| Literature DB >> 26392574 |
J T Fu1, L Tang1, W S Li1, K Wang1, D M Cheng2, Z X Zhang3.
Abstract
The red imported fire ant (RIFA) Solenopsis invicta Buren causes severe damage to humans and animals as well as the environment. Chemical treatment is the main strategy of RIFA management, which also is potentially toxic to the environment. Plant essential oils (EOs) are considered as potential substance that can be used to control insects. This study aimed to identify the chemical composition of camphor EO and investigate the insecticidal activity on RIFAs. The chemical composition of the EO was analyzed by gas chromatography/mass spectrometry and gas chromatography with flame ionization detection. Results revealed that 36.61% camphor and 30.05% cineole were the major components. The insecticidal activity of camphor EO was assessed against RIFA workers by conducting two different bioassays: fumigant toxicity and repellence. Fumigant toxicity assay results showed that the lethal dose (LC50) of the EO at 24 h was 1.67 and 4.28 μg/ml for minor and major workers, respectively; knockdown time (KT50) was 10.82 and 14.73 h. At 2.55 μg/ml, the highest average mortality of the ants was 84.89% after 72 h. Camphor EO exhibited fumigant toxicity against minor and major workers as indicated by the effects on attacking, feeding, and climbing behaviors. This EO was also strongly repellent to the two size workers of the colony as observed in their behavior against Tenebrio molitor treated with 5 µl EO. The fumigant toxicity and repellence of camphor EO against RIFA indicated that this substance could be a potential alternative for the development of eco-friendly products used to control pests.Entities:
Keywords: Solenopsis invicta; camphor essential oil; fumigant; repellent
Mesh:
Substances:
Year: 2015 PMID: 26392574 PMCID: PMC4664941 DOI: 10.1093/jisesa/iev112
Source DB: PubMed Journal: J Insect Sci ISSN: 1536-2442 Impact factor: 1.857
Chemical composition of camphor EO
| Composition | RRT (min) | Percentage | ||
|---|---|---|---|---|
| 1 | (1R)-(+)-α-pinene | 7.915 | 2.47 | |
| 2 | Camphene | 8.272 | 1.17 | |
| 3 | Sabinene | 8.898 | 1.92 | |
| 4 | β-Pinene | 8.963 | 1.31 | |
| 5 | 2-N-propylpyridine | 9.282 | 1.14 | |
| 6 | Cineole | 10.265 | 30.02 | |
| 8 | γ-terpinene | 10.697 | 0.50 | |
| 9 | Camphor | 12.55 | 36.61 | |
| 10 | DL-Isoborneol | 12.755 | 1.32 | |
| 11 | Terpinen-4-ol | 12.934 | 3.04 | |
| 12 | α-Terpineol | 13.182 | 5.22 | |
| 13 | Safrole | 14.646 | 5.15 | |
| 14 | α-Santalene | 16.391 | 2.73 | |
| 15 | α-Bergamotene | 16.558 | 0.89 | |
| 16 | 2-methyl-3-methylene -2-(4-methylpent -3-enyl)norbornane | 16.899 | 1.37 | |
| 17 | Cubebene | 17.212 | 0.44 | |
| 18 | Cis-nerolidol | 18.146 | 4.69 | |
RRT, relative retention time.
Fig. 1.Mortality (%) of minor and major workers of RIFAs caused by the camphor EO at 2.55 μg/ml in the fumigation bioassay.
LC50 and LC90 of camphor EO, cineole, and camphor for minor and major RIF workers after 24 h fumigating exposure
| Chemical constituents | Species | LC50 (95% CI) | LC90 (95% CI) | β | χ2 | ||
|---|---|---|---|---|---|---|---|
| Camphor EO | 270 | Minor | 1.67(1.32–2.90) | 2.73(2.36–3.91) | 6.023 | 0.184 | 0.980 |
| 270 | Major | 4.28(3.94–4.63) | 7.29(6.55–8.39) | 5.534 | 4.516 | 0.211 | |
| Cineole | 270 | Minor | 2.34(2.05–2.54) | 3.53(3.18–4.38) | 7.194 | 0.776 | 0.855 |
| 270 | Major | 5.99(5.50–6.70) | 7.70(6.83–9.70) | 11.744 | 0.466 | 0.792 | |
| Camphor | 270 | Minor | 1.91(0.87–2.22) | 2.97(2.69–4.22) | 6.708 | 0.217 | 0.975 |
| 270 | Major | 5.59(4.27–7.08) | 11.06(8.52–17.83) | 4.331 | 4.930 | 0.186 |
LC50 and LC90 were not determined for the species due to the low toxicity (mortality of <30%) observed after 24 h of exposure.
Number of insects.
LC: lethal concentration in μg of EO/ml.
Slope of the curve.
Fig. 2.Feeding rate of medium-sized workers of RIFAs 30 min after fumigation treatment with camphor EO at 10.19 μg/ml on T. molitor.
Fig. 3.Climbing rate of medium-sized workers of RIFAs 30 min after fumigation treatment with camphor EO at 10.19 μg/ml tube (Phelan et al.).
Fig. 5.Attack rate of minor and major workers of RIFAs fumigation treatment 30 min with camphor EO at 10.19 μg/ml along the time on T. molitor.
Fig. 4.Feeding rate of medium-sized workers of RIFAs on T. molitor treated with camphor EO at 5 µl/T. molitor.
Fig. 6.Repellence of the camphor EO to minor and major workers of RIFAs along the time on T. molitor treated with EO at 5 µl/T. molitor.