Study of the Insecticidal Activity of Essential Oils from Erythrophleum guineense and Uvaria chamae on the Peanut Weevil Caryedon serratus Ol. (Coleoptera, Bruchidae)
The objective of this research is to examine the toxicity of Erythrophleum guineense and Uvaria chamae essential oils on peanut weevils. Contact testing on peanut seeds was carried out on adult C. serratus for 144 hours at an ambient temperature of 30?C in the laboratory. It has been shown that C. serratus weevils exhibited a toxic mortality rate of 5.65 ± 0.5%, at 0.2 μl, and of Erythrophleum guineense, at the same dose of 0.2 μl of Uvaria chamae exhibited a toxic mortality rate of 8.50 ± 0.55a (like average lifespan in days). However, he was observed during this work, that an increase in doses resulted in a decrease in the toxic effect. This can be probably due either: insects’ adaptation or insect avoidance behavior at high doses of the extracts used. The essential oils cause 100% mortality when the highest dose is used, i.e. 0.8 μl after 2 days for Erythrophleum guineense and 0.8 μl after 4 days for Uvaria chamae. These substances have a protective effect on treated peanut seeds, as the weight losses observed are minimal at the highest doses and the germination capacity of the seeds remains intact. This study shows that the essential oils of Erythrophleum guineense and Uvaria chamae have insecticidal properties on adult C. serratus.
References
[1]
Fletcher, S.M. and Shi, Z. (2016) An Overview of World Peanut Markets. In: Stalker, H.T. and Wilson, R.F., Eds., Peanuts, Elsevier, 267-287. https://doi.org/10.1016/b978-1-63067-038-2.00010-1
[2]
FAO (2022) Crops and Livestock Products. FAOSTAT Database. Food and Agriculture Organization of the United Nations. https://www.fao.org/faostat/en/#data/QCL
[3]
Sylla, A.S., Sakho, A.M., Diallo, A. and Keita, A. (2024) Evaluation of the Insecticidal Effects of Aqueous Extracts of the Leaves of: Erythrophleumguineense and Uvariachamae against Caryedon serratus Ol. (Coleoptera, Bruchidae), an Insect Pest of Groundnut Grains in the Republic of Guinea. JournalofEnvironmentalScienceandEngineeringA, 13, 199-206. https://doi.org/10.17265/2162-5298/2024.06.002
[4]
Mason, A., Lee, R., Abrigo, M. and Lee, S.H. (2017) Support Ratios and Demographic Dividends: Estimates for the World. United Nations Department of Economic and Social Affairs, Population Division, Technical Paper No. 2017/47, 47 p.
[5]
Diagne, A., Diop, B.N., Ndiaye, P.M., Andreazza, C. and Sembene, M. (2019) Efficacy of Silica Nanoparticles on Groundnut Bruchid, Caryedon serratus (Olivier) (Coleoptera, Bruchidae). AfricanCropScienceJournal, 27, 229-235. https://doi.org/10.4314/acsj.v27i2.8
[6]
Kalpna, Y.A., Hajam, Y.A. and Kumar, R. (2022) Management of Stored Grain Pest with Special Reference to Callosobruchus Maculatus, a Major Pest of Cowpea: A Review. Heliyon, 8, e08703. https://doi.org/10.1016/j.heliyon.2021.e08703
[7]
Ngegba, P.M., Cui, G., Khalid, M.Z. and Zhong, G. (2022) Use of Botanical Pesticides in Agriculture as an Alternative to Synthetic Pesticides. Agriculture, 12, Article No. 600. https://doi.org/10.3390/agriculture12050600
[8]
Goucem-Khalfane, K. (2014) Study of the Insecticidal Activity of Essential Oils and Powders of Some Plants against the Bean Weevil Acanthoscelides obtectus Say (Coleoptera: Chrysomelidae, Bruchinae) and the Behavior of This Pest towards Volatile Compounds of Different Host Plant Varieties (Phaseolus vulgaris L.). Doctoral Thesis (State Doctorate) in Biological Sciences, Ecology and Population Biology, U.M.M.T.O., 144 p.
[9]
Chebari, S., Ouartsi, A. and Rehahlia, R. (2020) Bio-Insecticidal Effect of Essential Oils of Lantana (Lantanacamara) and Nettle (Urticadioica) on a Stored-Product Pest Ephestiakuehniella (Zeller). Master’s Thesis in Agronomic Sciences, University of Guelma, 52 p.
[10]
Koroghli, K. (2018) Insecticidal Activity of Essential Oils of Rosemary (Rosmarinus officinalis L.) and Peppermint (Menthapiperita L.) against the Lesser Grain Borer Rhyzoperthadominica F. (Coleoptera: Bostrychidae). Master’s Thesis in Biological Sciences, U.M.M.T.O., 58 p.
[11]
Hedjal-Chebheb, M. (2014) Identification of Active Compounds of Essential Oils from Some Coniferous and Aromatic Plants of Algerian and Tunisian Origin and Study of Their Biological Activity against a Stored Seed Pest Callosobruchusmaculatus F. 1775 (Coleoptera: Bruchidae). Doctoral Thesis (State Doctorate) in Biological Sciences, Applied Entomology, U.M.M.T.O., 99 p.
[12]
Aryal, S., Poudel, A., Kafle, K. and Aryal, L.N. (2023) Insecticidal Toxicity of Essential Oil of Nepalese Acorus Calamus against Sitophiluszeamais (Coleoptera: Curculionidae). SSRN, 26 p.
[13]
Chabni, S. and Belabbas, A. (2022) Insecticidal Activity of Essential Oils of Sage (Salviaofficinalis L.) and Peppermint (Menthapiperita L.) against Adults of the Chinese Bruchid Callosobruchus chinensis L. (Coleoptera: Chrysomelidae). Master’s Thesis in Agronomic Sciences, Mouloud Mammeri University of Tizi-Ouzou, 82 p.
[14]
Taleb-Toudert (2015) Extraction and Characterization of Essential Oils from Ten Aromatic Plants from the Kabylia Region (Northern Algeria) and Evaluation of Their Effects on the Cowpea Weevil Callosobruchusmaculatus (Coleoptera: Bruchidae). Doctoral Thesis in Biological Sciences, U.M.M.T.O., 206 p.