352
Views
1
CrossRef citations to date
0
Altmetric
Plants and perfumes

Fumigant toxicity of some essential oils and eucalyptol on different life stages of Tribolium confusum (Coleoptera: Tenebrionidae)

, , &
Pages 3-14 | Received 11 Aug 2021, Accepted 15 Sep 2021, Published online: 29 Sep 2021

References

  • Abbott, WS. 1925. A method of computing the effectiveness of an insecticide. J Econ Entomol. 18:265–267. doi:10.1093/jee/18.2.265a.
  • Abdelgaleil, SAM, MIE Mohamed, MEI Badawy, SAA El-arami. 2009. Fumigant and contact toxicities of monoterpenes to Sitophilus oryzae (L.) and Tribolium castaneum (Herbst) and their inhibitory effects on acetylcholinesterase activity. J Chem Ecol. 35(5):518–525. doi:10.1007/s10886-009-9635-3.
  • Acheuk, F, W Lakhdari, A Dahliz, K Abdellaoui, M Moukadem, S Allili. 2018. Toxicity, acethylcolinesterase and glutathione S-Transferase effects of Halocnemum strobilaceum crude extract against Tribolium Castaneum. J Agric For. 64:23–33.
  • Alanko, K, T Tuomi, M Vanhanen, M Pajari-Backas, L Kanerva, K Havu, K Saarinen, DP Bruynzeel. 2000. Occupational IgE-mediated allergy to Tribolium confusum (confused flour beetle). Allergy. 55(9):879–882. doi:10.1034/j.1398-9995.2000.00572.x.
  • Alaoui-Jamali, C, A Kasrati, D Leach, A Abbad. 2016. Étude comparative de l’activité insecticide des huiles essentielles des espèces de thyms originaires du Sud-Ouest marocain. Phytothérapie. 1–7.
  • Al-Jabr, AM. 2006. Toxicity and repellency of seven plant essential oils to oils to Oryzaephilus surinamensis (Coleoptera: silvanidae) and Tribolium castaneum (Coleoptera: tenebrioidae). Sci J King Faisal Univ Basic Appl Sci. 7:49–60.
  • Amoura, M, A Benabdallah, S Kilani-Morakchi, C Messaoud. 2021. Fumigant and repellent potentials of Mentha pulegium L. and Citrus limon L. (Burm) essential oils against Tribolium confusum Duval. (Coleoptera: tenebrionidae). J Entomol Res. 45(1):73–80. doi:10.5958/0974-4576.2021.00012.8.
  • Anyim, A, DN Aghale. 2017. Review on pesticides safety on stored products in Nigeria. J Agric Sci Pract. 2(5):90–96. doi:10.31248/JASP2017.060.
  • Athanassiou, CG, TW Phillips, MJ Aikins, MM Hasan, JE Throne. 2012. Effectiveness of sulfuryl fluoride for control of different life stages of stored-product psocids (Psocoptera). J Econ Entomol. 105(1):282–287. doi:10.1603/EC11209.
  • Bakkali, F, S Averbeck, D Averbeck, M Idaomar. 2008. Biological effects of essential oils – a review. Food ChemToxicol. 46:446–475.
  • Barney, RJ, JD Sedlacek, M Siddiqui, BD Price. 1991. Quality of stored corn (maize) as influenced by Sitophilus zeamais Motsch. and several management practices. J Stored Prod Res. 27(4):225–237. doi:10.1016/0022-474X(91)90005-W.
  • Boukraa, N, S Ladjel, MB Goudjil, A Eddoud, KWM Sanori. 2020. Chemical compositions, fumigant and repellent activities, of essential oils from three indigenous medicinal plants and their mixture, against stored grain pest, Tribolium castaneum (Herbst) (Coleoptera: tenebrionidae). Asian J Res Chem. 13(6):455–464. doi:10.5958/0974-4150.2020.00081.4.
  • Bounechada, M, R Arab. 2011. Effet insecticide des plantes. Agronomie. 1:1–6.
  • Bounoua-Fraoucene, S, A Kellouche, JF Debras. 2019. Toxicity of four essential oils against two insect pests of stored grains, Rhyzopertha dominica (Coleoptera: bostrychidae) and Sitophilus oryzae (Coleoptera: curculionidae). Afr Entomol. 27(2):344–359. doi:10.4001/003.027.0344.
  • Brette, C. 2001. Contrôle de la qualité des céréales et des protéagineux: guide pratique. 2ème ed. Paris: Arvalis. “p.73”.
  • Cato, A, E Afful, MK Nayak, TW Phillips. 2019. Evaluation of knockdown bioassay methods to assess phosphine resistance in the red flour beetle, Tribolium castaneum (Herbst) (Coleoptera: tenebrionidae). Insects. 10(5):1–11. doi:10.3390/insects10050140.
  • Chomchalow, N. 2003. Protection of stored products with special reference to Thailand. AU JT. 7(1):31–47.
  • Cruz, JF, A Diop. 1989. Génie agricole et développement: techniques d’entreposage. Rome: FAO. “p.1–2”.
  • Ebadollahi, A, MH Safalizadenh, AA Pourmirza, G Nouri-Ganbalani. 2010. Comparison of fumigant toxicity of Eucalyptus globulus Labill and Lavandula stoechas L. oils against different stages of Tribolium castaneum Herbst. Indian J Agric Res. 44:26–31.
  • Erler, F. 2005. Fumigant activity of six monoterpenoids from aromatic plants in Turkey against the two stored-product pests confused flour beetle, Tribolium confusum, and Mediterranean flour moth, Ephestia kuehniella. J Plant Dis Protect. 112:602–611. doi:10.1007/BF03356158.
  • Guettal, S, S Tine, F Tine-Djebbar, N Soltani. 2020. Evaluation of Citrus limonum (Sapindales: rutaceae) L. essential oil as protectant against the granary weevil, Sitophilus granarius (L.) (Coleoptera: curculionidae). Allelopathy J. 51(1):79–92. doi:10.26651/allelo.j/2020-51-1-1292.
  • Guettal, S, S Tine, K Hamaidia, F Tine-Djebbar, N Soltani. 2021. Effect of Citrus limonum essential oil against granary weevil, Sitophilus granarius and its chemical composition, biological activities and energy reserves. Int J Trop Insect Sci. 41(2):1531–1541. doi:10.1007/s42690-020-00353-y.
  • Guèye, TM, D Seck, JP Wathelet, G Lognay. 2011. Lutte contre les ravageurs des stocks de céréales et de légumineuses au Sénégal et en Afrique occidentale: synthèse bibliographique. Biotechnol Agron Soc Env. 15:183–194.
  • Gurusubramanian, G, SS Krishna. 1996. The effects of exposing eggs of four cotton insect pests to volatiles of Allium sativum (Liliaceae). Bull Entomol Res. 86(1):29–31. doi:10.1017/S0007485300052160.
  • Hedjal-Chebheb, M, K Toudert-Taleb, ML Khoudja, R Benabdesselam, M Mellouk, A Kellouche. 2013. Essential Oils Compositions of Six Conifers and Their Biological Activity Against the Cowpea Weevil, Callosobruchus maculatus Fabricius, 1775 (Coleoptera: bruchidae) and Vigna unguiculata Seeds. Afr Entomol. 21:243–254. doi:10.4001/003.021.0215.
  • Houghton, PJ, Y Ren, MJ Howes. 2006. Acetylcholinesterase inhibitors from plants and fungi. Nat Prod Rep. 23:181–199. doi:10.1039/b508966m.
  • Işikber, AA, H Tunaz, MK Er, Ö Sağlam. 2019. Fumigant toxicity of mustard essential oil and its main compound alone and combinations with modified atmosphere treatments against Tribolium confusum du Val., 1863 (Coleoptera: tenebrionidae). Turk J Entomol. 43:179–187. doi:10.16970/entoted.533655.
  • Isman, MB. 2000. Plant essential oils for pest and disease management. Crop Prot. 19(8–10):603–608. doi:10.1016/S0261-2194(00)00079-X.
  • Isman, MB. 2019. Commercial development of plant essential oils and their constituents as active ingredients in bioinsecticides. Phytochem Rev. 19:235–241. doi:10.1007/s11101-019-09653-9.
  • Kasrati, A, C Alaoui Jamali, K Bekkouche, H Wohlmuth, D Leach, A Abbad. 2015. Comparative evaluation of antioxidant and insecticidal properties of essential oils from five Moroccan aromatic herbs. J Food Sci Technol. 52:2312–2319. doi:10.1007/s13197-014-1284-z.
  • Kellouche, A, F Ait-Aider, K Labdaoui, D Moula, K Ouendi, N Hamadi, A Ouramdane, B Frerot, M Mellouk. 2010. Biological activity of ten essential oils against cowpea beetle, Callosobruchus maculatus Fabricius (Coleoptera: bruchidae). Int J Integr Biol. 10:86–89.
  • Kellouche, A, N Soltani. 2004. Activité biologique des poudres de cinq plantes et de l’huile essentielle d’une d’entre elles sur Callosobruchus maculatus (F.). Int J Trop Insect Sci. 24:184–191. doi:10.1079/IJT200420.
  • Kellouche, A, N Soltani, J Huignard. 2004. Activité de reproduction et capacité de développement de la descendance de Callosobruchus maculatus (Fabricius) (Coleoptera: bruchidae) dans les graines de différents cultivars de Vigna unguiculata (Walp.) et Cicer arietum (L.). Int J Trop Insect Sci. 24:304–310. doi:10.1079/IJT200437.
  • Khani, A, F Basavand. 2012. Chemical composition and insecticidal activity of myrtle (Myrtus communis L.) essential oil against two stored-product pests. J Med Plants Prod. 2:83–89.
  • Kheloul, L, A Kellouche, D Bréard, M Gay, C Gadenne, S Anton. 2019. Trade-off between attraction to aggregation pheromones and repellent effects of spike lavender essential oil and its main constituent linalool in the flour beetle Tribolium confusum. Entomol Exp Appl. 167:826–834. doi:10.1111/eea.12831.
  • Kheloul, L, S Anton, C Gadenne, A Kellouche. 2020. Fumigant toxicity of Lavandula spica essential oil and linalool on different life stages of Tribolium confusum (Coleoptera: tenebrionidae). J Asia-Pac Entomol. 23(2):320–326. doi:10.1016/j.aspen.2020.02.008.
  • Lee, BH, SE Lee, PC Annis, SJ Pratt, BS Park, F Tumaalii. 2002. Fumigant toxicity of essential oils and monoterpenes against the red flour beetle, Tribolium castaneum Herbst. J Asia-Pac Entomol. 5:237–240. doi:10.1016/S1226-8615(08)60158-2.
  • Lis, LB, T Bakuła, M Baranowski, AC zarnewicz. 2011. The carcinogenic effects of benzoquinones produced by the flour beetle. Pol J Vet Sci. 14:159–164. doi:10.2478/v10181-011-0025-8.
  • Mohammed, HH. 2013. Repellency of ethanolic extract of some indigenous plants against Tribolium confusum (du val) (Coleoptera: tenebrionidae). J Agric Vet Sci. 2:27–31.
  • Mohamed, A, B Olfa, J Mediouni Ben Jemâa, SH Hamdi, A Manef. 2018. Comparative insecticidal activity of Mentha pulegium L. and Thymus capitatus Hoff. Et Link. essential oils against the red flour beetle: Tribolium castaneum (Herbst) (Coleoptera, Tenebrionidae). J Chem Phar. Res. 10:32–39. doi:10.3329/jbs.v14i0.441.
  • Mondal, M, M Khalequzzaman. 2006. Toxicity of Essential Oils Against Red Flour Beetle, Tribolium castaneum (Herbst) (Coleoptera: tenebrionidae). J Bio-Sci. 14:43–48. doi:10.3329/jbs.v14i0.441.
  • Mondal, M, M Khalequzzaman. 2009. Ovicidal Activity of Essential Oils against Red Flour Beetle, Tribolium castaneum (Coleoptera: tenebrionidae). J Bio-Sci. 17:57–62. doi:10.3329/jbs.v17i0.7102.
  • Nattudurai, G, MG Paulraj, S Ignacimuthu. 2012. Fumigant toxicity of volatile synthetic compounds and natural oils against red flour beetle Tribolium castaneum (Herbst) (Coleopetera: tenebrionidae). J King Saud Univ Sci. 24:153–159. doi:10.1016/j.jksus.2010.11.002.
  • Ndomo, AF, AL Tapondjou, F Tendonkeng, FM Tchouanguep. 2009. Evaluation des propriétés insecticides des feuilles de Callistemon viminalis (Myrtaceae) contre les adultes d’Aconthoscelides obtectus (Say) (Coleoptera; Bruchidae). Tropicultura. 27:137–143.
  • Ngamo, LST, T Hance. 2007. Diversité des ravageurs des denrées et méthodes alternatives de lutte en milieu tropical. Tropicultura. 25:215–220.
  • Ngamo, TSL, MB Ngassoum, PM Mapongmestsem, WF Noudjou, F Malaisse, E Haubruge, G Lognay, H Kouninki, T Hance. 2007. Use of essential oils of aromatic plants as protectant of grains during storage. Agri cJ. 2:204–209.
  • Papachristos, DP, DC Stamopoulos. 2002. Toxicity of vapours of three essential oils to the immature stages of Acanthoscelides obtectus (Say) (Coleoptera: bruchidae). J Stored Prod Res. 38:365–373. doi:10.1016/S0022-474X(01)00038-8.
  • Raveau, R, J Fontaine, A Lounès-Hadj Sahraoui. 2020. Essential oils as potential alternative biocontrol products against plant pathogens and weeds: a review. Foods. 9:1–31. doi:10.3390/foods9030365.
  • Regnault-Roger, C. 1997. The potential of botanical essential oils for insect pest control. Integr Pest Manage Rev. 2:25–34. doi:10.1023/A:1018472227889.
  • Regnault-Roger, C. 2011. Biocontrôle des Bruchinae par les substances végétales: méthodologies et application. In J Huignard, A Glitho, J P Monge, C Regnault-Roger, editors. Insectes ravageurs des graines de légumineuses: biologie des Bruchinae et lutte raisonnée en Afrique. Versailles: Quae; p. 94.
  • Riudavets, J, C Castañé, O Alomar, MJ Pons, R Gabarra. 2010. The use of carbon dioxide at high pressure to control nine stored-product pests. J Stored Prod Res. 46:228–233. doi:10.1016/j.jspr.2010.05.005.
  • Rozman, V, I Kalinović, Z Korunić. 2007. Toxicity of naturally occurring compounds of Lamiaceae and Lauraceae to three stored-product insects. J Stored Prod Res. 43:349–355. doi:10.1016/j.jspr.2006.09.001.
  • Sağlam, Ö, N Özder. 2013. Fumigant toxicity of monoterpenoid compounds against the confused flour beetle, Tribolium confusum Jacquelin du Val. (Coleoptera: tenebrionidae). Türk Entomol Derg. 37:457–466.
  • Saroukolai, AT, S Moharramipour, MH Meshkatalsadat. 2010. Insecticidal properties of Thymus persicus essential oil against Tribolium castaneum and Sitophilus oryzae. J Pest Sci. 83:3–8. doi:10.1007/s10340-009-0261-1.
  • Senfi, F, MH Safaralizadeh, SA Safavi, S Aramideh. 2014. Fumigant toxicity of Laurus nobilis and Myrtus communis essential oils on larvae and adults of the Red flour beetle, Tribolium castaneum Herbst (Col.: tenebrionidae). Arch Phytopathol Plant Protect. 47:472–476. doi:10.1080/03235408.2013.812819.
  • Shaaya, E, U Ravid, N Paster, B Juven, U Zisman, V Pissarev. 1991. Fumigant toxicity of essential oils against four major stored-product insects. J Chem Ecol. 17:499–504. doi:10.1007/BF00982120.
  • Tabti, L, MEA Dib, B Tabti, J Costa, A Muselli. 2020. Insecticidal activity of essential oils of Pistacia atlantica Desf. and Pistacia lentiscus L. against Tribolium confusum Dul. J Appl Biotechnol Rep. 7:111–115.
  • Tine, S, N Sayada, F Tine-Djebbar, N Soltani. 2021. Chemical composition and activity of Lavandula angustifolia essential oil against stored-product pest Rhyzopertha dominica (F.) (Coleoptera: bostrichidae): fumigant toxicity, food intake and digestive enzymes. In M Ksibi, et al, editors. Recent advances in environmental science from the euro-mediterranean and surrounding regions. 2nd ed. Tunisia: Springer International Publishing; p. 1491–1500.
  • Toudert-Taleb, K, M Hedjal-Chebheb, H Hami, JF Debras, A Kellouche. 2014. Composition of essential oils extracted from six aromatic plants of Kabylian origin (Algeria) and evaluation of their bioactivity on Callosobruchus maculatus (Fabricius, 1775) (Coleoptera: bruchidae). Afr Entomol. 22:417–427.
  • Tripathi, AK, VPrajapati, KK Aggarwal, S Kumar. 2001. Toxicity, Feeding Deterrence, and Effect of Activity of 1,8-Cineole from Artemisia annuaon Progeny Production of Tribolium castanaeum(Coleoptera: Tenebrionidae), J Econ Entomol. 94:979–983. doi:10.1603/0022-0493-94.4.979
  • Tripathi, AK, V Prajapati, KK Aggarwal, SPS Khanuja, S Kumar. 2000. Repellency and Toxicity of Oil from Artemisia annua to Certain Stored-Product Beetles. J Econ Entomol. 93:43–47. doi:10.1603/0022-0493-93.1.43.
  • Verdeguer, M, AM Sánchez-Moreiras, F Araniti. 2020. Phytotoxic effects and mechanism of action of essential oils and terpenoids. Plants. 9:1–52. doi:10.3390/plants9111571.
  • Ziaee, M, S Moharramipour, AM Mohsenifar. 2014. Toxicity of Carum copticum essential oil-loaded nanogel against Sitophilus granarius and Tribolium confusum. J Appl Entomol. 138:763–771. doi:10.1111/jen.12133.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.