Patterns of widespread decline in North American bumble bees

Cameron SA, Lozier JD, Strange JP, Koch JB, Cordes N, Solter LF, Griswold TL (2011)
Proceedings of the National Academy of Sciences 108(2): 662-667.

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Autor*in
Cameron, Sydney A.; Lozier, Jeffrey D.; Strange, James P.; Koch, Jonathan B.; Cordes, NilsUniBi ; Solter, Leellen F.; Griswold, Terry L.
Abstract / Bemerkung
Bumble bees (Bombus) are vitally important pollinators of wild plants and agricultural crops worldwide. Fragmentary observations, however, have suggested population declines in several North American species. Despite rising concern over these observations in the United States, highlighted in a recent National Academy of Sciences report, a national assessment of the geographic scope and possible causal factors of bumble bee decline is lacking. Here, we report results of a 3-y interdisciplinary study of changing distributions, population genetic structure, and levels of pathogen infection in bumble bee populations across the United States. We compare current and historical distributions of eight species, compiling a database of >73,000 museum records for comparison with data from intensive nationwide surveys of >16,000 specimens. We show that the relative abundances of four species have declined by up to 96% and that their surveyed geographic ranges have contracted by 23–87%, some within the last 20 y. We also show that declining populations have significantly higher infection levels of the microsporidian pathogen Nosema bombi and lower genetic diversity compared with co-occurring populations of the stable (nondeclining) species. Higher pathogen prevalence and reduced genetic diversity are, thus, realistic predictors of these alarming patterns of decline in North America, although cause and effect remain uncertain.
Erscheinungsjahr
2011
Zeitschriftentitel
Proceedings of the National Academy of Sciences
Band
108
Ausgabe
2
Seite(n)
662-667
ISSN
0027-8424
eISSN
1091-6490
Page URI
https://pub.uni-bielefeld.de/record/2372560

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Cameron SA, Lozier JD, Strange JP, et al. Patterns of widespread decline in North American bumble bees. Proceedings of the National Academy of Sciences. 2011;108(2):662-667.
Cameron, S. A., Lozier, J. D., Strange, J. P., Koch, J. B., Cordes, N., Solter, L. F., & Griswold, T. L. (2011). Patterns of widespread decline in North American bumble bees. Proceedings of the National Academy of Sciences, 108(2), 662-667. https://doi.org/10.1073/pnas.1014743108
Cameron, Sydney A., Lozier, Jeffrey D., Strange, James P., Koch, Jonathan B., Cordes, Nils, Solter, Leellen F., and Griswold, Terry L. 2011. “Patterns of widespread decline in North American bumble bees”. Proceedings of the National Academy of Sciences 108 (2): 662-667.
Cameron, S. A., Lozier, J. D., Strange, J. P., Koch, J. B., Cordes, N., Solter, L. F., and Griswold, T. L. (2011). Patterns of widespread decline in North American bumble bees. Proceedings of the National Academy of Sciences 108, 662-667.
Cameron, S.A., et al., 2011. Patterns of widespread decline in North American bumble bees. Proceedings of the National Academy of Sciences, 108(2), p 662-667.
S.A. Cameron, et al., “Patterns of widespread decline in North American bumble bees”, Proceedings of the National Academy of Sciences, vol. 108, 2011, pp. 662-667.
Cameron, S.A., Lozier, J.D., Strange, J.P., Koch, J.B., Cordes, N., Solter, L.F., Griswold, T.L.: Patterns of widespread decline in North American bumble bees. Proceedings of the National Academy of Sciences. 108, 662-667 (2011).
Cameron, Sydney A., Lozier, Jeffrey D., Strange, James P., Koch, Jonathan B., Cordes, Nils, Solter, Leellen F., and Griswold, Terry L. “Patterns of widespread decline in North American bumble bees”. Proceedings of the National Academy of Sciences 108.2 (2011): 662-667.

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The Bee Microbiome: Impact on Bee Health and Model for Evolution and Ecology of Host-Microbe Interactions.
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Hauer FR, Locke H, Dreitz VJ, Hebblewhite M, Lowe WH, Muhlfeld CC, Nelson CR, Proctor MF, Rood SB., Sci Adv 2(6), 2016
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Has land use pushed terrestrial biodiversity beyond the planetary boundary? A global assessment.
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Gibbs J, Elle E, Bobiwash K, Haapalainen T, Isaacs R., PLoS One 11(7), 2016
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Discovery or Extinction of New Scleroderma Species in Amazonia?
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Bees under stress: sublethal doses of a neonicotinoid pesticide and pathogens interact to elevate honey bee mortality across the life cycle.
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An Economic Valuation of Biotic Pollination Services in Georgia.
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Bifidobacterium commune sp. nov. isolated from the bumble bee gut.
Praet J, Meeus I, Cnockaert M, Aerts M, Smagghe G, Vandamme P., Antonie Van Leeuwenhoek 107(5), 2015
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Direct detection of fungal siderophores on bats with white-nose syndrome via fluorescence microscopy-guided ambient ionization mass spectrometry.
Mascuch SJ, Moree WJ, Hsu CC, Turner GG, Cheng TL, Blehert DS, Kilpatrick AM, Frick WF, Meehan MJ, Dorrestein PC, Gerwick L., PLoS One 10(3), 2015
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Emerging viral disease risk to pollinating insects: ecological, evolutionary and anthropogenic factors
Manley R, Boots M, Wilfert L, Kaplan I., Journal of applied ecology. 52(2), 2015
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The genomes of two key bumblebee species with primitive eusocial organization.
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16S rRNA Amplicon Sequencing Demonstrates that Indoor-Reared Bumblebees (Bombus terrestris) Harbor a Core Subset of Bacteria Normally Associated with the Wild Host.
Meeus I, Parmentier L, Billiet A, Maebe K, Van Nieuwerburgh F, Deforce D, Wäckers F, Vandamme P, Smagghe G., PLoS One 10(4), 2015
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Lowenstein DM, Minor ES., J Econ Entomol 108(3), 2015
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The impact of over 80 years of land cover changes on bee and wasp pollinator communities in England.
Senapathi D, Carvalheiro LG, Biesmeijer JC, Dodson CA, Evans RL, McKerchar M, Morton RD, Moss ED, Roberts SP, Kunin WE, Potts SG., Proc Biol Sci 282(1806), 2015
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The Dependence of Crops for Pollinators and the Economic Value of Pollination in Brazil.
Giannini TC, Cordeiro GD, Freitas BM, Saraiva AM, Imperatriz-Fonseca VL., J Econ Entomol 108(3), 2015
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Bumble Bees (Hymenoptera: Apidae: Bombus spp.) of Interior Alaska: Species Composition, Distribution, Seasonal Biology, and Parasites.
Pampell R, Sikes D, Pantoja A, Holloway P, Knight C, Ranft R., Biodivers Data J (3), 2015
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Vavilova V, Sormacheva I, Woyciechowski M, Eremeeva N, Fet V, Strachecka A, Bayborodin SI, Blinov A., Parasitol Res 114(9), 2015
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Hedtke SM, Blitzer EJ, Montgomery GA, Danforth BN., PLoS One 10(6), 2015
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Commercial Bombus impatiens as reservoirs of emerging infectious diseases in central México
Sachman-Ruiz B, Narváez-Padilla V, Reynaud E., Biol Invasions 17(7), 2015
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Tang M, Hardman CJ, Ji Y, Meng G, Liu S, Tan M, Yang S, Moss ED, Wang J, Yang C, Bruce C, Nevard T, Potts SG, Zhou X, Yu DW., Methods Ecol Evol 6(9), 2015
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Habitat restoration promotes pollinator persistence and colonization in intensively managed agriculture.
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Variable effects of nicotine, anabasine, and their interactions on parasitized bumble bees.
Thorburn LP, Adler LS, Irwin RE, Palmer-Young EC., F1000Res 4(), 2015
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Miller-Struttmann NE, Geib JC, Franklin JD, Kevan PG, Holdo RM, Ebert-May D, Lynn AM, Kettenbach JA, Hedrick E, Galen C., Science 349(6255), 2015
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Relocation risky for bumblebee colonies.
Lozier JD, Cameron SA, Duennes MA, Strange JP, Williams PH, Goulson D, Brown MJ, Morales C, Jepsen S., Science 350(6258), 2015
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Urbanization Increases Pathogen Pressure on Feral and Managed Honey Bees.
Youngsteadt E, Appler RH, López-Uribe MM, Tarpy DR, Frank SD., PLoS One 10(11), 2015
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Possible Synergistic Effects of Thymol and Nicotine Against Crithidia bombi Parasitism in Bumble Bees.
Biller OM, Adler LS, Irwin RE, McAllister C, Palmer-Young EC., PLoS One 10(12), 2015
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Koch JB, Lozier J, Strange JP, Ikerd H, Griswold T, Cordes N, Solter L, Stewart I, Cameron SA., Biodivers Data J (3), 2015
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Commercial bumblebee hives to assess an anthropogenic environment for pollinator support: a case study in the region of Ghent (Belgium).
Parmentier L, Meeus I, Cheroutre L, Mommaerts V, Louwye S, Smagghe G., Environ Monit Assess 186(4), 2014
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Inferring the mode of colonization of the rapid range expansion of a solitary bee from multilocus DNA sequence variation.
Dellicour S, Mardulyn P, Hardy OJ, Hardy C, Roberts SP, Vereecken NJ., J Evol Biol 27(1), 2014
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A quantitative review of pollination syndromes: do floral traits predict effective pollinators?
Rosas-Guerrero V, Aguilar R, Martén-Rodríguez S, Ashworth L, Lopezaraiza-Mikel M, Bastida JM, Quesada M., Ecol Lett 17(3), 2014
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Disease associations between honeybees and bumblebees as a threat to wild pollinators.
Fürst MA, McMahon DP, Osborne JL, Paxton RJ, Brown MJ., Nature 506(7488), 2014
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Avoiding a bad apple: Insect pollination enhances fruit quality and economic value.
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Carper AL, Adler LS, Warren PS, Irwin RE., Environ Entomol 43(2), 2014
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Current ecological understanding of fungal-like pathogens of fish: what lies beneath?
Gozlan RE, Marshall WL, Lilje O, Jessop CN, Gleason FH, Andreou D., Front Microbiol 5(), 2014
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Influence of combined pesticide and parasite exposure on bumblebee colony traits in the laboratory
Fauser‐Misslin A, Sadd BM, Neumann P, Sandrock C, Osborne J., Journal of applied ecology. 51(2), 2014
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Impact of chronic exposure to a pyrethroid pesticide on bumblebees and interactions with a trypanosome parasite
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Cariveau DP, Elijah Powell J, Koch H, Winfree R, Moran NA., ISME J 8(12), 2014
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Sublethal neonicotinoid insecticide exposure reduces solitary bee reproductive success
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McMahon TA, Sears BF, Venesky MD, Bessler SM, Brown JM, Deutsch K, Halstead NT, Lentz G, Tenouri N, Young S, Civitello DJ, Ortega N, Fites JS, Reinert LK, Rollins-Smith LA, Raffel TR, Rohr JR., Nature 511(7508), 2014
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Meeus I, de Miranda JR, de Graaf DC, Wäckers F, Smagghe G., J Invertebr Pathol 121(), 2014
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Sandrock C, Tanadini M, Tanadini LG, Fauser-Misslin A, Potts SG, Neumann P., PLoS One 9(8), 2014
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Nutrition affects survival in African honeybees exposed to interacting stressors
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Hidden diversity in honey bee gut symbionts detected by single-cell genomics.
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Modeling pollinator community response to contrasting bioenergy scenarios.
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Disentangling multiple interactions in the hive ecosystem.
Nazzi F, Pennacchio F., Trends Parasitol 30(12), 2014
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The PREDICTS database: a global database of how local terrestrial biodiversity responds to human impacts.
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Parasite zoonoses and wildlife: One Health, spillover and human activity.
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