Essential Oils of Echinophora lamondiana (Apiales: Umbelliferae): A Relationship Between Chemical Profile and Biting Deterrence and Larvicidal Activity Against Mosquitoes (Diptera: Culicidae)
Эфирные масла Echinophora lamondiana (Apiales: Umbelliferae): связь между химическим составом и отпугивающим действием при укусах и ларвицидной активностью против комаров (Diptera: Culicidae)
2015-01-01
SCID: 54.1/n9byy4kp
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Echinophora lamondiana essential oilsbiting deterrence and larvicidal activity against Aedes aegypti and Anopheles quadrimaculatusterpinoleneα-phellandreneδ-3-carene
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Abstract (AI)
The essential oils from the flower, leaf, and stem of Echinophora lamondiana B.Yildiz et Z.Bahcecioglu were analyzed by gas chromatography-flame ionization detection and gas chromatography-mass spectrometry. In total, 41, 37, and 44 compounds were identified, which accounted for 98.0, 99.1, and 97.0% of flower, leaf, and stem essential oils, respectively. The monoterpenic hydrocarbons were found to be high in all samples of the essential oils. The major components of essential oils from flower, leaf, and stem of E. lamondiana were δ-3-carene (61.9, 75.0, and 65.9%, respectively), α-phellandrene (20.3, 14.1, and 12.8%, respectively), and terpinolene (2.7, 3.3, and 2.9%, respectively). Flower and leaf essential oils and terpinolene produced biting deterrence similar to 25 nmol/cm(2) N, N-diethyl-meta-toluamide (DEET; 97%) against Aedes aegypti (L.) and Anopheles quadrimaculatus Say. Compounds (+)-δ-3-carene, (R)-(-)-α-phellandrene, and water-distilled essential oils were significantly less repellent than DEET. Among essential oils, leaf oil was the least toxic of the oils, with an LC50 value of 138.3 ppm, whereas flower essential oil killed only 32% larvae, and no mortality of stem oil at highest tested dosages against Ae aegypti was observed. Terpinolene and α-phellandrene showed higher toxicity than δ-3-carene in both the species. In contrast to Ae. aegypti, all the essential oils showed toxicity in An. quadrimaculatus, and toxicity was higher in leaf oil than the other two oils. These results could be useful in finding new, safe, and more effective natural biopesticides and biting deterrent or repellents against Ae. aegypti.
Key Findings
1
All essential oils showed toxicity against Anopheles quadrimaculatus, with leaf oil exhibiting higher toxicity than flower and stem oils, unlike the pattern in Ae. aegypti.
2
Essential oils from flower, leaf, and stem of Echinophora lamondiana were chemically profiled, identifying 41, 37, and 44 compounds covering 98.0%, 99.1%, and 97.0% of each oil respectively.
3
Flower and leaf essential oils and terpinolene produced biting deterrence against Aedes aegypti and Anopheles quadrimaculatus comparable to 25 nmol/cm2 DEET (97%).
4
Isolated (+)-δ-3-carene, (R)-(-)-α-phellandrene, and water-distilled essential oils were significantly less repellent than DEET.
5
Monoterpenic hydrocarbons dominated all oils, with δ-3-carene (61.9–75.0%), α-phellandrene (12.8–20.3%), and terpinolene (2.7–3.3%) as major components.
6
Toxicity to Ae. aegypti varied: leaf oil LC50=138.3 ppm, flower oil caused 32% larval mortality, and stem oil produced no mortality at highest dosages; terpinolene and α-phellandrene were more toxic than δ-3-carene.
Research Object
Essential oils from the flower, leaf, and stem of Echinophora lamondiana
Research Subject
Relationship between chemical composition (major constituents δ-3-carene, α-phellandrene, terpinolene, etc.) and biological activity: biting deterrence/repellency against Aedes aegypti and Anopheles quadrimaculatus and larvicidal/toxicity effects (LC50, mortality) against mosquito larvae
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2015-01-01
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