责人:
Alberdi, Antton
关键词:
Invertebrates Predator Prey Interactions Environmental DNA Pest supression
DOI:
doi:10.5061/dryad.2ff46
摘要:
ng which lepidopterans were predominant. We identified >200 species, 44 of which are known to cause agricultural damage. Pest species were detected at al
Data from: Biological pest control and yields depend on spatial and temporal crop cover dynamics
负责人:
关键词:
agri-environmental schemes dilution effects ecosystem services inter-annual population dynamics oilseed rape parasitism pollen beetles resource concentration hypothesis
DOI:
doi:10.5061/dryad.q9690
摘要:
s of spatiotemporal changes in crop area on crop yields and crop–herbivore–antagonist interactions have been rarely considered, in contrast to documented beneficial effect

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