DEET (N,N-diethyl-meta-toluamide)/PMD (para-menthane-3,8-diol) repellent-treated mesh increases Culicoides catches in light traps
Biting midges ( Culicoides spp.) are vectors of bluetongue and Schmallenberg viruses. Treatment of mesh barriers is a common method for preventing insect-vectored diseases and has been proposed as a means of limiting Culicoides ingression into buildings or livestock transporters. Assessments using a...
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Veröffentlicht in: | Parasitology research (1987) 2016-09, Vol.115 (9), p.3543-3549 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Biting midges (
Culicoides
spp.) are vectors of bluetongue and Schmallenberg viruses. Treatment of mesh barriers is a common method for preventing insect-vectored diseases and has been proposed as a means of limiting
Culicoides
ingression into buildings or livestock transporters. Assessments using animals are costly, logistically difficult and subject to ethical approval. Therefore, initial screening of test repellents/insecticides was made by applying treatments to mesh (2 mm) cages surrounding Onderstepoort light traps. Five commercial treatments were applied to cages as per manufacturers’ application rates: control (water), bendiocarb, DEET/
p
-menthane-3,8-diol (PMD) repellent, Flygo (a terpenoid based repellent) and lambda-cyhalothrin. The experimental design was a 5 × 5 Latin square, replicated in time and repeated twice. Incongruously, the traps surrounded by DEET/PMD repellent-treated mesh caught three to four times more Obsoletus group
Culicoides
(the commonest midge group) than the other treatments. A proposed hypothesis is that Obsoletus group
Culicoides
are showing a dose response to DEET/PMD, being attracted at low concentrations and repelled at higher concentrations but that the strong light attraction from the Onderstepoort trap was sufficient to overcome close-range repellence. This study does not imply that DEET/PMD is an ineffective repellent for
Culicoides
midges in the presence of an animal but rather that caution should be applied to the interpretation of light trap bioassays. |
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ISSN: | 0932-0113 1432-1955 |
DOI: | 10.1007/s00436-016-5119-x |