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Research Article

Chemical Composition and Bioactivity of Essential Oils from Cymbopogon nardus L. and Rosmarinus officinalis L. Against Ulomoides dermestoides (Fairmaire, 1893) (Coleoptera: Tenebrionidae)

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Pages 547-560 | Received 28 Oct 2020, Accepted 24 May 2021, Published online: 11 Jun 2021

References

  • Benitez, N.P. and Valencia, C.M. (2016). Evaluación de extractos totales como repelente para el control de Tribolium castaneum Herbst, 1979 (Coleoptera: Tenebrionidae). Rev. Biodivers. Neotrop. 6(1): 22-26.
  • FAO. (2020). Conservacion y proteccion de los granos almacenados. http://www.fao.org/3/x5027s/x5027S0h.htm. Accessed date: 22 March 2020.
  • Ansari, M.S., Moraiet, M.A. and Ahmad, S. (2014). Insecticides: impact on the environment and human health. In: Malik A., Grohmann E., Akhtar R. (eds) Environmental deterioration and human health, Springer, Dordrecht. p. 99-123. https://doi.org/10.1007/978-94-007-7890-0_6
  • Upadhyay, N., Dwivedy, A.K., Kumar, M., Prakash, B. and Dubey, N.K. (2018). Essential oils as eco-friendly alternatives to synthetic pesticides for the control of Tribolium castaneum (Herbst) (Coleoptera: Tenebrionidae). J. Essent. Oil-Bear. Plants. 21(2): 282-297.
  • Plata-Rueda, A., Martínez, L.C., da Silva Rolim, G., Coelho, R.P., Santos, M.H., de Souza Tavares, W., Zanuncio, J. C. and Serrão, J.E. (2020). Insecticidal and repellent activities of Cymbopogon citratus (Poaceae) essential oil and its terpenoids (citral and geranyl acetate) against Ulomoides dermestoides. Crop Prot. 137: 105299.
  • Alcala-Orozco, M., Caballero-Gallardo, K., Stashenko, E.E. and Olivero-Verbel, J. (2019). Repellent and fumigant actions of the essential oils from Elettaria cardamomum (L.) Maton, Salvia officinalis (L.) Linnaeus, and Lippia origanoides (V.) Kunth against Tribolium castaneum and Ulomoides dermestoides. J. Essent. Oil-Bear. Plants. 22(1): 18-30.
  • Heidari, F., Sarailoo, M., Ghasemi, V. and Nadimi, A. (2017). Toxic and oviposition deterrence activities of essential oils from Citrus sinensis (L.) Osbeck and Citrus paradisi (Macfarlane) fruit peel against adults of Tribolium castaneum (Herbst). J. Crop Prot. 6(1): 79-88.
  • Celis, A., Mendoza, C.F. and Pachón, M.E. (2009). Uso de extractos vegetales en el manejo integrado de plagas, enfermedades y arvenses: revisión. Temas Agrarios. 14(1): 5-16.
  • Oguh, C., Okpaka, C., Ubani, C., Okekeaji, U., Joseph, P. and Amadi, E. (2019). Natural pesticides (Biopesticides) and uses in pest management-a critical review. Asian J. Biotechnol. Genet. Eng. 2(3): 1-18.
  • Torres, C., Silva, G., Tapia, M., Rodriìguez, J. C., Urbina, A., Figueroa, I., Lagunes, A., Santillaìn-Ortega, C., Robles-Bermuìdez, A. and Aguilar-Medel, S. (2015). Propiedades insecticidas del polvo de Laurelia sempervirens L. para el control de Sitophilus zeamais Motschulsky (Coleoptera: Curculionidae). B. Latinoam. Caribe Pl. 14(1): 48-59.
  • Walia, S., Saha, S., Tripathi, V. and Sharma, K. (2017). Phytochemical biopesticides: some recent developments. Phytochem. Rev. 16: 989-1007.
  • Deloya-Brito, G. G. and Deloya, C. (2014). Sustancias producidas por el coleóptero Ulomoides dermestoides (Chevrolat, 1878) (Insecta: Coleoptera: Tenebrionidae): efecto anti-inflamatorio y citotóxico. Acta Zool. Mex. 30(3): 655-661.
  • Mondragón, I. and Contreras Peña, Y. (2015). Uso de los insectos Tenebrio molitor, Tribolium castaneum y Palembus dermestoides (Coleoptera, Tenebrionidae) como recursodidáctico en la enseñanza de las Ciencias Naturales. Rev. Investig. 39(86): 255-270.
  • Ávila, D.L., Feria, C.P., Ramírez, G.G. and González, A.E. (2016). Insectos plaga de granos almacenados. Impacto en la seguridad alimentaria del municipio Las Tunas, Cuba. p. 23-32.
  • Hernandez-Lambraño, R., Pajaro-Castro, N., Caballero-Gallardo, K., Stashenko, E. and Olivero-Verbel, J. (2015). Essential oils from plants of the genus Cymbopogon as natural insecticides to control stored product pests. J. Stored Prod. Res. 62: 81-83.
  • Jayakumar, M., Arivoli, S., Raveen, R. and Tennyson, S. (2017). Repellent activity and fumigant toxicity of a few plant oils against the adult rice weevil Sitophilus oryzae Linnaeus 1763 (Coleoptera: Curculionidae). J. Entomol. Zool. Stud. 5(2): 324-335.
  • Joshi, R. and Tiwari, S. (2019). Fumigant toxicity and repellent activity of some essential oils against stored grain pest Rhyzopertha dominica (Fabricius). J. Pharmacogn. Phytochem. 8: 59-62.
  • Khoobdel, M., Ahsaei, S. M. and Farzaneh, M. (2017). Insecticidal activity of polycaprolactone nanocapsules loaded with Rosmarinus officinalis essential oil in Tribolium castaneum (Herbst). Entomol. Res. 47: 175-184.
  • Abdelgaleil, S., Badawy, M., Shawir, M. and Mohamed, M. (2015). Chemical composition, fumigant and contact toxicities of essential oils isolated from Egyptian plants against the stored grain insects; Sitophilus oryzae L. and Tribolium castaneum (Herbst). Egypt. J. Biol. Pest Control. 25: 639.
  • Khalil, S., Zarrad, K., Hammouda, A. B. and Ayed-Lakhal, Y. (2015). Comparison between insecticide effects of wild and cultivated rosemary essential oils on stored product insects. Tunis. J. Plant Prot. 10(2): 105-115.
  • Saad, M.M. (2017). Oviposition deterrent effect of four essential oils against the date palm weevil, Rhynchophorus ferrugineus Olivier. Middle East J. 6(4): 1336-1345.
  • US EPA. (1997). Oil of citronella. US EPA - Pesticides - Fact sheet for oil of citronella.
  • Mattos da Silva, M.R. and Ricci-Júnior, E. (2020). An approach to natural insect repellent formulations: from basic research to technological development. Acta Trop. 212: 105419.
  • Lampiri, E., Agrafioti, P., Levizou, E. and Athanassiou, C. (2020). Insecticidal effect of Dittrichia viscosa lyophilized epicuticular material against four major stored-product beetle species on wheat. Crop Prot. 132: 105095.
  • Araújo, A., Oliveira, J.V.d., França, S.M., Navarro, D.M., Barbosa, D.R. and Dutra, K.d.A. (2019). Toxicity and repellency of essential oils in the management of Sitophilus zeamais. Rev. Bras. Eng. Agríc. Ambient. 23(5): 372-377.
  • Jennings, W. and Shibamoto, T. (1980). Qualitative analysis of flavor and fragrance volatiles by glass capillary gas chromatography, Academic Press, New York.
  • Davies, N.W. (1990). Gas chromatographic retention indices of monoterpenes and sesquiterpenes on methyl silicon and Carbowax 20M phases. J. Chromatogr. A. 503: 1-24.
  • Adams, R.P. (2007). Identification of essential oil components by gas chromatography/mass spectrometry, 4th Ed. Allured Publ. Corp., Carol Stream, IL.
  • Joulain, D. and Konig, W.A. (1998). The atlas of spectral data of sesquiterpene hydrocarbons, E. B. Verlag, Hamburg.
  • El-Sayed, A.M. (2005). The Pherobase: Database of insect pheromones and semiochemicals. HortResearch, Lincoln, New Zealand: http://www.pherobase.com
  • Babushok, V.I., Linstrom, P.J., Zenkevich, I.G. (2011). Retention indices for frequently reported compounds of plant essential oils. J. Phys. Chem. 40(4): 1-47.
  • Van Den Dool, H. and Kratz, P.D. (1963). A generalization of the retention index system head space-solid phase Micro extraction-Gas chromatography. J. Chromatogr. 11: 463-471.
  • Morillo-Garcia, Y., Olivero-Verbel, J. and Caballero-Gallardo, K. (2016). Life cycle of Ulomoides dermestoides (Fairmaire, 1893) (Coleoptera: Tenebrionidae) under laboratory conditions. J. Stored Prod. Res. 69: 272-275.
  • Chaubey, M. (2017). Fumigant and contact toxicity of Allium sativum (Alliaceae) essential oil against Sitophilus oryzae L. (Coleoptera: Dryophthoridae). Entomol. Appl. Sci. Lett. 3(2): 43-48.
  • Tripathi, A.K., Prajapati, V., Verma, N., Bahl, J.R., Bansal, R.P., Khanuja, S.P. and Kumar, S. (2002). Bioactivities of the leaf essential oil of Curcuma longa (var. ch-66) on three species of stored-product beetles (Coleoptera). J. Econ. Entomol. 95(1): 183-189.
  • González-Guiñez, R., Silva-Aguayo, G., Urbina-Parra, A. and Gerding-González, M. (2016). Aceite esencial de Eucalyptus globulus Labill y Eucalyptus nitens H. Deane & Maiden (myrtaceae) para el control de Sitophilus zeamais Motschulsky. Chil. J. Agric. Anim. Sci. 32(3): 204-216.
  • Singh, V., Yadav, K.S., Tripathi, A.K., Tandon, S. and Yadav, N.P. (2016). Exploration of various essential oils as fumigant to protect stored grains from insect damage. Ann. Phytomed. 5: 87-90.
  • Ortiz, R.S. (2002). La domesticación de las plantas medicinales en Cuba: importancia y experiencias concretas. Biocenosis. 16(1-2): 66-70.
  • del Pilar Sánchez-Camargo, A. and Herrero, M. (2017). Rosemary (Rosmarinus officinalis) as a functional ingredient: recent scientific evidence. Curr. Opin. Food Sci. 14: 13-19.
  • Dehsheikh, A.B., Sourestani, M.M., Dehsheikh, P.B., Mottaghipisheh, J., Vitalini, S. and Iriti, M. (2020). Monoterpenes: Essential oil components with valuable features. Mini Rev. Med. Chem. 20(11): 958-974.
  • Pontes, E K.U., Melo, H.M., Nogueira, J.W.A., Firmino, N.C.S., de Carvalho, M.G., Júnior, F.E.A.C. and Cavalcante, T.T.A. (2019). Antibiofilm activity of the essential oil of citronella (Cymbopogon nardus) and its major component, geraniol, on the bacterial biofilms of Staphylococcus aureus. Food Sci. Biotechnol. 28(3): 633-639.
  • Elmhalli, F., Garboui, S.S., Borg-Karlson, A.K., Mozûraitis, R., Baldauf, S.L. and Grandi, G. (2019). The repellency and toxicity effects of essential oils from the Libyan plants Salvadora persica and Rosmarinus officinalis against nymphs of Ixodes ricinus. Exp. Appl. Acarol. 77(4): 585-599.
  • Sharma, Y., Schaefer, J., Streicher, C., Stimson, J. and Fagan, J. (2020). Qualitative analysis of essential oil from french and italian varieties of rosemary (Rosmarinus officinalis L.) Grown in the Midwestern United States. Anal. Chem. Lett. 10(1): 104-112.
  • Zhang, J.S., Zhao, N.N., Liu, Q.Z., Liu, Z.L., Du, S.S., Zhou, L. and Deng, Z.W. (2011). Repellent constituents of essential oil of Cymbopogon distans aerial parts against two stored-product insects. J. Agric. Food Chem. 59(18): 9910-9915.
  • Caballero-Gallardo, K., Olivero-Verbel, J. and Stashenko, E.E. (2011). Repellent activity of essential oils and some of their individual constituents against Tribolium castaneum Herbst. J. Agric. Food Chem. 59(5): 1690-1696.
  • Paranagama, P., Abeysekera, K.H.T., Nugaliyadde, L. and Abeywickrama, K. (2010). Repellency and toxicity of four essential oils to Sitophilus Oryzae L. (Coleoptera: Curculionidae). J. Natl. Sci. Found. 32(3-4): 127-138.
  • Tripathi, A., Upadhyay, S., Bhuyan, M. and Bhattacharya, P. (2009). A review of essential oils as biopesticide in insect-pest management. J. Pharmacogn. Phytotherapy. 1(5): 52-63.
  • García, M., Donadel, O.J., Ardanaz, C.E., Tonn, C.E. and Sosa, M.E. (2005). Toxic and repellent effects of Baccharis salicifolia essential oil on Tribolium castaneum. Pest Manag. Sci. 61(6): 612-618.
  • Dutta, S., Munda, S., Devi, N. and Lal, M. (2018). Compositional variability in leaves and inflorescence essential oils of Cymbopogon khasianus (Hack.) Stapf ex bor collected from Meghalaya: A Biodiversity Hotspot. J. Essent. Oil-Bear. Plants. 21(3): 640-657.
  • Lal, M., Dutta, S., Munda, S. and Pandey, S.K. (2018). Identification and registration of a high essential oil yielding variety (Jor Lab L-14) of Lemongrass (Cymbopogon flexuosus L.) through mutation breeding technique. J. Essent. Oil-Bear. Plants. 21(6): 1604-1611.
  • Lal, M., Borah, A. and Pandey, S.K. (2019). Identification of a New High Geraniol Rich Variety “Jor Lab L-15” of Lemongrass [Cymbopogon khasianus (Hack) Stapf (ex Bor)]. J. Essent. Oil-Bear. Plants. 22(4): 972-978.
  • Munda, S., Dutta, S., Pandey, S. K., Sarma, N. and Lal, M. (2019). Antimicrobial activity of essential oils of medicinal and aromatic plants of the North east India: A biodiversity hot spot. J. Essent. Oil-Bear. Plants. 22(1): 105-119.
  • Lal, M., Baruah, J., Begum, T. and Pandey, S.K. (2020). Identification of a novel myrcene and methyl iso-eugenol rich essential oil variant (Jor Lab L-11) of lemongrass (Cymbopogon flexuosus L.). J. Essent. Oil-Bear. Plants. 23(4): 660-668.
  • Munda, S. and Lal, M. (2020). Cymbopogon winterianus Jowitt ex Bor, a Hub for Various industrial and pharmaceutical applications. In: Singh B. (eds) Botanical Leads for Drug Discovery. Springer, Singapore. p. 405-419. https://doi.org/10.1007/978-981-15-5917-4_19
  • Munda, S., Sarma, N., Lal, M., Aromatic, M. and Group, E.P. (2020). GxE interaction of 72 accessions with three year evaluation of Cymbopogon winterianus Jowitt. using regression coefficient and Additive Main effects and Multiplicative Interaction model (AMMI). Ind. Crop Prod. 146: 112169.
  • Paranagama, P. and Maduwanthi, H. (2016). Development of essential oil based tablets from Cinnamomum zeylanicum leaves and Cymbopogon nardus against the stored grain pest insect, Sitophilus oryzae in traditional rice varieties in Sri Lanka. J. Fac. Grad. Stud. University of Kelaniya, Sri Lanka. p. 167.
  • Ardila M., Vargas A., Pérez J. and Mejía L. (2009). Ensayo preliminar de la actividad antibacteriana de extractos de Allium sativum, Coriandrum sativum, Eugenia caryophyllata, Origanum vulgare, Rosmarinus officinalis y Thymus vulgaris frente a Clostridium perfringens. Biosalud. 8: 37-46.
  • Castaño, H.I., Ciro, G., Zapata, J.E. and Jimenez, S.L. (2010). Actividad bactericida del extracto etanólico y del aceite esencial de hojas de Rosmarinus officinalis L. sobre algunas bacterias de interés alimentario. Vitae. 17(2): 149-154.
  • Ahsaei, S.M., Rodríguez-Rojo, S., Salgado, M., Cocero, M.J., Talebi-Jahromi, K. and Amoabediny, G. (2020). Insecticidal activity of spray dried microencapsulated essential oils of Rosmarinus officinalis and Zataria multiflora against Tribolium confusum. Crop Prot. 128: 104996.
  • Khani, M., Marouf, A., Amini, S., Yazdani, D., Farashiani, M.E., Ahvazi, M., Khalighi-Sigaroodi, F. and Hosseini-Gharalari, A. (2017). Efficacy of three herbal essential oils against rice weevil, Sitophilus oryzae (Coleoptera: Curculionidae). J. Essent. Oil-Bear. Plants. 20(4): 937-950.
  • Sánchez-García, C., Cruz-Martín, M., Alvarado-Capó, Y., Pérez, M., Medinilla, M., Acosta-Suárez, M., Leiva-Mora, M. and Roque, B. (2007). Evaluación del efecto del aceite esencial de Cymbopogon nardus para el control de microorganismos contaminantes del cultivo in vitro de plantas. Biot. Veg. 7(3): 187-190.
  • Pérez-Cordero, A., Chamorro-Anaya, L., Vitola-Romero, D. and Hernández-Gómez, J. (2017). Actividad antifúngica de Cymbopogon citratus contra Colletotrichum gloeosporioides. Agron. Mesoam. 28(2): 465-475.
  • Liang, J.-Y., Guo, S.-S., Zhang, W.-J., Geng, Z.-F., Deng, Z.-W., Du, S.-S. and Zhang, J. (2018). Fumigant and repellent activities of essential oil extracted from Artemisia dubia and its main compounds against two stored product pests. Nat. Prod. Res. 32(10): 1234-1238.
  • Sabuj, Z., Islam, S., Abdullah, M., Badruddoza, D. and Islam, N. (2017). Repellent potentials of Morus alba L. extractives against three stored product pests Callosobruchus chinensis (L.), Sitophilus oryzae (L.) and Tribolium castaneum (Hbst.). J. Pharmacogn. Phytochem. 6(3): 825-828.
  • Chaubey, M.K. (2018). Study of insecticidal properties of Trachyspermum ammi and Mentha arvensis essential oils against Sitophilus zeamais L. (Coleoptera: Curculionidae). Life Sci. 4(1): 10-17.
  • Chandel, R., Nebapure, S., Sharma, M., Sabtharishi, S., Srivastava, C. and Khurana, S. M. (2019). Insecticidal and repellent activities of eucalyptus oil against lesser grain Borer Rhyzopertha dominica (Fabricius). J. Microbiol. Biotechnol. Food Sci. 9(3): 525-529.

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