Worldwide decline of the entomofauna: A review of its drivers
暂无分享,去创建一个
[1] D. Sheil,et al. Biological control of an agricultural pest protects tropical forests. , 2019 .
[2] Takehiko I. Hayashi,et al. Were the sharp declines of dragonfly populations in the 1990s in Japan caused by fipronil and imidacloprid? An analysis of Hill’s causality for the case of Sympetrum frequens , 2018, Environmental Science and Pollution Research.
[3] Bradford C. Lister,et al. Climate-driven declines in arthropod abundance restructure a rainforest food web , 2018, Proceedings of the National Academy of Sciences.
[4] X. Cerdá,et al. Diversity of insect pollinators in the Iberian Peninsula , 2018, Ecosistemas.
[5] K. Wyckhuys,et al. Effective biological control of an invasive mealybug pest enhances root yield in cassava , 2018, Journal of Pest Science.
[6] J. Adamczyk,et al. Honey Bee Survival and Pathogen Prevalence: From the Perspective of Landscape and Exposure to Pesticides , 2018, Insects.
[7] Constantino Stefanescu,et al. Diversidad de insectos polinizadores en la península ibérica , 2018 .
[8] M. Kuussaari,et al. Species traits explain long‐term population trends of Finnish cuckoo wasps (Hymenoptera: Chrysididae) , 2018 .
[9] Sandra M. Rehan,et al. Decline of bumble bees in northeastern North America, with special focus on Bombus terricola , 2018 .
[10] R. Molowny‐Horas,et al. Lethal effects of Cr(III) alone and in combination with propiconazole and clothianidin in honey bees. , 2018, Chemosphere.
[11] G. Heimpel,et al. Shifting paradigms in the history of classical biological control , 2018, BioControl.
[12] M. Zorc,et al. Immune related gene expression in worker honey bee (Apis mellifera carnica) pupae exposed to neonicotinoid thiamethoxam and Varroa mites (Varroa destructor) , 2017, PloS one.
[13] H. de Kroon,et al. More than 75 percent decline over 27 years in total flying insect biomass in protected areas , 2017, PloS one.
[14] J. Brunet,et al. Assessment of the toxic effect of pesticides on honey bee drone fertility using laboratory and semifield approaches: A case study of fipronil , 2017, Environmental toxicology and chemistry.
[15] R. Dirzo,et al. Biological annihilation via the ongoing sixth mass extinction signaled by vertebrate population losses and declines , 2017, Proceedings of the National Academy of Sciences.
[16] James T. Wilkes,et al. A national survey of managed honey bee 2015–2016 annual colony losses in the USA , 2017 .
[17] R. Grosse,et al. Immunosuppression in Honeybee Queens by the Neonicotinoids Thiacloprid and Clothianidin , 2017, Scientific Reports.
[18] Nigel Dudley,et al. Agriculture and biodiversity: a review , 2017 .
[19] L. Masner,et al. Impact of herbicides on the insect and spider diversity in eastern Canada , 2017 .
[20] L. Furlan,et al. Risk assessment of soil-pest damage to grain maize in Europe within the framework of Integrated Pest Management , 2017 .
[21] Luis Roman Carrasco,et al. Global economic trade-offs between wild nature and tropical agriculture , 2017, PLoS biology.
[22] Systematic Review of the Effects of Chemical Insecticides on Four Common Butterfly Families , 2017, Front. Environ. Sci..
[23] W. Shi,et al. Managed honeybee colony losses of the Eastern honeybee (Apis cerana) in China (2011–2014) , 2017, Apidologie.
[24] Morelia Camacho-Cervantes,et al. From effective biocontrol agent to successful invader: the harlequin ladybird (Harmonia axyridis) as an example of good ideas that could go wrong , 2017, PeerJ.
[25] J. Pérez,et al. Effect of residence time on micropollutant removal in WWTP secondary effluents by continuous solar photo-Fenton process in raceway pond reactors , 2017 .
[26] N. Dudley,et al. How should conservationists respond to pesticides as a driver of biodiversity loss in agroecosystems , 2017 .
[27] D. Goulson,et al. Quantifying exposure of wild bumblebees to mixtures of agrochemicals in agricultural and urban landscapes. , 2017, Environmental pollution.
[28] D. Makowski,et al. Reducing pesticide use while preserving crop productivity and profitability on arable farms , 2017, Nature Plants.
[29] K. Goka,et al. Contamination of the Aquatic Environment with Neonicotinoids and its Implication for Ecosystems , 2016, Front. Environ. Sci..
[30] C. Stefanescu,et al. General declines in Mediterranean butterflies over the last two decades are modulated by species traits , 2016 .
[31] M. Spivak,et al. Sub-lethal effects of dietary neonicotinoid insecticide exposure on honey bee queen fecundity and colony development , 2016, Scientific Reports.
[32] James E. M. Watson,et al. Biodiversity: The ravages of guns, nets and bulldozers , 2016, Nature.
[33] A. Shapiro,et al. Increasing neonicotinoid use and the declining butterfly fauna of lowland California , 2016, Biology Letters.
[34] C. Turnhout,et al. Modest recovery of biodiversity in a western European country: The Living Planet Index for the Netherlands , 2016 .
[35] Randolf Menzel,et al. Honey Bees' Behavior Is Impaired by Chronic Exposure to the Neonicotinoid Thiacloprid in the Field. , 2016, Environmental science & technology.
[36] C. Krupke,et al. Non-cultivated plants present a season-long route of pesticide exposure for honey bees , 2016, Nature Communications.
[37] F. Nazzi,et al. Are bee diseases linked to pesticides? - A brief review. , 2016, Environment international.
[38] J. Pettis,et al. Linking Measures of Colony and Individual Honey Bee Health to Survival among Apiaries Exposed to Varying Agricultural Land Use , 2016, PloS one.
[39] Takehiko I. Hayashi,et al. Fipronil application on rice paddy fields reduces densities of common skimmer and scarlet skimmer , 2016, Scientific Reports.
[40] R. King,et al. Stream biodiversity is disproportionately lost to urbanization when flow permanence declines: evidence from southwestern North America , 2016, Freshwater Science.
[41] M. Wingfield,et al. Exotic biological control agents: A solution or contribution to arthropod invasions? , 2016, Biological Invasions.
[42] D. vanEngelsdorp,et al. Colony Failure Linked to Low Sperm Viability in Honey Bee (Apis mellifera) Queens and an Exploration of Potential Causative Factors , 2016, PloS one.
[43] I. Kowarik,et al. Impacts of invasive plants on resident animals across ecosystems, taxa, and feeding types: a global assessment , 2016, Global change biology.
[44] Taylor H. Ricketts,et al. Modeling the status, trends, and impacts of wild bee abundance in the United States , 2015, Proceedings of the National Academy of Sciences.
[45] J. Lundgren,et al. Thiamethoxam Seed Treatments Have No Impact on Pest Numbers or Yield in Cultivated Sunflowers , 2015, Journal of economic entomology.
[46] T. Brereton,et al. Are neonicotinoid insecticides driving declines of widespread butterflies? , 2015, PeerJ.
[47] Geoffrey R. Williams,et al. Neonicotinoid pesticides severely affect honey bee queens , 2015, Scientific Reports.
[48] E. A. Bergey,et al. Bumble Bees (Hymenoptera: Apidae) of Oklahoma: Past and Present Biodiversity , 2015 .
[49] J. Bojková,et al. Mayflies (Ephemeroptera) as indicators of environmental changes in the past five decades: a case study from the Morava and Odra River Basins (Czech Republic) , 2015 .
[50] C. Brühl,et al. The effects of agrochemicals on Lepidoptera, with a focus on moths, and their pollination service in field margin habitats , 2015 .
[51] B. Hoffmann,et al. Here today, gone tomorrow: declines and local extinctions of invasive ant populations in the absence of intervention , 2015, Biological Invasions.
[52] H. Roy,et al. Reflections on the long-term assessment of ladybird (Coleoptera: Coccinellidae) populations in the Czech Republic and the United Kingdom , 2015 .
[53] Direct and indirect effects of human population density and land use on physical features and invertebrates of Iowa (U.S.A.) streams , 2016, Urban Ecosystems.
[54] H. Roy,et al. Ten years of invasion: Harmonia axyridis (Pallas) (Coleoptera: Coccinellidae) in Britain , 2015, Ecological entomology.
[55] M. Chagnon,et al. Neonicotinoid-Coated Zea mays Seeds Indirectly Affect Honeybee Performance and Pathogen Susceptibility in Field Trials , 2015, PloS one.
[56] J. Dekker,et al. Return of the bats? A prototype indicator of trends in European bat populations in underground hibernacula , 2015 .
[57] D. Goulson,et al. Bee declines driven by combined stress from parasites, pesticides, and lack of flowers , 2015, Science.
[58] M. Rogers,et al. Soil-Applied Imidacloprid Translocates to Ornamental Flowers and Reduces Survival of Adult Coleomegilla maculata, Harmonia axyridis, and Hippodamia convergens Lady Beetles, and Larval Danaus plexippus and Vanessa cardui Butterflies , 2015, PloS one.
[59] M. Lydy,et al. Effects of pyrethroid insecticides in urban runoff on Chinook salmon, steelhead trout, and their invertebrate prey , 2015, Environmental toxicology and chemistry.
[60] J. Pretty,et al. Integrated Pest Management for Sustainable Intensification of Agriculture in Asia and Africa , 2015, Insects.
[61] G. Gurr,et al. Rice pest management by ecological engineering: A pioneering attempt in China , 2015 .
[62] Kong Luen Heong,et al. Addressing Planthopper Threats to Asian Rice Farming and Food Security: Fixing Insecticide Misuse , 2015 .
[63] J. Ollerton,et al. Extinctions of aculeate pollinators in Britain and the role of large-scale agricultural changes , 2014, Science.
[64] A. Swengel,et al. Assessing abundance patterns of specialized bog butterflies over 12 years in northern Wisconsin USA , 2015, Journal of Insect Conservation.
[65] P. Mineau,et al. Conclusions of the Worldwide Integrated Assessment on the risks of neonicotinoids and fipronil to biodiversity and ecosystem functioning , 2014, Environmental Science and Pollution Research.
[66] M. Spivak,et al. A Survey and Historical Comparison of the Megachilidae (Hymenoptera: Apoidea) of Itasca State Park, Minnesota , 2014 .
[67] R. Isaacs,et al. Landscape composition influences pollinators and pollination services in perennial biofuel plantings , 2014 .
[68] Rufus Isaacs,et al. Flower plantings increase wild bee abundance and the pollination services provided to a pollination-dependent crop , 2014 .
[69] R. Dirzo,et al. Defaunation in the Anthropocene , 2014, Science.
[70] E. Bruneau,et al. Honeybee Colony Disorder in Crop Areas: The Role of Pesticides and Viruses , 2014, PloS one.
[71] H. Kroon,et al. Declines in insectivorous birds are associated with high neonicotinoid concentrations , 2014, Nature.
[72] Changes in occurrence, richness, and biological traits of dragonflies and damselflies (Odonata) in California and Nevada over the past century , 2014, Biodiversity and Conservation.
[73] J. Bojková,et al. Trends in species diversity of lotic stoneflies (Plecoptera) in the Czech Republic over five decades , 2014 .
[74] K. Goka,et al. Pesticide Residues and Bees – A Risk Assessment , 2014, PloS one.
[75] A. Hoffmann,et al. Ecological evidence links adverse biological effects to pesticide and metal contamination in an urban Australian watershed , 2014 .
[76] Ola Olsson,et al. Optimizing agri-environment schemes for biodiversity, ecosystem services or both? , 2014 .
[77] T. Nishida,et al. Effects of environmental factors on the species composition of aquatic insects in irrigation ponds , 2014 .
[78] M. Lydy,et al. Urban and agricultural pesticide inputs to a critical habitat for the threatened delta smelt (Hypomesus transpacificus) , 2014, Environmental toxicology and chemistry.
[79] R. Bommarco,et al. Contribution of insect pollinators to crop yield and quality varies with agricultural intensification , 2014, PeerJ.
[80] D. Mortensen,et al. Herbicide drift can affect plant and arthropod communities , 2014 .
[81] T. M. Bezemer,et al. Response of native insect communities to invasive plants. , 2014, Annual review of entomology.
[82] A. Honěk,et al. Long‐term trends in the composition of aphidophagous coccinellid communities in Central Europe , 2014 .
[83] C. Pirk,et al. A survey of managed honey bee colony losses in the Republic of South Africa–2009 to 2011 , 2014 .
[84] A. Nieto. European Red List of bees , 2014 .
[85] F. Nazzi,et al. Neonicotinoid clothianidin adversely affects insect immunity and promotes replication of a viral pathogen in honey bees , 2013, Proceedings of the National Academy of Sciences.
[86] David H. Hembry. Herbarium Specimens Reveal Putative Insect Extinction on the Deforested Island of Mangareva (Gambier Archipelago, French Polynesia)1 , 2013 .
[87] J. Frazier,et al. Comparative Toxicities and Synergism of Apple Orchard Pesticides to Apis mellifera (L.) and Osmia cornifrons (Radoszkowski) , 2013, PloS one.
[88] J. Harding,et al. Habitat loss drives threshold response of benthic invertebrate communities to deposited sediment in agricultural streams. , 2013, Ecological applications : a publication of the Ecological Society of America.
[89] M. Liess,et al. Pesticides reduce regional biodiversity of stream invertebrates , 2013, Proceedings of the National Academy of Sciences.
[90] J. Sluijs,et al. Macro-invertebrate decline in surface water polluted with imidacloprid. , 2013 .
[91] I. Roessink,et al. THE NEONICOTINOID IMIDACLOPRID SHOWS HIGH CHRONIC TOXICITY TO MAYFLY NYMPHS , 2013, Environmental toxicology and chemistry.
[92] A. Nemésio. Are orchid bees at risk? First comparative survey suggests declining populations of forest-dependent species. , 2013, Brazilian journal of biology = Revista brasleira de biologia.
[93] H. Morales,et al. Current status and potential of conservation biological control for agriculture in the developing world , 2013 .
[94] R. Bommarco,et al. Ecological intensification: harnessing ecosystem services for food security. , 2013, Trends in ecology & evolution.
[95] J. C. Marlin,et al. Plant-Pollinator Interactions over 120 Years: Loss of Species, Co-Occurrence, and Function , 2013, Science.
[96] M. Whiteside,et al. Pesticide Acute Toxicity Is a Better Correlate of U.S. Grassland Bird Declines than Agricultural Intensification , 2013, PloS one.
[97] Greg A. Breed,et al. Climate-driven changes in northeastern US butterfly communities , 2013 .
[98] Blair D. Siegfried,et al. Acaricide, Fungicide and Drug Interactions in Honey Bees (Apis mellifera) , 2013, PloS one.
[99] R. Fox. The decline of moths in Great Britain: a review of possible causes , 2013 .
[100] Uéda Tetsuyuki,et al. The ecological impact of the insecticides fipronil and imidacloprid on Sympetrum frequens in Japan | Article Information | J-GLOBAL , 2013 .
[101] S. Clay,et al. Insect communities in soybeans of eastern South Dakota: The effects of vegetation management and pesticides on soybean aphids, bean leaf beetles, and their natural enemies , 2013 .
[102] James T. Wilkes,et al. A national survey of managed honey bee 2011–12 winter colony losses in the United States: results from the Bee Informed Partnership , 2013 .
[103] Klára Komprdová,et al. Species loss of stoneflies (Plecoptera) in the Czech Republic during the 20th century , 2012 .
[104] Helen E. Roy,et al. Lessons from lady beetles: accuracy of monitoring data from US and UK citizen-science programs , 2012 .
[105] D. Monteith,et al. Large carabid beetle declines in a United Kingdom monitoring network increases evidence for a widespread loss in insect biodiversity , 2012 .
[106] C. Brühl,et al. Bats at risk? Bat activity and insecticide residue analysis of food items in an apple orchard , 2012, Environmental toxicology and chemistry.
[107] K. Wesche,et al. Long-term decline in the abundance of leafhoppers and planthoppers (Auchenorrhyncha) in Central European protected dry grasslands , 2012 .
[108] W. E. Snyder,et al. Biodiversity and insect pests: key issues for sustainable management. , 2012 .
[109] Effect of imidacloprid and fipronil pesticide application on Sympetrum infuscatum (Libellulidae: Odonata) larvae and adults , 2012, Paddy and Water Environment.
[110] Jamie Ellis. The Honey Bee Crisis , 2012 .
[111] James T. Wilkes,et al. A national survey of managed honey bee 2010–11 winter colony losses in the USA: results from the Bee Informed Partnership , 2012 .
[112] Z. Huang. Pollen nutrition affects honey bee stress resistance , 2012 .
[113] M. Stapanian,et al. Trends in benthic macroinvertebrate community biomass and energy budgets in Lake Sevan, 1928–2004 , 2012, Environmental Monitoring and Assessment.
[114] R. Bommarco,et al. Drastic historic shifts in bumble-bee community composition in Sweden , 2012, Proceedings of the Royal Society B: Biological Sciences.
[115] Ignasi Bartomeus,et al. Climate-associated phenological advances in bee pollinators and bee-pollinated plants , 2011, Proceedings of the National Academy of Sciences.
[116] C. Damgaard,et al. Quantitative Historical Change in Bumblebee (Bombus spp.) Assemblages of Red Clover Fields , 2011, PloS one.
[117] Kirsty J. Park,et al. Pipistrelle bats and their prey do not benefit from four widely applied agri-environment management prescriptions , 2011 .
[118] G. DeGrandi-Hoffman,et al. An emerging paradigm of colony health: microbial balance of the honey bee and hive (Apis mellifera) , 2011, Insectes Sociaux.
[119] M. Liess,et al. Impacts of Pesticides on Freshwater Ecosystems , 2011 .
[120] F. Sánchez-Bayo,et al. Impacts of Agricultural Pesticides on Terrestrial Ecosystems , 2011 .
[121] D. Biron,et al. Exposure to Sublethal Doses of Fipronil and Thiacloprid Highly Increases Mortality of Honeybees Previously Infected by Nosema ceranae , 2011, PloS one.
[122] C. Marshall,et al. Has the Earth’s sixth mass extinction already arrived? , 2011, Nature.
[123] J. Ollerton,et al. How many flowering plants are pollinated by animals , 2011 .
[124] C. Leuschner,et al. Minor changes in orthopteran assemblages of Central European protected dry grasslands during the last 40 years , 2011, Journal of Insect Conservation.
[125] J. Pretty,et al. Sustainable intensification in African agriculture , 2011 .
[126] Jeffrey D. Lozier,et al. Patterns of widespread decline in North American bumble bees , 2011, Proceedings of the National Academy of Sciences.
[127] W. N. Ellis,et al. Hoverfly diversity (Diptera: Syrphidae) in a Mediterranean scrub community near Athens, Greece , 2011 .
[128] M. Paoletti,et al. Is There a Need for a More Sustainable Agriculture? , 2011 .
[129] Paul H. Williams,et al. Bumblebee vulnerability and conservation world-wide , 2009, Apidologie.
[130] F. Laurent,et al. Phytoremediation Techniques for Pesticide Contaminations , 2011 .
[131] H. Barlow,et al. Asymmetric boundary shifts of tropical montane Lepidoptera over four decades of climate warming , 2011 .
[132] K. Goodell,et al. The role of resources and risks in regulating wild bee populations. , 2011, Annual review of entomology.
[133] Yasuhiro Nakamura. Conservation of butterflies in Japan: status, actions and strategy , 2011, Journal of Insect Conservation.
[134] A. Swengel,et al. Declines of prairie butterflies in the midwestern USA , 2011, Journal of Insect Conservation.
[135] L. Bersier,et al. What can sown wildflower strips contribute to butterfly conservation?: an example from a Swiss lowland agricultural landscape , 2011, Journal of Insect Conservation.
[136] R. Fox,et al. Moths count: recording moths for conservation in the UK , 2011, Journal of Insect Conservation.
[137] W. N. Ellis,et al. The state of the Dutch larger moth fauna , 2011, Journal of Insect Conservation.
[138] C. Stefanescu,et al. Recent trends in butterfly populations from north-east Spain and Andorra in the light of habitat and climate change , 2011, Journal of Insect Conservation.
[139] T. Brereton,et al. Butterfly abundance in a warming climate: patterns in space and time are not congruent , 2011, Journal of Insect Conservation.
[140] T. Brereton,et al. The development of butterfly indicators in the United Kingdom and assessments in 2010 , 2011, Journal of Insect Conservation.
[141] S. Collins,et al. Grassland butterflies and low intensity farming in Europe , 2011, Journal of Insect Conservation.
[142] L. M. Jacobus,et al. The Mayflies (Ephemeroptera) of the Southeastern United States , 2010 .
[143] S. Potts,et al. Ecological and life-history traits predict bee species responses to environmental disturbances , 2010 .
[144] F. Achard,et al. Tropical forests were the primary sources of new agricultural land in the 1980s and 1990s , 2010, Proceedings of the National Academy of Sciences.
[145] Brigitte Poulin,et al. Red flag for green spray: adverse trophic effects of Bti on breeding birds , 2010 .
[146] C. King,et al. Impacts of invasive parasitoids on declining endemic Hawaiian leafroller moths (Omiodes: Crambidae) vary among sites and species , 2010 .
[147] D. C. Houghton,et al. Historical and contemporary biological diversity of Minnesota caddisflies: a case study of landscape-level species loss and trophic composition shift , 2010, Journal of the North American Benthological Society.
[148] Marco Vighi,et al. Impacts of a pesticide on pollinator species richness at different spatial scales , 2010 .
[149] R. May. Ecological science and tomorrow's world , 2010, Philosophical Transactions of the Royal Society B: Biological Sciences.
[150] Richard G. Jones,et al. Declines of managed honey bees and beekeepers in Europe , 2010 .
[151] James D. Ellis,et al. Colony losses, managed colony population decline, and Colony Collapse Disorder in the United States , 2010 .
[152] Laurent Keller,et al. The worldwide expansion of the Argentine ant , 2010 .
[153] J. Settele,et al. European Red List of Butterflies , 2010 .
[154] E. Riservato,et al. European Red List of Dragonflies , 2010 .
[155] B. Ehnström,et al. Longhorn beetles in Sweden - changes in distribution and abundance over the last two hundred years. , 2010 .
[156] K. Alexander,et al. European Red List of saproxylic beetles , 2010 .
[157] A. Lorenz,et al. Vulnerable taxa of European Plecoptera (Insecta) in the context of climate change , 2010, Biodiversity and Conservation.
[158] J. Helešic,et al. Distribution and biology of mayflies (Ephemeroptera) of the Czech Republic: present status and perspectives , 2009 .
[159] Ian P. Woiwod,et al. Long‐term changes in the abundance of flying insects , 2009 .
[160] I. Washitani,et al. Dragonfly crisis in Japan: a likely consequence of recent agricultural habitat degradation. , 2009 .
[161] W. Darwall,et al. Odonata enter the biodiversity crisis debate: The first global assessment of an insect group , 2009 .
[162] H P Possingham,et al. Major Conservation Policy Issues for Biodiversity in Oceania , 2009, Conservation biology : the journal of the Society for Conservation Biology.
[163] H. Van Dyck,et al. Declines in Common, Widespread Butterflies in a Landscape under Intense Human Use , 2009, Conservation biology : the journal of the Society for Conservation Biology.
[164] Sergej Olenin,et al. Invaders are not a random selection of species , 2009, Biological Invasions.
[165] M. Aizen,et al. How much does agriculture depend on pollinators? Lessons from long-term trends in crop production. , 2009, Annals of botany.
[166] Walter Giger,et al. The Rhine red, the fish dead—the 1986 Schweizerhalle disaster, a retrospect and long-term impact assessment , 2009, Environmental science and pollution research international.
[167] G. Frankie,et al. Decline in Bee Diversity and Abundance from 1972-2004 on a Flowering Leguminous Tree, Andira inermis in Costa Rica at the Interface of Disturbed Dry Forest and the Urban Environment , 2009 .
[168] D. Macdonald,et al. Optimizing the biodiversity gain from agri-environment schemes , 2009 .
[169] D. Currie,et al. Human land use, agriculture, pesticides and losses of imperiled species , 2009 .
[170] M. Morecroft,et al. Effects of agri-environment schemes in a long-term ecological time series , 2009 .
[171] J. Settele,et al. Economic valuation of the vulnerability of world agriculture confronted with pollinator decline , 2009 .
[172] J. Settele,et al. Diversity of wild bees in wet meadows: Implications for conservation , 2008, Wetlands.
[173] N. Cox,et al. European Red List of reptiles , 2009 .
[174] N. Cox,et al. European Red List of amphibians , 2009 .
[175] H. Temple,et al. The Status and Distribution of Mediterranean Mammals , 2009 .
[176] European mammals: Red List status, trends, and conservation priorities. , 2009 .
[177] S. Cameron,et al. Decline of bumble bees (Bombus) in the North American Midwest , 2009 .
[178] R. Relyea,et al. Interactive effects of predators and a pesticide on aquatic communities , 2008 .
[179] Matthias Liess,et al. Long-term stream invertebrate community alterations induced by the insecticide thiacloprid: effect concentrations and recovery dynamics. , 2008, The Science of the total environment.
[180] Robert K. Colwell,et al. Global Warming, Elevational Range Shifts, and Lowland Biotic Attrition in the Wet Tropics , 2008, Science.
[181] Jennifer L. Hopwood. The contribution of roadside grassland restorations to native bee conservation , 2008 .
[182] David B. Lindenmayer,et al. Frontiers inEcology and the Environment Should agricultural policies encourage land sparing or wildlife-friendly farming ? , 2007 .
[183] Ben Collen,et al. The Tropical Biodiversity Data Gap: Addressing Disparity in Global Monitoring , 2008 .
[184] Paul R. Martin,et al. Impacts of climate warming on terrestrial ectotherms across latitude , 2008, Proceedings of the National Academy of Sciences.
[185] Dean G. Thompson,et al. Are leaves that fall from imidacloprid-treated maple trees to control Asian longhorned beetles toxic to non-target decomposer organisms? , 2008, Journal of environmental quality.
[186] S. Colla,et al. Evidence for decline in eastern North American bumblebees (Hymenoptera: Apidae), with special focus on Bombus affinis Cresson , 2008, Biodiversity and Conservation.
[187] M. Liess,et al. Acute and delayed effects of the neonicotinoid insecticide thiacloprid on seven freshwater arthropods , 2008, Environmental toxicology and chemistry.
[188] Marc Kenis,et al. Ecological effects of invasive alien insects , 2008, Biological Invasions.
[189] H. Hakkarainen,et al. Wood ants are wood ants: deforestation causes population declines in the polydomous wood ant Formica aquilonia , 2007 .
[190] Adriano Mazziotta,et al. Inferring species decline from collection records: roller dung beetles in Italy (Coleoptera, Scarabaeidae) , 2007 .
[191] Dean G. Thompson,et al. Non-target effects on aquatic decomposer organisms of imidacloprid as a systemic insecticide to control emerald ash borer in riparian trees. , 2007, Ecotoxicology and environmental safety.
[192] Michael J. O. Pocock,et al. Testing biotic indicator taxa: the sensitivity of insectivorous mammals and their prey to the intensification of lowland agriculture , 2007 .
[193] E. Green,et al. Ecological and socioeconomic impacts of invasive alien species in island ecosystems , 2007, Environmental Conservation.
[194] Jeremy T. Kerr,et al. Human impacts on environment–diversity relationships: evidence for biotic homogenization from butterfly species richness patterns , 2007 .
[195] K. Gaston,et al. Biodiversity and extinction , 2007 .
[196] C. Townsend,et al. Longitudinal changes in biota along four New Zealand streams: Declines and improvements in stream health related to land use , 2007 .
[197] P. Olejniczak,et al. The decline of the bumble bees and cuckoo bees (Hymenoptera: Apidae: Bombini) of Western and Central Europe , 2007, Oryx.
[198] J. Kopáček,et al. Biological recovery of the Bohemian Forest lakes from acidification , 2006, Biologia.
[199] T. Hiura,et al. Commercialized European bumblebee can cause pollination disturbance: An experiment on seven native plant species in Japan , 2007 .
[200] Axel Decourtye,et al. The sublethal effects of pesticides on beneficial arthropods. , 2007, Annual review of entomology.
[201] M. Rantala,et al. Diet-mediated effects of heavy metal pollution on growth and immune response in the geometrid moth Epirrita autumnata. , 2007, Environmental pollution.
[202] D. vanEngelsdorp,et al. Colony Collapse Disorder : Have We Seen This Before ? , 2007 .
[203] C. A. McGuinness. Carabid beetle (Coleoptera: Carabidae) conservation in New Zealand , 2007, Journal of Insect Conservation.
[204] J. Losey,et al. The decline of native coccinellids (Coleoptera: Coccinellidae) in the United States and Canada , 2007, Journal of Insect Conservation.
[205] Kimmo Saarinen,et al. Contrasting trends of butterfly species preferring semi-natural grasslands, field margins and forest edges in northern Europe , 2007, Journal of Insect Conservation.
[206] M. Franzén,et al. Predicting extinction risk of butterflies and moths (Macrolepidoptera) from distribution patterns and species characteristics , 2007, Journal of Insect Conservation.
[207] R. Fochetti,et al. Notes on diversity and conservation of the European fauna of Plecoptera (Insecta) , 2006 .
[208] D. Cox-Foster,et al. Effects of parasitization by Varroa destructor on survivorship and physiological traits of Apis mellifera in correlation with viral incidence and microbial challenge , 2006, Parasitology.
[209] K. F. Conrad,et al. Rapid declines of common, widespread British moths provide evidence of an insect biodiversity crisis , 2006 .
[210] Chris van Swaay,et al. Biotope Use and Trends of European Butterflies , 2006, Journal of Insect Conservation.
[211] V. Kaitala,et al. Ecological Determinants of Distribution Decline and Risk of Extinction in Moths , 2006, Conservation biology : the journal of the Society for Conservation Biology.
[212] A. P. Schaffers,et al. Parallel Declines in Pollinators and Insect-Pollinated Plants in Britain and the Netherlands , 2006, Science.
[213] D. Roy,et al. Species richness changes lag behind climate change , 2006, Proceedings of the Royal Society B: Biological Sciences.
[214] Henrik G. Smith,et al. The relationship between local extinctions of grassland butterflies and increased soil nitrogen levels , 2006 .
[215] J. Losey,et al. The Economic Value of Ecological Services Provided by Insects , 2006 .
[216] D. Macdonald,et al. The benefits of organic farming for biodiversity , 2006 .
[217] M. McKinney,et al. Urbanization as a major cause of biotic homogenization , 2006 .
[218] T. Brereton,et al. The state of butterflies in Britain and Ireland , 2006 .
[219] L G Firbank,et al. Benefits of organic farming to biodiversity vary among taxa , 2005, Biology Letters.
[220] Tomokazu Nakamura,et al. Nontarget Effects of Ivermectin on Coprophagous Insects in Japan , 2005 .
[221] R. DeWalt,et al. Just How Imperiled Are Aquatic Insects? A Case Study of Stoneflies (Plecoptera) in Illinois , 2005 .
[222] A. Stewart,et al. Conservation of Grassland Leafhoppers: A Brief Review , 2005, Journal of Insect Conservation.
[223] Robert R. Dunn,et al. Modern Insect Extinctions, the Neglected Majority , 2005 .
[224] S. Carpenter,et al. Global Consequences of Land Use , 2005, Science.
[225] D. Goulson,et al. Causes of rarity in bumblebees , 2005 .
[226] David B. Roy,et al. A northward shift of range margins in British Odonata , 2005 .
[227] F. Guérold,et al. Plecoptera response to acidification in several headwater streams in the Vosges Mountains (northeastern France) , 2005, Biodiversity & Conservation.
[228] Jane Memmott,et al. Tolerance of pollination networks to species extinctions , 2004, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[229] S. Harris,et al. Abundance and Species Richness of Nocturnal Insects on Organic and Conventional Farms: Effects of Agricultural Intensification on Bat Foraging , 2004 .
[230] Ian Newton,et al. The recent declines of farmland bird populations in britain : An appraisal of causal factors and conservation actions , 2004 .
[231] C. Scholtz,et al. Scarabaeine dung beetles as indicators of biodiversity, habitat transformation and pest control chemicals in agro-ecosystems , 2004 .
[232] L. P. Koh,et al. Co‐Extinctions of Tropical Butterflies and their Hostplants , 2004 .
[233] G. Allinson,et al. DDT and metabolites residues in the southern bent-wing bat (Miniopterus schreibersii bassanii) of south-eastern Australia. , 2004, Chemosphere.
[234] J. Greenwood,et al. Comparative Losses of British Butterflies, Birds, and Plants and the Global Extinction Crisis , 2004, Science.
[235] D. Landis,et al. Soybean Aphid Predators and Their Use in Integrated Pest Management , 2004 .
[236] A. Dixon,et al. Effect of intraguild predation on the survival and development of three species of aphidophagous ladybirds: consequences for invasive species , 2004 .
[237] Mark S. Hoddle,et al. Restoring Balance: Using Exotic Species to Control Invasive Exotic Species , 2004 .
[238] T. Hyvönen,et al. Weed species diversity and community composition in cropping practices at two intensity levels – a six-year experiment , 2002, Plant Ecology.
[239] M. Marten. Environmental monitoring in Baden-Württemberg with special reference to biocoenotic trend-monitoring of macrozoobenthos in rivers and methodical requirements for evaluation of long-term biocoenotic changes , 2001, Aquatic Ecology.
[240] P. Zwick. Stream habitat fragmentation — a threat to biodiversity , 1992, Biodiversity & Conservation.
[241] D. Groenendijk,et al. Conservation of moths in The Netherlands: population trends, distribution patterns and monitoring techniques of day-flying moths , 2004, Journal Of Insect Conservation.
[242] S. Harris,et al. Bat activity and species richness on organic and conventional farms: impact of agricultural intensification , 2003 .
[243] L. K. Ward,et al. The role of weeds in supporting biological diversity within crop fields , 2003 .
[244] F. Amerasinghe,et al. Biodiversity associated with the rice field agroecosystem in Asian countries: a brief review , 2003 .
[245] J. Suhonen,et al. Distribution and habitat specialization of species affect local extinction in dragonfly Odonata populations , 2002 .
[246] P. Ehrlich,et al. Mammal Population Losses and the Extinction Crisis , 2002, Science.
[247] P. Racey,et al. A review of the global conservation status of bats , 2002, Oryx.
[248] Edward O. Wilson,et al. The Future of Life , 2002 .
[249] J. Lobo,et al. Diversity, distinctiveness and conservation status of the Mediterranean coastal dung beetle assemblage in the Regional Natural Park of the Camargue (France) , 2001 .
[250] J. K. Hill,et al. Rapid responses of British butterflies to opposing forces of climate and habitat change , 2001, Nature.
[251] J Memmott,et al. Infiltration of a Hawaiian Community by Introduced Biological Control Agents , 2001, Science.
[252] Hans Van Dyck,et al. Butterfly diversity loss in Flanders (north Belgium): Europe's worst case scenario? , 2001 .
[253] Brian G. Wolff,et al. Forecasting Agriculturally Driven Global Environmental Change , 2001, Science.
[254] J. C. Marlin,et al. The Native Bee Fauna of Carlinville, Illinois, Revisited After 75 Years: a Case for Persistence , 2001 .
[255] W. Mccafferty. Status of some historically unfamiliar American mayflies (Ephemeroptera) , 2001 .
[256] J. Lobo. Decline of roller dung beetle (Scarabaeinae) populations in the Iberian peninsula during the 20th century , 2001 .
[257] J. Elkinton,et al. Effects of a Biological Control Introduction on Three Nontarget Native Species of Saturniid Moths , 2000, Conservation biology : the journal of the Society for Conservation Biology.
[258] F. Chapin,et al. Consequences of changing biodiversity , 2000, Nature.
[259] R. Fuller,et al. Local extinctions and changes in species richness of lowland farmland birds in England and Wales in relation to recent changes in agricultural land-use. , 2000 .
[260] P. Raven,et al. Biodiversity: Extinction by numbers , 2000, Nature.
[261] P. Zwick. Phylogenetic system and zoogeography of the Plecoptera. , 2000, Annual review of entomology.
[262] M. Mckinney. High Rates of Extinction and Threat in Poorly Studied Taxa , 1999 .
[263] Anthony Ricciardi,et al. Extinction Rates of North American Freshwater Fauna , 1999 .
[264] Beatriz Arroyo,et al. A review of the abundance and diversity of invertebrate and plant foods of granivorous birds in northern europe in relation to agricultural change , 1999 .
[265] C. Parmesan,et al. Poleward shifts in geographical ranges of butterfly species associated with regional warming , 1999, Nature.
[266] M. Pescador,et al. MAYFLIES (EPHEMEROPTERA) OF NORTH CAROLINA AND SOUTH CAROLINA : AN UPDATE , 1999 .
[267] Thomas M. Brooks,et al. Relative risk of extinction of passerine birds on continents and islands , 1999, Nature.
[268] W. Keller,et al. Effects of Changes in Acidity on Aquatic Insects in Rocky Littoral Habitats of Lakes Near Sudbur y, Ontario , 1998 .
[269] D. Wilcove,et al. QUANTIFYING THREATS TO IMPERILED SPECIES IN THE UNITED STATES , 1998 .
[270] J. Greatorex-Davies,et al. The spread of coarse grasses and changes in numbers of lepidoptera in a woodland nature reserve , 1998 .
[271] S. Miller,et al. Coccinellidae (Coleoptera) In Apple Orchards Of Eastern West Virginia And The Impact Of Invasion By Harmonia Axyridis , 1998 .
[272] H. Mooney,et al. Human Domination of Earth’s Ecosystems , 1997, Renewable Energy.
[273] N. Vaughan. The diets of British bats (Chiroptera) , 1997 .
[274] Arief Lukman Hakim,et al. Managing Tropical Rice Pests Through Conservation of Generalist Natural Enemies and Alternative Prey , 1996 .
[275] Paul J. Van den Brink,et al. Effects of the insecticide dursban® 4E (active ingredient chlorpyrifos) in outdoor experimental ditches: I. Comparison of short‐term toxicity between the laboratory and the field , 1996 .
[276] Paul J. Van den Brink,et al. Effects of the insecticide dursban® 4E (active ingredient chlorpyrifos) in outdoor experimental ditches: II. Invertebrate community responses and recovery , 1996 .
[277] K. Tennessen,et al. Effects of repeated applications of Bacillus thuringiensis israelensis on the mosquito predator Erythemis simplicicollis (Odonata: Libellulidae) from hatching to final instar , 1996 .
[278] Stephen R. Baillie,et al. Population declines and range contractions among lowland farmland birds in Britain , 1995 .
[279] Q. Wheeler. Systematics and BiodiversityPolicies at higher levels , 1995 .
[280] Kong Luen Heong,et al. The role of biodiversity in the dynamics and management of insect pests of tropical irrigated rice—a review , 1994 .
[281] E. Pilling,et al. Synergism between EBI fungicides and a pyrethroid insecticide in the honeybee (Apis mellifera) , 1993 .
[282] Javier Mena,et al. Field effects of ivermectin residues on dung beetles , 1993 .
[283] Alexander S. Flecker,et al. Biodiversity conservation in running waters , 1993 .
[284] D. Pearson,et al. World‐Wide Species Richness Patterns of Tiger Beetles (Coleoptera: Cicindelidae): Indicator Taxon for Biodiversity and Conservation Studies , 1992 .
[285] L. Strong. Avermectins: a review of their impact on insects of cattle dung , 1992 .
[286] Mulla,et al. Effects of pyrethroid insecticides on nontarget invertebrates in aquatic ecosystems , 1992 .
[287] R. J. Mahon,et al. Avermectin residues in sheep and cattle dung and their effects on dung-beetle (Coleoptera: Scarabaeidae) colonization and dung burial , 1991 .
[288] A. Mitchell-Jones. The distribution of bats in Britain 1982-87 as revealed by enquiries , 1990 .
[289] J. Diamond. The present, past and future of human-caused extinctions. , 1989, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[290] H. Turin,et al. Loss of habitats and changes in the composition of the ground and tiger beetle fauna in four West European countries since 1950 (Coleoptera: Carabidae, cicindelidae) , 1989 .
[291] Peter Reichert,et al. Accidental input of pesticides into the Rhine River. , 1988, Environmental science & technology.
[292] P. J. Boer,et al. Changes in the distribution of carabid beetles in The Netherlands since 1880. II. Isolation of habitats and long-term time trends in the occurence of carabid species with different powers of dispersal (Coleoptera, Carabidae)☆ , 1988 .
[293] K. Church,et al. The Partridge: Pesticides, Predation and Conservation , 1986 .
[294] D M Raup,et al. Periodic extinction of families and genera. , 1986, Science.
[295] J. Aubert. L'Atlas des Plécoptères de Suisse — Influence de la pollution , 1984 .
[296] P. Williams. The Distribution and Decline of British Bumble Bees (Bombus Latr.) , 1982 .
[297] D. Pimentel. Species Diversity and Insect Population Outbreaks , 1961 .