Comparison of the Insecticidal Characteristics of Commercially Available Plant Essential Oils Against<i>Aedes aegypti</i>and<i>Anopheles gambiae</i>(Diptera: Culicidae)

Сравнение инсектицидных свойств коммерчески доступных растительных эфирных масел против Aedes aegypti и Anopheles gambiae (Diptera: Culicidae)
Lyric C. Bartholomay, Edmund J. Norris, Joel R. Coats, Aaron D. Gross, Brendan M. Dunphy, Steven Bessette
2015-07-12

Aedes aegyptiAnopheles gambiaeGC/MS chemical profilingplant essential oilstopical LD50 and 1-h knockdown
Aedes aegypti and Anopheles gambiae are two mosquito species that represent significant threats to global public health as vectors of Dengue virus and malaria parasites, respectively. Although mosquito populations have been effectively controlled through the use of synthetic insecticides, the emergence of widespread insecticide-resistance in wild mosquito populations is a strong motivation to explore new insecticidal chemistries. For these studies, Ae. aegypti and An. gambiae were treated with commercially available plant essential oils via topical application. The relative toxicity of each essential oil was determined, as measured by the 24-h LD(50) and percentage knockdown at 1 h, as compared with a variety of synthetic pyrethroids. For Ae. aegypti, the most toxic essential oil (patchouli oil) was ∼1,700-times less toxic than the least toxic synthetic pyrethroid, bifenthrin. For An. gambiae, the most toxic essential oil (patchouli oil) was ∼685-times less toxic than the least toxic synthetic pyrethroid. A wide variety of toxicities were observed among the essential oils screened. Also, plant essential oils were analyzed via gas chromatography/mass spectrometry (GC/MS) to identify the major components in each of the samples screened in this study. While the toxicities of these plant essential oils were demonstrated to be lower than those of the synthetic pyrethroids tested, the large amount of GC/MS data and bioactivity data for each essential oil presented in this study will serve as a valuable resource for future studies exploring the insecticidal quality of plant essential oils.
1
A wide range of toxicities was observed across the screened essential oils, indicating substantial variation in insecticidal potential among plant oils.
2
GC/MS analysis identified major components of each essential oil, and the combined chemical and bioactivity dataset is presented as a resource for future insecticidal studies.
3
Patchouli oil was the most toxic essential oil tested: ~1,700-times less toxic than the least toxic synthetic pyrethroid (bifenthrin) against Ae. aegypti.
4
Patchouli oil was the most toxic essential oil tested: ~685-times less toxic than the least toxic synthetic pyrethroid against An. gambiae.
5
Topical application of commercially available plant essential oils showed measurable insecticidal activity against Aedes aegypti and Anopheles gambiae, assessed by 24-h LD50 and 1-h knockdown.

Commercially available plant essential oils applied to Aedes aegypti and Anopheles gambiae mosquitoes

Insecticidal characteristics: relative toxicity (24-h LD50), 1-h knockdown percentage, and chemical composition (GC/MS-identified major components) of the essential oils compared to synthetic pyrethroids

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2015-07-12
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Lyric C. Bartholomay
Edmund J. Norris
Joel R. Coats
Aaron D. Gross
Brendan M. Dunphy
Steven Bessette
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