Author:
Ravi Rajiv,Rajendran Dinesh,Oh Wen-Da,Mat Rasat Mohd Sukhairi,Hamzah Zulhazman,Ishak Intan H.,Mohd Amin Mohamad Faiz
Abstract
Abstract
Four different tests showed the effectiveness of Azolla pinnata plant extracts against Aedes aegypti and Aedes albopictus mosquitoes. In the adulticidal test, there was a significant increase in mortality as test concentration increases and A. pinnata extracts showed LC50 and LC95 values of 2572.45 and 6100.74 ppm, respectively, against Ae. aegypti and LC50 and LC95 values of 2329.34 and 5315.86 ppm, respectively, against Ae. albopictus. The ovicidal test showed 100% eggs mortality for both species tested for all the concentrations tested at 1500 ppm, 1000 ppm, 500 ppm, 250 ppm and 125 ppm. Both tested samples of Ae. aegypti and Ae. albopictus did not lay any eggs in the plastic cups filled with the A. pinnata extract but instead opted to lay eggs in the plastic cups filled with water during the oviposition deterrence test. Similarly, the non-choice test of Ae. aegypti mosquitoes laid eggs on the sucrose solution meant for the nutrient source of the mosquitoes instead of in the plastic cup that was designed to facilitate oviposition filled with the extract. This clearly indicates the presence of bioactive compounds which are responsible in adulticidal and ovicidal activity in Aedes mosquitoes and at the same time inducing repellence towards the mosquitoes. The LC–MS results showed mainly three important chemical compounds from A. pinnata extracts such as 1-(O-alpha-D-glucopyranosyl)-(1,3R,25R)-hexacosanetriol, Pyridate and Nicotinamide N-oxide. All these chemicals have been used for various applications such as both emulsion and non-emulsion type of cosmetics, against mosquito vector such as Culex pipens and Anopheles spp. Finally, the overall view of these chemical components from A. pinnata extracts has shown the potential for developing natural product against dengue vectors.
Funder
Fundamental Research Grant, Malaysia
Publisher
Springer Science and Business Media LLC
Reference19 articles.
1. Peng, Z. et al. Immune responses to mosquito saliva in 14 individuals with acute systemic allergic reactions to mosquito bites. J Allergy Clin Immunol 114, 1189–1194 (2004).
2. McKerr, C., Lo, Y.-C., Edeghere, O. & Bracebridge, S. Evaluation of the national notifiable diseases surveillance system for dengue fever in Taiwan, 2010–2012. PLoS Negl. Trop Dis 9, e0003639 (2015).
3. Zaki, R. et al. Public perception and attitude towards dengue prevention activity and response to dengue early warning in Malaysia. PLoS ONE 14, e0212497 (2019).
4. Ravi, R. et al. Chemical composition and larvicidal activities of Azolla pinnata extracts against Aedes (Diptera: Culicidae). PLoS ONE 13, e0206982 (2018).
5. Ranson, H., Burhani, J., Lumjuan, N. & Black IV, W. C. Insecticide resistance in dengue vectors. TropIKA 1.
http://journal.tropika.net/pdf/tropika/v1n1/a03v1n1.pdf
(2010).
Cited by
14 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献