Compatibility of a natural enemy, Coleomegilla maculata lengi (Col., Coccinellidae) and four insecticides used against the Colorado potato beetle (Col., Chrysomelidae)

:   The toxicity of four insecticides used to control the Colorado potato beetle, Leptinotarsa decemlineata (Say) (Coleoptera: Chrysomelidae), imidacloprid (Admire®), cryolite (Kryocide®), cyromazine (Trigard®), and Bacillus thuringiensis var. tenebrionis (Novodor®), to one of its natural enemies, t...

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Published inJournal of applied entomology (1986) Vol. 128; no. 3; pp. 233 - 239
Main Authors Lucas, É., Giroux, S., Demougeot, S., Duchesne, R.-M., Coderre, D.
Format Journal Article
LanguageEnglish
Published Berlin, Germany Blackwell Verlag GmbH 01.04.2004
Blackwell
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Online AccessGet full text
ISSN0931-2048
1439-0418
DOI10.1111/j.1439-0418.2004.00843.x

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Abstract :   The toxicity of four insecticides used to control the Colorado potato beetle, Leptinotarsa decemlineata (Say) (Coleoptera: Chrysomelidae), imidacloprid (Admire®), cryolite (Kryocide®), cyromazine (Trigard®), and Bacillus thuringiensis var. tenebrionis (Novodor®), to one of its natural enemies, the 12‐spotted lady beetle, Coleomegilla maculata lengi Timberlake (Coleoptera: Coccinellidae) was determined in the laboratory. Toxicity assays against C. maculata adults and larvae consisted of (1) topical applications and (2) exposures to treated foliage and prey, using concentrations up to 10 times the manufacturer's recommendations. Over a 6‐day period, cyromazine (insect growth regulator) and B. t. var. tenebrionis (microbial insecticide) had no lethal effects on first and third instars C. maculata. For both larval and adult stages, cryolite (inorganic insecticide) caused very low predator mortality when topically applied and moderate mortality when ingested through contaminated eggs of Colorado potato beetles. Imidacloprid (systemic organic insecticide) was highly toxic to adult and larval C. maculata. Its estimated LD50 at 6 days following treatment, corresponded to 0.02–0.09 times the recommended field concentration, depending on the developmental stage and mode of contamination. These results indicate that integrated pest management programmes for Colorado potato beetles using imidacloprid or, to a lesser degree, cryolite, would be detrimental to C. maculata. Cyromazine and B. t. var. tenebrionis seem to present a better compatibility with the protection of C. maculata populations.
AbstractList :   The toxicity of four insecticides used to control the Colorado potato beetle, Leptinotarsa decemlineata (Say) (Coleoptera: Chrysomelidae), imidacloprid (Admire®), cryolite (Kryocide®), cyromazine (Trigard®), and Bacillus thuringiensis var. tenebrionis (Novodor®), to one of its natural enemies, the 12‐spotted lady beetle, Coleomegilla maculata lengi Timberlake (Coleoptera: Coccinellidae) was determined in the laboratory. Toxicity assays against C. maculata adults and larvae consisted of (1) topical applications and (2) exposures to treated foliage and prey, using concentrations up to 10 times the manufacturer's recommendations. Over a 6‐day period, cyromazine (insect growth regulator) and B. t. var. tenebrionis (microbial insecticide) had no lethal effects on first and third instars C. maculata. For both larval and adult stages, cryolite (inorganic insecticide) caused very low predator mortality when topically applied and moderate mortality when ingested through contaminated eggs of Colorado potato beetles. Imidacloprid (systemic organic insecticide) was highly toxic to adult and larval C. maculata. Its estimated LD50 at 6 days following treatment, corresponded to 0.02–0.09 times the recommended field concentration, depending on the developmental stage and mode of contamination. These results indicate that integrated pest management programmes for Colorado potato beetles using imidacloprid or, to a lesser degree, cryolite, would be detrimental to C. maculata. Cyromazine and B. t. var. tenebrionis seem to present a better compatibility with the protection of C. maculata populations.
The toxicity of four insecticides used to control the Colorado potato beetle, Leptinotarsa decemlineata (Say) (Coleoptera: Chrysomelidae), imidacloprid (Admire super( registered )), cryolite (Kryocide super( registered )), cyromazine (Trigard super( registered )), and Bacillus thuringiensis var. tenebrionis (Novodor super( registered )), to one of its natural enemies, the 12-spotted lady beetle, Coleomegilla maculata lengi Timberlake (Coleoptera: Coccinellidae) was determined in the laboratory. Toxicity assays against C. maculata adults and larvae consisted of (1) topical applications and (2) exposures to treated foliage and prey, using concentrations up to 10 times the manufacturer's recommendations. Over a 6-day period, cyromazine (insect growth regulator) and B. t. var. tenebrionis (microbial insecticide) had no lethal effects on first and third instars C. maculata. For both larval and adult stages, cryolite (inorganic insecticide) caused very low predator mortality when topically applied and moderate mortality when ingested through contaminated eggs of Colorado potato beetles. Imidacloprid (systemic organic insecticide) was highly toxic to adult and larval C. maculata. Its estimated LD sub(50) at 6 days following treatment, corresponded to 0.02-0.09 times the recommended field concentration, depending on the developmental stage and mode of contamination. These results indicate that integrated pest management programmes for Colorado potato beetles using imidacloprid or, to a lesser degree, cryolite, would be detrimental to C. maculata. Cyromazine and B. t. var. tenebrionis seem to present a better compatibility with the protection of C. maculata populations.
The toxicity of four insecticides used to control the Colorado potato beetle, Leptinotarsa decemlineata (Say) (Coleoptera: Chrysomelidae), imidacloprid (Admire ® ), cryolite (Kryocide ® ), cyromazine (Trigard ® ), and Bacillus thuringiensis var. tenebrionis (Novodor ® ), to one of its natural enemies, the 12‐spotted lady beetle, Coleomegilla maculata lengi Timberlake (Coleoptera: Coccinellidae) was determined in the laboratory. Toxicity assays against C. maculata adults and larvae consisted of (1) topical applications and (2) exposures to treated foliage and prey, using concentrations up to 10 times the manufacturer's recommendations. Over a 6‐day period, cyromazine (insect growth regulator) and B. t . var. tenebrionis (microbial insecticide) had no lethal effects on first and third instars C. maculata . For both larval and adult stages, cryolite (inorganic insecticide) caused very low predator mortality when topically applied and moderate mortality when ingested through contaminated eggs of Colorado potato beetles. Imidacloprid (systemic organic insecticide) was highly toxic to adult and larval C. maculata . Its estimated LD 50 at 6 days following treatment, corresponded to 0.02–0.09 times the recommended field concentration, depending on the developmental stage and mode of contamination. These results indicate that integrated pest management programmes for Colorado potato beetles using imidacloprid or, to a lesser degree, cryolite, would be detrimental to C. maculata . Cyromazine and B. t . var. tenebrionis seem to present a better compatibility with the protection of C. maculata populations.
Author Giroux, S.
Coderre, D.
Duchesne, R.-M.
Demougeot, S.
Lucas, É.
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  surname: Giroux
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  surname: Demougeot
  fullname: Demougeot, S.
  organization: Département des Sciences Biologiques, Université du Québec à Montréal, Montréal, Québec, Canada
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  givenname: R.-M.
  surname: Duchesne
  fullname: Duchesne, R.-M.
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Issue 3
Keywords Chrysomelidae
Coleoptera
Toxicity
Insecta
Bacillus thuringiensis
Systemic
Bacillaceae
Bacillales
Leptinotarsa decemlineata
Foliage
Bacteria
Developmental stage
Biopesticide
Coleomegilla maculata
Egg
Mortality
Insect growth regulator
Contamination
Recommendation
Prey
Coccinellidae
Lethal dose 50
Larva
Arthropoda
Cyromazine
Predator
Invertebrata
Compatibility
Microbial insecticide
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1994a; 39
1993; 106
1987; 9
1990; 19
1999; 28
1967; 60
1981; 6
1983; 76
2000; 93
1994
1991
1992; 75
1974; 6
1996; 31
1994; 87
1994; 42
1990; 83
1994; 9
1925; 18
1993; 38
1990
1994; 19
1991; 44
1995; 24
1991; 20
1986; 4
1995; 88
1987; 119
1991; 84
1984; 57
1987
1964; 96
1984
1994; 13
1980; 9
1989; 15
1996; 25
1994b; 87
1994; 4
1979; 8
1988
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Ernst G.‐H. (e_1_2_14_16_1) 1994; 42
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Bullock R. C. (e_1_2_14_6_1) 1993; 106
Kaakeh N. (e_1_2_14_27_1) 1996; 31
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LeOra Software (e_1_2_14_32_1) 1987
Pflüger W. (e_1_2_14_38_1) 1991; 44
Abacus Concepts (e_1_2_14_2_1) 1988
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Corbett J. R. (e_1_2_14_9_1) 1984
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Croft B. A. (e_1_2_14_11_1) 1990
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Snippet :   The toxicity of four insecticides used to control the Colorado potato beetle, Leptinotarsa decemlineata (Say) (Coleoptera: Chrysomelidae), imidacloprid...
The toxicity of four insecticides used to control the Colorado potato beetle, Leptinotarsa decemlineata (Say) (Coleoptera: Chrysomelidae), imidacloprid (Admire...
The toxicity of four insecticides used to control the Colorado potato beetle, Leptinotarsa decemlineata (Say) (Coleoptera: Chrysomelidae), imidacloprid (Admire...
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SubjectTerms Bacillus thuringiensis
Bacillus thuringiensis subsp. tenebrionis
Biological and medical sciences
Biological control
biological control agents
Chrysomelidae
Coccinellidae
Coleomegilla maculata
Coleomegilla maculata lengi
Control
cryolite
cyromazine
developmental stages
Fundamental and applied biological sciences. Psychology
imidacloprid
Leptinotarsa decemlineata
mortality
nontarget organisms
Phytopathology. Animal pests. Plant and forest protection
predatory insects
Protozoa. Invertebrates
topical application
toxicity
Title Compatibility of a natural enemy, Coleomegilla maculata lengi (Col., Coccinellidae) and four insecticides used against the Colorado potato beetle (Col., Chrysomelidae)
URI https://api.istex.fr/ark:/67375/WNG-3B3B41SP-8/fulltext.pdf
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https://www.proquest.com/docview/17968036
https://www.proquest.com/docview/46625941
Volume 128
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