Chemical composition and insecticidal activity of plant essential oils from Benin against Anopheles gambiae (Giles)

被引:68
作者
Bossou, Annick D. [1 ,2 ]
Mangelinckx, Sven [2 ]
Yedomonhan, Hounnankpon [3 ]
Boko, Pelagie M. [4 ]
Akogbeto, Martin C. [4 ]
De Kimpe, Norbert [2 ]
Avlessi, Felicien [1 ]
Sohounhloue, Dominique C. K. [1 ]
机构
[1] Univ Abomey Calavi, Ecole Polytech Abomey Calavi, Lab Etude & Rech Chim Appl, Cotonou 01, Benin
[2] Univ Ghent, Fac Biosci Engn, Dept Sustainable Organ Chem & Technol, B-9000 Ghent, Belgium
[3] Univ Abomey Calavi, Herbier Natl Benin, Lab Bot & Ecol Vegetale, Cotonou 01, Benin
[4] Ctr Rech Entomol Cotonou, Cotonou 06, Benin
关键词
Malaria; A; gambiae; Essential oils; Diagnostic dose; Knock-down times; Insecticide; Benin; CULEX-QUINQUEFASCIATUS SAY; CYMBOPOGON-CITRATUS; SECURIDACA-LONGEPEDUNCULATA; EUCALYPTUS-CITRIODORA; MALARIA VECTORS; CHENOPODIUM-AMBROSIOIDES; RESISTANCE MECHANISMS; PYRETHROID RESISTANCE; LARVICIDAL ACTIVITY; S.L; POPULATIONS;
D O I
10.1186/1756-3305-6-337
中图分类号
R38 [医学寄生虫学]; Q [生物科学];
学科分类号
07 ; 0710 ; 09 ; 100103 ;
摘要
Background: Insecticide resistance in sub-Saharan Africa and especially in Benin is a major public health issue hindering the control of the malaria vectors. Each Anopheles species has developed a resistance to one or several classes of the insecticides currently in use in the field. Therefore, it is urgent to find alternative compounds to conquer the vector. In this study, the efficacies of essential oils of nine plant species, which are traditionally used to avoid mosquito bites in Benin, were investigated. Methods: Essential oils of nine plant species were extracted by hydrodistillation, and their chemical compositions were identified by GC-MS. These oils were tested on susceptible "kisumu" and resistant "ladji-Cotonou" strains of Anopheles gambiae, following WHO test procedures for insecticide resistance monitoring in malaria vector mosquitoes. Results: Different chemical compositions were obtained from the essential oils of the plant species. The major constituents identified were as follows: neral and geranial for Cymbopogon citratus, Z-carveol, E-p-mentha-1(7), 8-dien-2-ol and E-p-mentha-2,8-dienol for Cymbopogon giganteus, piperitone for Cymbopogon schoenanthus, citronellal and citronellol for Eucalyptus citriodora, p-cymene, caryophyllene oxide and spathulenol for Eucalyptus tereticornis, 3-tetradecanone for Cochlospermum tinctorium and Cochlospermum planchonii, methyl salicylate for Securidaca longepedunculata and ascaridole for Chenopodium ambrosioides. The diagnostic dose was 0.77% for C. citratus, 2.80% for E. tereticornis, 3.37% for E. citriodora, 4.26% for C. ambrosioides, 5.48% for C. schoenanthus and 7.36% for C. giganteus. The highest diagnostic doses were obtained with S. longepedunculata (9.84%), C. tinctorium (11.56%) and C. planchonii (15.22%), compared to permethrin 0.75%. A. gambiae cotonou, which is resistant to pyrethroids, showed significant tolerance to essential oils from C. tinctorium and S. longepedunculata as expected but was highly susceptible to all the other essential oils at the diagnostic dose. Conclusions: C. citratus, E. tereticornis, E. citriodora, C. ambrosioides and C. schoenanthus are potential promising plant sources for alternative compounds to pyrethroids, for the control of the Anopheles malaria vector in Benin. The efficacy of their essential oils is possibly based on their chemical compositions in which major and/or minor compounds have reported insecticidal activities on various pests and disease vectors such as Anopheles.
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