Conservation biological control of arthropod pests using native plants
Tài liệu tham khảo
van Lenteren, 2018, Biological control using invertebrates and microorganisms: plenty of new opportunities, BioControl, 63, 39, 10.1007/s10526-017-9801-4
Baker, 2020, Biological control and integrated pest management in organic and conventional systems, Biol Control, 140, 10.1016/j.biocontrol.2019.104095
Heimpel, 2017, Conservation biological control I: facilitating natural control through habitat manipulation, 230
Shields, 2019, History, current situation and challenges for conservation biological control, Biol Control, 131, 25, 10.1016/j.biocontrol.2018.12.010
Peñalver-Cruz, 2019, Manipulation of agricultural habitats to improve conservation biological control in South America, Neotrop Entomol, 48, 875, 10.1007/s13744-019-00725-1
Zaviezo, 2021, Conservation biological control, 37
Gurr, 2017, Habitat management to suppress pest populations: progress and prospects, Annu Rev Entomol, 62, 91, 10.1146/annurev-ento-031616-035050
Holland, 2020, Approaches to identify the value of seminatural habitats for conservation biological control, Insects, 11, 195, 10.3390/insects11030195
Lundgren, 2009, Relationships of natural enemies and non-prey foods
Fiedler, 2008, Maximizing ecosystem services from conservation biological control: the role of habitat management, Biol Control, 45, 254, 10.1016/j.biocontrol.2007.12.009
Isaacs, 2009, Maximizing arthropod-mediated ecosystem services in agricultural landscapes: the role of native plants, Front Ecol Environ, 7, 196, 10.1890/080035
Jiménez-Alfaro, 2020, Native plants for greening Mediterranean agroecosystems, Nat Plants, 6, 209, 10.1038/s41477-020-0617-3
Pandey, 2019, Conservation biological control using Australian native plants in a brassica crop system: seeking complementary ecosystem services, Agric Ecosyst Environ, 280, 77, 10.1016/j.agee.2019.04.018
Pandey, 2018, Australian native flowering plants enhance the longevity of three parasitoids of Brassica pests, Entomol Exp Appl, 166, 265, 10.1111/eea.12668
Fiedler, 2007, Attractiveness of Michigan native plants to arthropod natural enemies and herbivores, Environ Entomol, 36, 751, 10.1093/ee/36.4.751
Cresswell, 2019, A trait-based approach to plant species selection to increase functionality of farmland vegetative strips, Ecol Evol, 9, 4532, 10.1002/ece3.5047
Bakker, 2004, Using ecological restoration to constrain biological invasion, J Appl Ecol, 41, 1058, 10.1111/j.0021-8901.2004.00962.x
Daane, 2018, Native grass ground covers provide multiple ecosystem services in Californian vineyards, J Appl Ecol, 55, 2473, 10.1111/1365-2664.13145
James, 2016, Beneficial insect attraction to milkweeds (Asclepias speciosa, Asclepias fascicularis) in Washington state, USA, Insects, 7, 10.3390/insects7030030
Muñoz, 2021, Native flowering shrubs promote beneficial insects in avocado orchards, Agric Entomol, 23, 463, 10.1111/afe.12447
Rodríguez, 2018, Selecting native perennial plants for ecological intensification in Mediterranean greenhouse horticulture, Bull Entomol Res, 108, 694, 10.1017/S0007485317001237
Colazza, 2023, Chemical ecology of floral resources in conservation biological control, Annu Rev Entomol, 68, 13, 10.1146/annurev-ento-120220-124357
James, 2014, Beneficial insects attracted to native flowering buckwheats (Eriogonum Michx) in central Washington, Environ Entomol, 43, 942, 10.1603/EN13342
Skellern, 2018, Prospects for improved off-crop habitat management for pollen beetle control in oilseed rape, Arthropod Plant Inter, 12, 849, 10.1007/s11829-018-9598-9
Paredes, 2021, Landscape simplification increases vineyard pest outbreaks and insecticide use, Ecol Lett, 24, 73, 10.1111/ele.13622
Grez, 2021, The positive association between natural vegetation, native coccinellids and functional diversity of aphidophagous coccinellid communities in alfalfa, Insect Conserv Divers, 14, 464, 10.1111/icad.12473
Wyckhuys, 2013, Current status and potential of conservation biological control for agriculture in the developing world, Biol Control, 65, 152, 10.1016/j.biocontrol.2012.11.010
Zhu, 2022, Ecological engineering for rice pest suppression in China. A review, Agron Sustain Dev, 42, 10.1007/s13593-022-00800-9
van Lenteren, 2020, The uptake of biological control in Latin America and the Caribbean, 473
Dively, 2020, Evaluating wildflowers for use in conservation grass buffers to augment natural enemies in neighboring cornfields, Ecol Eng, 144, 10.1016/j.ecoleng.2019.105703
Batáry, 2015, The role of agri-environment schemes in conservation and environmental management, Conserv Biol, 29, 1006, 10.1111/cobi.12536
Lundin, 2019, Identifying native plants for coordinated habitat management of arthropod pollinators, herbivores and natural enemies, J Appl Ecol, 56, 665, 10.1111/1365-2664.13304
Irvin, 2021, The effects of floral nectar, extrafloral nectar and hemipteran honeydew on the fitness of Tamarixia radiata (Hymenoptera: Eulophidae), a parasitoid of Diaphorina citri, Biol Control, 163, 10.1016/j.biocontrol.2021.104753
Collins, 2002, Influence of beetle banks on cereal aphid predation in winter wheat, Agric Ecosyst Environ, 93, 337, 10.1016/S0167-8809(01)00340-1
Hind, 2018, Introduction to the Compositae, the largest family of flowering plants, Curtis’s Bot Mag, 35, 332, 10.1111/curt.12256
Corbet, 2000, Butterfly nectaring flowers: butterfly morphology and flower form, Entomol Exp Appl, 96, 289, 10.1046/j.1570-7458.2000.00708.x
Tooker, 2000, Flowering plant hosts of adult Hymenopteran parasitoids of central Illinois, Ann EntomolSoc Am, 96, 580, 10.1603/0013-8746(2000)093[0580:FPHOAH]2.0.CO;2
Winkler, 2009, Nectar exploitation by herbivores and their parasitoids is a function of flower species and relative humidity, Biol Control, 50, 299, 10.1016/j.biocontrol.2009.04.009
Gill, 2014, Quality over quantity: buffer strips can be improved with select native plant species, Environ Entomol, 43, 298, 10.1603/EN13027
Sivinski, 2011, Conserving natural enemies with flowering plants: estimating floral attractiveness to parasitic Hymenoptera and attraction’s relationship to flower and plant morphology, Biol Control, 58, 208, 10.1016/j.biocontrol.2011.05.002
Al-Dobai, 2012, Tachinidae (Diptera) associated with flowering plants: estimating floral attractiveness, Biol Control, 61, 230, 10.1016/j.biocontrol.2012.02.008
Nelson, 2018, Arthropod communities in warm and cool grass riparian buffers and their influence on natural enemies in adjacent crops, Agric Ecosyst Environ, 257, 81, 10.1016/j.agee.2018.01.019
Shields, 2016, Potential ecosystem service delivery by endemic plants in New Zealand vineyards: successes and prospects, PeerJ, 2016, 1
Danne, 2010, Effects of native grass cover crops on beneficial and pest invertebrates in Australian vineyards, Environ Entomol, 39, 970, 10.1603/EN09144
Gonzalez, 2016, Higher longevity and fecundity of Chrysoperla carnea, a predator of olive pests, on some native flowering Mediterranean plants, Agron Sustain Dev, 36, 1, 10.1007/s13593-016-0369-7
Alcalá Herrera, 2019, Attraction of green lacewings (Neuroptera: Chrysopidae) to native plants used as ground cover in woody Mediterranean agroecosystems, Biol Control, 139, 10.1016/j.biocontrol.2019.104066
Alcalá Herrera, 2020, The suitability of native flowers as pollen sources for Chrysoperla lucasina (Neuroptera: Chrysopidae), PLoS One, 15, 1, 10.1371/journal.pone.0239847
Diepenbrock, 2013, Refuge for native lady beetles (Coccinellidae) in perennial grassland habitats, Insect Conserv Divers, 6, 671, 10.1111/icad.12027
Charles, 2016, Fitness effects of food resources on the polyphagous aphid parasitoid, Aphidius colemani Viereck (Hymenoptera: Braconidae: Aphidiinae), PLoS One, 11, 1, 10.1371/journal.pone.0147551
van Rijn, 2016, Nectar accessibility determines fitness, flower choice and abundance of hoverflies that provide natural pest control, J Appl Ecol, 53, 925, 10.1111/1365-2664.12605
Gillespie, 2016, Beyond nectar provision: the other resource requirements of parasitoid biological control agents, Entomol Exp Appl, 159, 207, 10.1111/eea.12424
Wood, 2010, Native saltbush (Rhagodia spp.; Chenopodiaceae) as a potential reservoir for agromyzid leafminer parasitoids on horticultural farms, Aust J Entomol, 49, 82, 10.1111/j.1440-6055.2009.00725.x
Aluja, 2014, Pest management through tropical tree conservation, Biodivers Conserv, 23, 831, 10.1007/s10531-014-0636-3
Daghela Bisseleua, 2013, Shade tree diversity, cocoa pest damage, yield compensating inputs and farmers’ net returns in west Africa, PLoS One, 8, 10.1371/annotation/ce51ca58-84aa-4ba4-be8c-86cb46d35ed1
Miñarro, 2013, Hedgerows surrounding organic apple orchards in north-west Spain: potential to conserve beneficial insects, Agric Entomol, 15, 382, 10.1111/afe.12025
Morandin, 2014, Hedgerows enhance beneficial insects on adjacent tomato fields in an intensive agricultural landscape, Agric Ecosyst Environ, 189, 164, 10.1016/j.agee.2014.03.030
Pandey, 2022, Pesticide regime can negate the positive influence of native vegetation donor habitat on natural enemy abundance in adjacent crop fields, Front Ecol Evol, 10, 1, 10.3389/fevo.2022.815162
Chaplin-Kramer, 2019, Measuring what matters: actionable information for conservation biocontrol in multifunctional landscapes, Front Sustain Food Syst, 3, 1, 10.3389/fsufs.2019.00060
Blaauw, 2012, Larger wildflower plantings increase natural enemy density, diversity, and biological control of sentinel prey, without increasing herbivore density, Ecol Entomol, 37, 386, 10.1111/j.1365-2311.2012.01376.x
Olson, 2007, Management of field margins to maximize multiple ecological services, J Appl Ecol, 44, 13, 10.1111/j.1365-2664.2006.01241.x
Amoabeng, 2021, Economic analysis of habitat manipulation in Brassica pest management: wild plant species suppress cabbage webworm, Crop Prot, 150, 10.1016/j.cropro.2021.105788