Research Article
BibTex RIS Cite

Lamium purpureum L. Uçucu Yağının Alphitobius diaperinus (Coleoptera: Tenebrionidae) Üzerine Fumigant, Kontakt ve Kovucu-cezbedici Etkilerinin Belirlenmesi

Year 2025, Volume: 9 Issue: 2, 187 - 197
https://doi.org/10.31594/commagene.1690665

Abstract

Bu çalışma, Balıkesir ilinde yetişen Lamium purpureum L. bitkisinden elde edilen uçucu yağın kümes zararlısı Alphitobius diaperinus (Coleoptera: Tenebrionidae) üzerindeki fumigant, kontakt ve kovucu etkilerini belirlemek amacıyla yürütülmüştür. L. purpureum bitkisinin toprak üstü kısımlarından uçucu yağ eldesi Clevenger cihazı ile gerçekleştirilmiştir. Elde edilen yağın bileşenlerinin GC-MS analizi tayini için hizmet alımı yapılmıştır. Elde edilen uçucu yağın 3 farklı dozu (1000, 800 ve 600 mg/L) A. diaperinus larvalarına fumigant, kontakt ve kovucu-cezbedici olmak üzere 3 farklı şekilde uygulanmıştır. Kontrol grubu için aseton kullanılmıştır. Yağın ana bileşenleri 2-pentadecanone, 6,10,14-trimethyl (%19.35), phytol (%13.10) ve germacrene-D (%5.79) olarak belirlenmiştir. 600, 800 ve 1000 mg/L konsantrasyonlarında hazırlanan yağın, A. diaperinus larvaları üzerinde öldürücü etkisinin olmadığı ancak bazı biyolojik özelliklerini etkilediği görülmüştür. Fumigant uygulamada 600 ve 1000 mg/L ve kontakt uygulamada ise 1000 mg/L’lik uygulamalarda ergin öncesi dönemleri kısalttığı ve ergin hayat uzunluğunu arttırdığı gözlemlenmiştir. Ayrıca yağın kovucu etkisi kontrole kıyasla deney gruplarında daha az olmuştur. L. purpureum uçucu yağının sentetik insektisitlerin yerine doğrudan bir alternatifi olmadığını; ancak çevre dostu biyolojik mücadele stratejilerine katkı sağlayabileceğini göstermektedir.

Ethical Statement

Bu çalışma için etik kurul izni gerekmemektedir.

Supporting Institution

Balıkesir Üniversitesi

Project Number

Herhangi bir proje desteği bulunmamaktadır.

References

  • Abedinzade, M., Rostampour, M., Mirzajani, E., Khalesi, Z.B., Pourmirzaee, T., & Khanaki, K. (2019). Urtica dioica and Lamium album decrease Glycogen Synthase Kinase-3 beta and increase K-Ras in diabetic rats. Journal of Pharmacopuncture, 22(4), 248–252. https://doi.org/10.3831/KPI.2019.22.033
  • Akkoyunlu, A., & Dulger, G. (2019). Chemical composition of Lamium purpureum L. and determination of anticancer activity of its essential oil on melanoma. Düzce Üniversitesi Bilim ve Teknoloji Dergisi, 7(3), 1755–1763. https://doi.org/10.29130/dubited.553793
  • Akkoyunlu, A., & Dulger, G. (2024). Antimicrobial, Anti-quorum sensing and Antibiofilm Potentials of Lamium galeobdolon (L.) L. and Lamium purpureum L. Ethanolic Extracts. Journal of Apitherapy and Nature, 7(1), 1-13. https://doi.org/10.35206/jan.1457624
  • Alipieva, K., Kokubun, T., Taskova, R., Evstatieva, L., & Handjieva, N. (2007). LC–ESI-MS analysis of iridoid glucosides in Lamium species. Biochemical Systematics and Ecology, 35(1), 17–22. https://doi.org/10.1016/j.bse.2006.07.004
  • Alves, L.F.A., Johann, L., & Oliveira, D.G.P. (2023). Challenges in the biological control of pests in poultry production: a critical review of advances in Brazil. Neotropical Entomology, 52(2), 292-301. https://doi.org/10.1007/s13744-022-01021-1
  • Ansari, M.A., Vasudevan, P., Tandon, M., & Razdan, R.K. (2000). Larvicidal and mosquito repellent action of peppermint (Mentha piperita) oil. Bioresource technology, 71(3), 267-271. https://doi.org/10.1016/S0960-8524(99)00079-6
  • Arena, J.S., Merlo, C., Defagó, M.T., & Zygadlo, J.A. (2020). Insecticidal and antibacterial effects of some essential oils against the poultry pest Alphitobius diaperinus and its associated microorganisms. Journal of Pest Science, 93, 403-414. https://doi.org/10.1007/s10340-019-01141-5
  • Aydın, Ç., & Mammadov, R. (2017). İnsektisit aktivite gösteren bitkisel sekonder metabolitler ve etki mekanizması. Marmara Pharmaceutical Journal, 21(1), 30-37. https://doi.org/10.12991/marupj.259878
  • Baran, P., & Özdemir, C. (2013). Morphological, anatomical and cytological studies on endemic Lamium pisidicum. Pakistan Journal of Botany, 45(1), 73-85.
  • Bedini, S., Cosci, F., Tani, C., Pierattini, E.C., Venturi, F., Lucchi, A., & Conti, B. (2020). Essential oils as post-harvest crop protectants against the fruit fly Drosophila suzukii: Bioactivity and organoleptic profile. Insects, 11(8), 508. https://doi.org/10.3390/insects11080508
  • Bedini, S., Djebbi, T., Ascrizzi, R., Farina, P., Pieracci, Y., Echeverría, M.C., & Conti, B. (2024). Repellence and attractiveness: The hormetic effect of aromatic plant essential oils on insect behavior. Industrial Crops and Products, 210, 118122. https://doi.org/10.1016/j.indcrop.2024.118122
  • Bedini, S., Flamini, G., Girardi, J., Cosci, F., & Conti, B. (2015). Not just for beer: Evaluation of spent hops (Humulus lupulus L.) as a source of eco-friendly repellents for insect pests of stored foods. Journal of Pest Science, 88, 583-592. https://doi.org/10.1007/s10340-015-0647-1
  • Birkett, M.A., Al Abassi, S., Kröber, T., Chamberlain, K., Hooper, A.M., Guerin, P.M., & Wadhams, L.J. (2008). Antiectoparasitic activity of the gum resin, gum haggar, from the East African plant, Commiphora holtziana. Phytochemistry, 69(8), 1710-1715. https://doi.org/10.1016/j.phytochem.2008.02.017
  • Bouchard, P., Smith, A.B., Douglas, H., Gimmel, M.L., Brunke, A.J., & Kanda, K. (2017). Insect biodiversity science and society (Chapter 11): Biodiversity of coleoptera, New York: Wiley online Library. https://doi.org/10.1002/9781118945568.ch11
  • Brown, M., & Hebert, A.A. (1997). Insect repellents: an overview. Journal of the American Academy of Dermatology, 36(2), 243-249. https://doi.org/10.1016/S0190-9622(97)70289-5
  • Campolo, O., Giunti, G., Russo, A., Palmeri, V., & Zappalà, L. (2018). Essential oils in stored product insect pest control. Journal of Food Quality, 2018(1), 6906105. https://doi.org/10.1155/2018/6906105
  • Canlı, K., Yetgin, A., Akata, I. & Altuner, E.M. (2017). Antimicrobial activity and chemical composition screening of Epilobium montanum root. Indian Journal of Pharmaceutical Education and Research, 51(3), 239-243. https://doi.org/10.5530/ijper.51.3s.21
  • Chauhan, N., Kumar, P., Mishra, S., Verma, S., Malik, A., & Sharma, S. (2015). Insecticidal activity of Jatropha curcas extracts against housefly, Musca domestica. Environmental Science and Pollution Research, 22, 14793-14800. https://doi.org/10.1007/s11356-015-4686-1
  • Chellappandian, M., Vasantha-Srinivasan, P., Senthil-Nathan, S., Karthi, S., Thanigaivel, A., Ponsankar, A., Kalaivani, K., & Hunter, W.B. (2018). Botanical essential oils and uses as mosquitocides and repellents against dengue. Environment International, 113, 214–230. https://doi.org/10.1016/j.envint.2017.12.038.
  • Chen, Y., Luo, J., Zhang, N., Yu, W., Jiang, J., & Dai, G. (2021). Insecticidal activities of Salvia hispanica L. essential oil and combinations of their main compounds against the beet armyworm Spodoptera exigua. Industrial Crops & Products, 162, 113271. https://doi.org/10.1016/j.indcrop.2021.113271
  • Chernaki-Leffer, A.M., Sosa-Gómez, D.R., Almeida, L.M., & Lopes I.O.N. (2011). Susceptibility of Alphitobius diaperinus (Panzer) (Coleoptera, Tenebrionidae) to cypermethrin, dichlorvos and triflumuron in southern Brazil. Revista Brasileira de Entomologia, 55(1), 125–128. https://doi.org/10.1590/S0085-56262011000100020
  • Cruz-Estrada, A., Gamboa-Angulo, M., Borges-Argáez, R., & Ruiz-Sánchez, E. (2013). Insecticidal effects of plant extracts on immature whitefly Bemisia tabaci Genn. (Hemiptera: Aleyroideae). Electronic Journal of Biotechnology, 16(1), 6-6. http://doi.org/10.2225/vol16-issue1-fulltext-6
  • Do Prado, G.P., Stefani, L.M., Da Silva, A.S., Smaniotto, L.F., Garcia, F.R.M., & De Moura, N.F. (2013). Alphitobius diaperinus (Coleoptera: Tenebrionidae) susceptibility to Cunila angustifolia essential oil. Journal of Medical Entomology, 50(5), 1040-1045. https://doi.org/10.1603/ME12277
  • Ebadollahi, A. (2013). Plant essential oils from Apiaceae Family as alternatives to conventional insecticides. Ecologia Balkanica, 5(1), 149-172.
  • El-Sayed, Z.I. (2016). Chemical composition, antimicrobial and insecticidal activities of the essential oil of Lamium maculatum L. Grown in Egypt. Biosciences Biotechnology Research Asia, 5(1), 65-72.
  • Erler, F., Ulug, I., & Yalcinkaya, B. (2006). Repellent activity of five essential oils against Culex pipiens. Fitoterapia, 77(7-8), 491-494. https://doi.org/10.1016/j.fitote.2006.05.028
  • Farina, P., Venturi, F., Ascrizzi, R., Flamini, G., Chiriboga Ortega, R.D., Echeverría, M.C., ... & Conti, B. (2021). Andean plants essential oils: A scented alternative to synthetic insecticides for the control of blowflies. Insects, 12(10), 894. https://doi.org/10.3390/insects12100894
  • Flamini, G., Cioni, P.L., & Morelli, I. (2005). Composition of the essential oils and in vivo emission of volatiles of four Lamium species from Italy: L. purpureum, L. hybridum, L. bifidum and L. amplexicaule. Food Chemistry, 91(1), 63-68. https://doi.org/10.1016/j.foodchem.2004.05.047
  • Francikowski, J., Baran, B., Cup, M., Janiec, J., & Krzyżowski, M. (2019). Commercially available essential oil formulas as repellents against the stored-product pest Alphitobius diaperinus. Insects, 10(4), 96. https://doi.org/10.3390/insects10040096
  • Frezza, C., Venditti, A., Serafini, M., & Bianco, A. (2019). Chapter 4 – Phytochemistry, chemotaxonomy, ethnopharmacology, and Nutraceutics of Lamiaceae. Studies in Natural Products Chemistry (Vol. 62). Elsevier: Academic press. https://doi.org/10.1016/B978-0-444-64185-4.00004-6
  • Gebauer, S., Pompermayer, K., de Oliveira, D.G.P., da Silva Pinto, F.G., Rosset, J., Bandeira, D.M., & Alves, D.S. (2024). Mentha spp. essential oils: toxicity to Alphitobius diaperinus, activity against poultry pathogenic bacteria, and Beauveria bassiana compatibility. Environmental Science and Pollution Research, 31(23), 34010-34027. https://doi.org/10.1007/s11356-024-33484-7
  • Ghoneim, M.M., Musa, A., El-Hela, A.A., & Elokely, K.M. (2018). Evaluation and understanding the molecular basis of the antimethicillin-resistant Staphylococcus aureus activity of secondary metabolites isolated from Lamium amplexicaule. Pharmacognosy Magazine, 14(55). https://doi.org/10.4103/pm.pm_541_17
  • Gikonyo, N.K., Hassanali, P.G., Njagi, P.M., Gitu, R.B. & Saini, R.K. (2002). Responses of Glossina morsitans to blends of electroantennographically active compounds in the odour of its preferred (Buffalo and Ox) and nonpreferred (Waterbuck) Hosts. Journal of Chemistry Ecololog, 29(2), 2331-2333.
  • Goodwin, M.A., Davis, J.F., McNulty, M.S., Brown, J. & Player, E.C. (1993). Enteritis and so-called runting stunting syndrome in Georgia broiler chicks. Avian Dis, 37, 451–458.
  • Grujić, S.M., Savković, Ž.D., Ristić, M.S., Džamić, A.M., Grbić, M.V.L., Vukojević, J.B., & Marin, P.D. (2020). Glandular trichomes, essential oil composition, anti-Aspergillus and antioxidative activities of Lamium purpureum L. ethanolic extracts. Archives of Biological Sciences, 72(2), 253-263. https://doi.org/10.2298/ABS200117019G
  • Gupta, R.C., Mukherjee, I.R.M., Malik, J.K., Doss, R.B., Dettbarn, W.D., & Milatovic, D. (2019). Insecticides: Biomarkers in Toxicology. Elsevier: Academic Press.
  • Haas, R.A., Crișan, I., Vârban, D., & Vârban, R. (2024). Aerobiology of the Family Lamiaceae: Novel Perspectives with Special Reference to Volatiles Emission. Plants, 13(12), 1687. https://doi.org/10.3390/plants13121687
  • Harris, F. 1966. Observations on the lesser mealworm, Alphitobius diaperinus (Panz.). Journal of the Georgia Entomological Society, 1, 17–18.
  • Isman, M.B. (2000). Plant essential oils for pest and disease management. Crop Protection, 19(8-10), 603-608. https://doi.org/10.1016/S0261-2194(00)00079-X
  • Isman, M.B. (2006). Botanical insecticides, deterrents, and repellents in modern agriculture and an increasingly regulated world. Annual Review of Entomology, 51(1), 45-66. https://doi.org/10.1146/annurev.ento.51.110104.151146
  • Jilani, G., & Su, H.C. (1983). Laboratory studies on several plant materials as insect repellants for protection of cereal grains. Journal of Economic Entomology, 76(1), 154-157. https://doi.org/10.1093/jee/76.1.154
  • Jones, C.D., Woods, K.E., & Setzer, W.N. (2012). A chemical ecological investigation of the allelopathic potential of Lamium amplexicaule and Lamium purpureum. Open Journal of Ecology, 2(4), 167-177. http://doi.org/10.4236/oje.2012.24020
  • Kamruzzaman, M., Shahjahan, M., & Mollah, M.L.R. (2005). Evaluation of six plant extracts for their possible repellent effects against lesser mealworm, Alphitobius diaperinus (Panzer). Journal of the Bangladesh Agricultural University, 3(1), 43-48. http://doi.org/10.22004/ag.econ.276405
  • Kelayeh, T.P.S., Abedinzade, M., & Ghorbani, A. (2019). A review on biological effects of Lamium album (white dead nettle) and its components. Journal of Herbmed Pharmacology, 8(3), 185-193. http://doi.org/10.15171/jhp.2019.28
  • Konarska, A., Weryszko-Chmielewska, E., Matysik-Woźniak, A., Sulborska, A., Polak, B., Dmitruk, M., & Rejdak, R. (2021). Histochemical and phytochemical analysis of Lamium album subsp. album L. corolla: Essential oil, triterpenes, and iridoids. Molecules, 26(14), 4166. https://doi.org/10.3390/molecules26144166
  • Kumar, P. (1988). Flesh eating behaviour of Alphitobius diaperinus Panz. (Tenebrionidae; Coleoptera). Indian Journal of Entomology, 48, 113–115.
  • Kurihara, T., & Kikuchi, M. (1976). On the constituents of the essential oil from Lamium purpureum L. (author's transl). Yakugaku zasshi: Journal of the Pharmaceutical Society of Japan, 96(11), 1348-1351. https://doi.org/10.1248/yakushi1947.96.11_1348
  • Lahlou, M. (2004). Methods to Study the Phytochemistry and Bioactivity of Essential Oils, Phytotherapy Research. Phytotherapy Reserch, 18, 435–448. https://doi.org/10.1002/ptr.1465
  • Lawal, O.A., Ogunwande, I.A., Salvador, A.F., Sanni, A.A., & Opoku, A.R. (2014). Pachira glabra Pasq. Essential oil: Chemical constituents, antimicrobial and insecticidal activities. Journal of Oleo Science, 63(6), 629-635. https://doi.org/10.5650/jos.ess13179
  • Mantzoukas, S., Kosmidou, G., Gekas, A., Kitsiou, F., Eliopoulos, P.A., & Patakioutas, G. (2022). A preliminary analysis on the insecticidal effect of cyantraniliprole against stored-product pests. Applied Sciences, 12(3), 1297. https://doi.org/10.3390/app12031297
  • Mészáros, T., & Tóth, S. (2021). Effects of temperature and precipitation on Diptera species, and flower preference of Diptera species in an Adonis vernalis population. Georgikon for Agriculture, 25(1), 29-38.
  • Nerio, L.S., Olivero-Verbel, J., & Stashenko, E. (2010). Repellent activity of essential oils: a review. Bioresource technology, 101(1), 372-378. https://doi.org/10.1016/j.biortech.2009.07.048
  • de Paula, J.P., Gomes-Carneiro, M.R., & Paumgartten, F.J. (2003). Chemical composition, toxicity and mosquito repellency of Ocimum selloi oil. Journal of Ethnopharmacology, 88(2-3), 253-260. https://doi.org/10.1016/S0378-8741(03)00233-2
  • Pascual-Villalobos, M.J., & Ballesta-Acosta, M.C. (2003). Chemical variation in an Ocimum basilicum germplasm collection and activity of the essential oils on Callosobruchus maculatus. Biochemical Systematics and Ecology, 31(7), 673-679. https://doi.org/10.1016/S0305-1978(02)00183-7
  • Peter, R., Josende, M.E., da Silva Barreto, J., da Costa Silva, D.G., da Rosa, C.E., & Maciel, F. E. (2022). Effect of Illicium verum (Hook) essential oil on cholinesterase and locomotor activity of Alphitobius diaperinus (Panzer). Pesticide Biochemistry and Physiology, 181, 105027. https://doi.org/10.1016/j.pestbp.2021.105027
  • Pimentel, D., Lach, L., Zuniga, R., & Morrison, D. (2000). Environmental and economic costs of nonindigenous species in the United States. BioScience, 50(1), 53-65. https://doi.org/10.1641/0006-3568(2000)050[0053:EAECON]2.3.CO;2
  • Prajapati, V., Tripathi, A.K., Aggarwal, K.K., & Khanuja, S.P.S. (2005). Insecticidal, repellent and oviposition-deterrent activity of selected essential oils against Anopheles stephensi, Aedes aegypti and Culex
  • quinquefasciatus. Bioresource Technology, 96(16), 1749-1757. https://doi.org/10.1016/j.biortech.2005.01.007 Prins, C.L., Vieira, I.J., & Freitas, S.P. (2010). Growth regulators and essential oil production. Brazilian Journal of Plant Physiology, 22, 91-102. https://doi.org/10.1590/S1677-04202010000200003
  • Rajkumar, S., & Jebanesan, A. (2005). Repellency of volatile oils from Moschosma polystachyum and Solanum xanthocarpum against filarial vector Culex quinquefasciatus say. Tropical Biomedicine, 22(2), 139-142.
  • Ravi Kiran, S., & Sita Devi, P. (2007). Evaluation of mosquitocidal activity of essential oil and sesquiterpenes from leaves of Chloroxylon swietenia DC. Parasitology Research, 101, 413-418. https://doi.org/10.1007/s00436-007-0485-z
  • Regnault-Roger, C., Vincent, C., & Arnason, J.T. (2012). Essential oils in insect control: low-risk products in a high-stakes world. Annual Review of Entomology, 57(1), 405-424. https://doi.org/10.1146/annurev-ento-120710-100554
  • Romani, R., Bedini, S., Salerno, G., Ascrizzi, R., Flamini, G., Echeverría, M.C., Farina, P., & Conti, B. (2019). Andean flora as a source of new repellents against insect pests: behavioral, morphological and electrophysiological studies on Sitophilus zeamais (Coleoptera: Curculionidae). Insects, 10, 171. https://doi.org/10.3390/insects10060171
  • Sakamoto, C., Suzuki, M., Iwasaki, A., Suenaga, K., & Kato-Noguchi, H. (2019). Evaluation of allelopathic competency of Lamium amplexicaule and identification of its allelopathic active substance. Emirates Journal of Food and Agriculture, 31(2), 76-80. https://doi.org/10.9755/ejfa.2019.v31.i2.1907
  • Salehi, B., Armstrong, L., Rescigno, A., Yeskaliyeva, B., Seitimova, G., Beyatli, A., ... & Sharifi-Rad, J. (2019). Lamium plants—A comprehensive review on health benefits and biological activities. Molecules, 24(10), 1913. https://doi.org/10.3390/molecules24101913
  • Santana, C.B., Souza, J.G.L., Toledo, A.G., Alves, L.F.A., Alves, D.S., Corrêa, J.M., & Pinto, F.G.S. (2021). Antimicrobial and insecticidal effects of essential oil and plant extracts of Myrcia oblongata DC in pathogenic bacteria and Alphitobius diaperinus. Brazilian Journal of Biology, 82, e233425. https://doi.org/10.1590/1519-6984.233425
  • Sanyaolu, N.O., Agboyinu, E.B., Yussuf, S.T., Sonde, O.I., Avoseh, O.N., & Ibikunle, A.A. (2019). Chemical composition and insecticidal activity of the essential oils of Crateva adansonii DC. Leaf on Sitophilus zeamais and Callosobrunchus maculatus. Life Journal of Science, 21(3), 129-137. https://doi.org/10.4314/ijs.v21i3.11
  • Savchenko, T., Blackford, M., Sarker, S.D., & Dinan, L. (2001). Phytoecdysteroids from Lamium spp: identification and distribution within plants. Biochemical Systematics and Ecology, 29(9), 891-900. https://doi.org/10.1016/S0305-1978(01)00035-7
  • Sparagano, O., Di Domenico, D., Venturelli, C., Papadopoulos, E., Smallegange, R.C., & Giangaspero, A. (2018). Arthropod pests in the poultry industry. Pests and vector-borne diseases in the livestock industry: Wageningen Academic Publishers. https://doi.org/10.3920/978-90-8686-863-6_2
  • Subekti, N., & Cahyaningrum, S.H. (2020). Insecticidal activity of some plant essential oil extracts against Alphitobius diaperinus pest causing avian influenza. Journal of Physics: Conference Series. 1567(3), p. 032048. IOP Publishing. https://doi.org/10.1088/1742-6596/1567/3/032048
  • Subekti, N., Cahyaningrum, S.H., & Maulana, S. (2022). Effective control of Alphitobius diaperinus using natural bioinsecticides: Effective control of Alphitobius diaperinus using natural bioinsecticides. Journal of Tropical Life Science, 12(3), 289-297. https://doi.org/10.11594/jtls.12.03.01
  • Sukumar, K., Perich, M.J., & Boobar, L.R. (1991). Botanical derivatives in mosquito control: a review. Journal of the American Mosquito Control Association, 7(2), 210-237.
  • Sulborska, A., Dmitruk, M., Konarska, A., & Weryszko-Chmielewska, E. (2014). Adaptations of Lamium album L. flowers to pollination by Apoidea. Acta Scientiarum Polonorum. Hortorum Cultus, 13(6), 31-43.
  • Szczepanik, M., Walczak, M., Zawitowska, B., Michalska‐Sionkowska, M., Szumny, A., Wawrzeńczyk, C., & Brzezinska, M.S. (2018). Chemical composition, antimicromicrobial activity and insecticidal activity against the lesser mealworm Alphitobius diaperinus (Panzer)(Coleoptera: Tenebrionidae) of Origanum vulgare L. ssp. hirtum (Link) and Artemisia dracunculus L. essential oils. Journal of the Science of Food and Agriculture, 98(2), 767-774. https://doi.org/10.1002/jsfa.8524
  • Szołyga, B., Gniłka, R., Szczepanik, M., & Szumny, A. (2014). Chemical composition and insecticidal activity of Thuja occidentalis and Tanacetum vulgare essential oils against larvae of the lesser mealworm, Alphitobius diaperinus. Entomologia Experimentalis et Applicata, 151(1), 1-10. https://doi.org/10.1111/eea.12166
  • Tamburro, M., Sammarco, M.L., Trematerra, P., Colacci, M., & Ripabelli, G. (2022). Alphitobius diaperinus Panzer (Insecta, Coleoptera) in a single house of a broiler production facility as a potential source of pathogenic bacteria for broilers and humans. Letters in Applied Microbiology, 74(6), 883-892. https://doi.org/10.1111/lam.13679
  • Tawatsin, A., Wratten, S.D., Scott, R.R., Thavara, U., & Techadamrongsin, Y. (2001). Repellency of volatile oils from plants against three mosquito vectors. Journal of Vector Ecology, 26, 76-82.
  • Toji, T., Ishimoto, N., Egawa, S., Nakase, Y., Hattori, M., & Itino, T. (2021). Intraspecific convergence of floral size correlates with pollinator size on different mountains: a case study of a bumblebee-pollinated Lamium (Lamiaceae) flowers in Japan. BMC Ecology and Evolution, 21(1), 64. https://doi.org/10.1186/s12862-021-01796-8
  • Tripathi, A.K., Prajapati, V., Verma, N., Bahl, J.R., Bansal, R.P., Khanuja, S.P.S., & Kumar, S. (2002). Bioactivities of the leaf essential oil of Curcuma longa (var. ch-66) on three species of stored-product beetles (Coleoptera). Journal of Economic Entomology, 95(1), 183-189. https://doi.org/10.1603/0022-0493-95.1.183
  • Tripathi, A.K., Prajapati, V., Aggarwal, K.K., Khanuja, S.P.S., & Kumar, S. (2000). Repellency and toxicity of oil from Artemisia annua to certain stored-product beetles. Journal of Economic Entomology, 93(1), 43-47.https://doi.org/10.1603/0022-0493-93.1.43
  • Tripathi, A.K., Upadhyay, S., Bhuiyan, M., & Battacharya, P.B. (2009). A review on prospects of essential oils as bio pesticide in insect pest management. Journal of Pharmacognosy and Phytotherapy, 1, 52–63. https://doi.org/10.5897/JPP.9000003
  • Valkov, R. (2021). On the importance of inconspicuous flowering plants–how a" noxious weed" sustains valuable insects. Phegea, 49(1), 30.
  • Volpato, A., Lorenzetti, W.R., Zortea, T., Giombelli, L.C.D.D., Baretta, D., Santos, R.C.V., ... & Silva, A.D. (2016). Melaleuca alternifolia essential oil against the lesser mealworm (Alphitobius diaperinus) and its possible effect on the soil fauna. Revista Brasileira de Ciencia Avicola, 18(1), 41-46. https://doi.org/10.1590/1516-635X1801041-046
  • Wang, X., Li, Q., Shen, L., Yang, J., Cheng, H., Jiang, S., ... & Wang, H. (2014). Fumigant, contact, and repellent activities of essential oils against the darkling beetle, Alphitobius diaperinus. Journal of Insect Science, 14, 75. https://doi.org/10.1093/jis/14.1.75
  • Watson, D.W., Kaufman, P.E., Rutz, D.A., & Glenister, C.S. (2001). Impact of the darkling beetle Alphitobius diaperinus (Panzer) on establishment of the predaceous beetle Carcinops pumilio (Erichson) for Musca domestica control in caged-layer poultry houses. Biological Control, 20(1), 8-15. https://doi.org/10.1006/bcon.2000.0874
  • Yalçin, F.N., & Kaya, D. (2006). Ethnobotany, pharmacology and phytochemistry of the genus Lamium (Lamiaceae). FABAD Journal of Pharmaceutical Sciences, 31(1), 43.
  • Yordanova, Z.P., Zhiponova, M.K., Iakimova, E.T., Dimitrova, M.A., & Kapchina-Toteva, V.M. (2014). Revealing the reviving secret of the white dead nettle (Lamium album L.). Phytochemistry Reviews, 13, 375-389. https://doi.org/10.1007/s11101-014-9356-2

Determination of Fumigant, Contact, and Repellent-Attractant Effects of Lamium purpureum L. Essential Oil on Alphitobius diaperinus (Coleoptera: Tenebrionidae)

Year 2025, Volume: 9 Issue: 2, 187 - 197
https://doi.org/10.31594/commagene.1690665

Abstract

This study was carried out to determine the fumigant, contact, and repellent effects of the essential oil obtained from Lamium purpureum L. plant growing in Balıkesir province on the poultry pest Alphitobius diaperinus (Coleoptera: Tenebrionidae). Essential oil extraction from the aerial parts of the L. purpureum plant was carried out with the Clevenger device. Services were purchased for the GC-MS analysis determination of the components of the oil obtained. Three different doses of the obtained essential oil (1000, 800, and 600 mg/L) were applied to A. diaperinus larvae in 3 different ways: fumigant, contact, and repellent-attractant. Acetone was used for the control group. The main components of the oil were determined as 2-pentadecanone, 6,10,14-trimethyl (19.35%), phytol (13.10%), and germacrene-D (5.79%). It was observed that the oil prepared at concentrations of 600, 800, and 1000 mg/L had no lethal effect on A. diaperinus larvae-* but it affected some biological properties. It was observed that 600 and 1000 mg/L applications in fumigant application and 1000 mg/L applications in contact application shorten the pre-adult periods and increase adult life span. In addition, the repellent effect of the oil was less in the experimental groups compared to the control. It shows that L. purpureum essential oil is not a direct alternative to synthetic insecticides; however, it shows that it can contribute to environment-friendly biological control strategies.

Ethical Statement

Bu çalışma için etik kurul izni gerekmemektedir.

Supporting Institution

Balıkesir University

Project Number

Herhangi bir proje desteği bulunmamaktadır.

Thanks

Ethics committee approval is not required for this study

References

  • Abedinzade, M., Rostampour, M., Mirzajani, E., Khalesi, Z.B., Pourmirzaee, T., & Khanaki, K. (2019). Urtica dioica and Lamium album decrease Glycogen Synthase Kinase-3 beta and increase K-Ras in diabetic rats. Journal of Pharmacopuncture, 22(4), 248–252. https://doi.org/10.3831/KPI.2019.22.033
  • Akkoyunlu, A., & Dulger, G. (2019). Chemical composition of Lamium purpureum L. and determination of anticancer activity of its essential oil on melanoma. Düzce Üniversitesi Bilim ve Teknoloji Dergisi, 7(3), 1755–1763. https://doi.org/10.29130/dubited.553793
  • Akkoyunlu, A., & Dulger, G. (2024). Antimicrobial, Anti-quorum sensing and Antibiofilm Potentials of Lamium galeobdolon (L.) L. and Lamium purpureum L. Ethanolic Extracts. Journal of Apitherapy and Nature, 7(1), 1-13. https://doi.org/10.35206/jan.1457624
  • Alipieva, K., Kokubun, T., Taskova, R., Evstatieva, L., & Handjieva, N. (2007). LC–ESI-MS analysis of iridoid glucosides in Lamium species. Biochemical Systematics and Ecology, 35(1), 17–22. https://doi.org/10.1016/j.bse.2006.07.004
  • Alves, L.F.A., Johann, L., & Oliveira, D.G.P. (2023). Challenges in the biological control of pests in poultry production: a critical review of advances in Brazil. Neotropical Entomology, 52(2), 292-301. https://doi.org/10.1007/s13744-022-01021-1
  • Ansari, M.A., Vasudevan, P., Tandon, M., & Razdan, R.K. (2000). Larvicidal and mosquito repellent action of peppermint (Mentha piperita) oil. Bioresource technology, 71(3), 267-271. https://doi.org/10.1016/S0960-8524(99)00079-6
  • Arena, J.S., Merlo, C., Defagó, M.T., & Zygadlo, J.A. (2020). Insecticidal and antibacterial effects of some essential oils against the poultry pest Alphitobius diaperinus and its associated microorganisms. Journal of Pest Science, 93, 403-414. https://doi.org/10.1007/s10340-019-01141-5
  • Aydın, Ç., & Mammadov, R. (2017). İnsektisit aktivite gösteren bitkisel sekonder metabolitler ve etki mekanizması. Marmara Pharmaceutical Journal, 21(1), 30-37. https://doi.org/10.12991/marupj.259878
  • Baran, P., & Özdemir, C. (2013). Morphological, anatomical and cytological studies on endemic Lamium pisidicum. Pakistan Journal of Botany, 45(1), 73-85.
  • Bedini, S., Cosci, F., Tani, C., Pierattini, E.C., Venturi, F., Lucchi, A., & Conti, B. (2020). Essential oils as post-harvest crop protectants against the fruit fly Drosophila suzukii: Bioactivity and organoleptic profile. Insects, 11(8), 508. https://doi.org/10.3390/insects11080508
  • Bedini, S., Djebbi, T., Ascrizzi, R., Farina, P., Pieracci, Y., Echeverría, M.C., & Conti, B. (2024). Repellence and attractiveness: The hormetic effect of aromatic plant essential oils on insect behavior. Industrial Crops and Products, 210, 118122. https://doi.org/10.1016/j.indcrop.2024.118122
  • Bedini, S., Flamini, G., Girardi, J., Cosci, F., & Conti, B. (2015). Not just for beer: Evaluation of spent hops (Humulus lupulus L.) as a source of eco-friendly repellents for insect pests of stored foods. Journal of Pest Science, 88, 583-592. https://doi.org/10.1007/s10340-015-0647-1
  • Birkett, M.A., Al Abassi, S., Kröber, T., Chamberlain, K., Hooper, A.M., Guerin, P.M., & Wadhams, L.J. (2008). Antiectoparasitic activity of the gum resin, gum haggar, from the East African plant, Commiphora holtziana. Phytochemistry, 69(8), 1710-1715. https://doi.org/10.1016/j.phytochem.2008.02.017
  • Bouchard, P., Smith, A.B., Douglas, H., Gimmel, M.L., Brunke, A.J., & Kanda, K. (2017). Insect biodiversity science and society (Chapter 11): Biodiversity of coleoptera, New York: Wiley online Library. https://doi.org/10.1002/9781118945568.ch11
  • Brown, M., & Hebert, A.A. (1997). Insect repellents: an overview. Journal of the American Academy of Dermatology, 36(2), 243-249. https://doi.org/10.1016/S0190-9622(97)70289-5
  • Campolo, O., Giunti, G., Russo, A., Palmeri, V., & Zappalà, L. (2018). Essential oils in stored product insect pest control. Journal of Food Quality, 2018(1), 6906105. https://doi.org/10.1155/2018/6906105
  • Canlı, K., Yetgin, A., Akata, I. & Altuner, E.M. (2017). Antimicrobial activity and chemical composition screening of Epilobium montanum root. Indian Journal of Pharmaceutical Education and Research, 51(3), 239-243. https://doi.org/10.5530/ijper.51.3s.21
  • Chauhan, N., Kumar, P., Mishra, S., Verma, S., Malik, A., & Sharma, S. (2015). Insecticidal activity of Jatropha curcas extracts against housefly, Musca domestica. Environmental Science and Pollution Research, 22, 14793-14800. https://doi.org/10.1007/s11356-015-4686-1
  • Chellappandian, M., Vasantha-Srinivasan, P., Senthil-Nathan, S., Karthi, S., Thanigaivel, A., Ponsankar, A., Kalaivani, K., & Hunter, W.B. (2018). Botanical essential oils and uses as mosquitocides and repellents against dengue. Environment International, 113, 214–230. https://doi.org/10.1016/j.envint.2017.12.038.
  • Chen, Y., Luo, J., Zhang, N., Yu, W., Jiang, J., & Dai, G. (2021). Insecticidal activities of Salvia hispanica L. essential oil and combinations of their main compounds against the beet armyworm Spodoptera exigua. Industrial Crops & Products, 162, 113271. https://doi.org/10.1016/j.indcrop.2021.113271
  • Chernaki-Leffer, A.M., Sosa-Gómez, D.R., Almeida, L.M., & Lopes I.O.N. (2011). Susceptibility of Alphitobius diaperinus (Panzer) (Coleoptera, Tenebrionidae) to cypermethrin, dichlorvos and triflumuron in southern Brazil. Revista Brasileira de Entomologia, 55(1), 125–128. https://doi.org/10.1590/S0085-56262011000100020
  • Cruz-Estrada, A., Gamboa-Angulo, M., Borges-Argáez, R., & Ruiz-Sánchez, E. (2013). Insecticidal effects of plant extracts on immature whitefly Bemisia tabaci Genn. (Hemiptera: Aleyroideae). Electronic Journal of Biotechnology, 16(1), 6-6. http://doi.org/10.2225/vol16-issue1-fulltext-6
  • Do Prado, G.P., Stefani, L.M., Da Silva, A.S., Smaniotto, L.F., Garcia, F.R.M., & De Moura, N.F. (2013). Alphitobius diaperinus (Coleoptera: Tenebrionidae) susceptibility to Cunila angustifolia essential oil. Journal of Medical Entomology, 50(5), 1040-1045. https://doi.org/10.1603/ME12277
  • Ebadollahi, A. (2013). Plant essential oils from Apiaceae Family as alternatives to conventional insecticides. Ecologia Balkanica, 5(1), 149-172.
  • El-Sayed, Z.I. (2016). Chemical composition, antimicrobial and insecticidal activities of the essential oil of Lamium maculatum L. Grown in Egypt. Biosciences Biotechnology Research Asia, 5(1), 65-72.
  • Erler, F., Ulug, I., & Yalcinkaya, B. (2006). Repellent activity of five essential oils against Culex pipiens. Fitoterapia, 77(7-8), 491-494. https://doi.org/10.1016/j.fitote.2006.05.028
  • Farina, P., Venturi, F., Ascrizzi, R., Flamini, G., Chiriboga Ortega, R.D., Echeverría, M.C., ... & Conti, B. (2021). Andean plants essential oils: A scented alternative to synthetic insecticides for the control of blowflies. Insects, 12(10), 894. https://doi.org/10.3390/insects12100894
  • Flamini, G., Cioni, P.L., & Morelli, I. (2005). Composition of the essential oils and in vivo emission of volatiles of four Lamium species from Italy: L. purpureum, L. hybridum, L. bifidum and L. amplexicaule. Food Chemistry, 91(1), 63-68. https://doi.org/10.1016/j.foodchem.2004.05.047
  • Francikowski, J., Baran, B., Cup, M., Janiec, J., & Krzyżowski, M. (2019). Commercially available essential oil formulas as repellents against the stored-product pest Alphitobius diaperinus. Insects, 10(4), 96. https://doi.org/10.3390/insects10040096
  • Frezza, C., Venditti, A., Serafini, M., & Bianco, A. (2019). Chapter 4 – Phytochemistry, chemotaxonomy, ethnopharmacology, and Nutraceutics of Lamiaceae. Studies in Natural Products Chemistry (Vol. 62). Elsevier: Academic press. https://doi.org/10.1016/B978-0-444-64185-4.00004-6
  • Gebauer, S., Pompermayer, K., de Oliveira, D.G.P., da Silva Pinto, F.G., Rosset, J., Bandeira, D.M., & Alves, D.S. (2024). Mentha spp. essential oils: toxicity to Alphitobius diaperinus, activity against poultry pathogenic bacteria, and Beauveria bassiana compatibility. Environmental Science and Pollution Research, 31(23), 34010-34027. https://doi.org/10.1007/s11356-024-33484-7
  • Ghoneim, M.M., Musa, A., El-Hela, A.A., & Elokely, K.M. (2018). Evaluation and understanding the molecular basis of the antimethicillin-resistant Staphylococcus aureus activity of secondary metabolites isolated from Lamium amplexicaule. Pharmacognosy Magazine, 14(55). https://doi.org/10.4103/pm.pm_541_17
  • Gikonyo, N.K., Hassanali, P.G., Njagi, P.M., Gitu, R.B. & Saini, R.K. (2002). Responses of Glossina morsitans to blends of electroantennographically active compounds in the odour of its preferred (Buffalo and Ox) and nonpreferred (Waterbuck) Hosts. Journal of Chemistry Ecololog, 29(2), 2331-2333.
  • Goodwin, M.A., Davis, J.F., McNulty, M.S., Brown, J. & Player, E.C. (1993). Enteritis and so-called runting stunting syndrome in Georgia broiler chicks. Avian Dis, 37, 451–458.
  • Grujić, S.M., Savković, Ž.D., Ristić, M.S., Džamić, A.M., Grbić, M.V.L., Vukojević, J.B., & Marin, P.D. (2020). Glandular trichomes, essential oil composition, anti-Aspergillus and antioxidative activities of Lamium purpureum L. ethanolic extracts. Archives of Biological Sciences, 72(2), 253-263. https://doi.org/10.2298/ABS200117019G
  • Gupta, R.C., Mukherjee, I.R.M., Malik, J.K., Doss, R.B., Dettbarn, W.D., & Milatovic, D. (2019). Insecticides: Biomarkers in Toxicology. Elsevier: Academic Press.
  • Haas, R.A., Crișan, I., Vârban, D., & Vârban, R. (2024). Aerobiology of the Family Lamiaceae: Novel Perspectives with Special Reference to Volatiles Emission. Plants, 13(12), 1687. https://doi.org/10.3390/plants13121687
  • Harris, F. 1966. Observations on the lesser mealworm, Alphitobius diaperinus (Panz.). Journal of the Georgia Entomological Society, 1, 17–18.
  • Isman, M.B. (2000). Plant essential oils for pest and disease management. Crop Protection, 19(8-10), 603-608. https://doi.org/10.1016/S0261-2194(00)00079-X
  • Isman, M.B. (2006). Botanical insecticides, deterrents, and repellents in modern agriculture and an increasingly regulated world. Annual Review of Entomology, 51(1), 45-66. https://doi.org/10.1146/annurev.ento.51.110104.151146
  • Jilani, G., & Su, H.C. (1983). Laboratory studies on several plant materials as insect repellants for protection of cereal grains. Journal of Economic Entomology, 76(1), 154-157. https://doi.org/10.1093/jee/76.1.154
  • Jones, C.D., Woods, K.E., & Setzer, W.N. (2012). A chemical ecological investigation of the allelopathic potential of Lamium amplexicaule and Lamium purpureum. Open Journal of Ecology, 2(4), 167-177. http://doi.org/10.4236/oje.2012.24020
  • Kamruzzaman, M., Shahjahan, M., & Mollah, M.L.R. (2005). Evaluation of six plant extracts for their possible repellent effects against lesser mealworm, Alphitobius diaperinus (Panzer). Journal of the Bangladesh Agricultural University, 3(1), 43-48. http://doi.org/10.22004/ag.econ.276405
  • Kelayeh, T.P.S., Abedinzade, M., & Ghorbani, A. (2019). A review on biological effects of Lamium album (white dead nettle) and its components. Journal of Herbmed Pharmacology, 8(3), 185-193. http://doi.org/10.15171/jhp.2019.28
  • Konarska, A., Weryszko-Chmielewska, E., Matysik-Woźniak, A., Sulborska, A., Polak, B., Dmitruk, M., & Rejdak, R. (2021). Histochemical and phytochemical analysis of Lamium album subsp. album L. corolla: Essential oil, triterpenes, and iridoids. Molecules, 26(14), 4166. https://doi.org/10.3390/molecules26144166
  • Kumar, P. (1988). Flesh eating behaviour of Alphitobius diaperinus Panz. (Tenebrionidae; Coleoptera). Indian Journal of Entomology, 48, 113–115.
  • Kurihara, T., & Kikuchi, M. (1976). On the constituents of the essential oil from Lamium purpureum L. (author's transl). Yakugaku zasshi: Journal of the Pharmaceutical Society of Japan, 96(11), 1348-1351. https://doi.org/10.1248/yakushi1947.96.11_1348
  • Lahlou, M. (2004). Methods to Study the Phytochemistry and Bioactivity of Essential Oils, Phytotherapy Research. Phytotherapy Reserch, 18, 435–448. https://doi.org/10.1002/ptr.1465
  • Lawal, O.A., Ogunwande, I.A., Salvador, A.F., Sanni, A.A., & Opoku, A.R. (2014). Pachira glabra Pasq. Essential oil: Chemical constituents, antimicrobial and insecticidal activities. Journal of Oleo Science, 63(6), 629-635. https://doi.org/10.5650/jos.ess13179
  • Mantzoukas, S., Kosmidou, G., Gekas, A., Kitsiou, F., Eliopoulos, P.A., & Patakioutas, G. (2022). A preliminary analysis on the insecticidal effect of cyantraniliprole against stored-product pests. Applied Sciences, 12(3), 1297. https://doi.org/10.3390/app12031297
  • Mészáros, T., & Tóth, S. (2021). Effects of temperature and precipitation on Diptera species, and flower preference of Diptera species in an Adonis vernalis population. Georgikon for Agriculture, 25(1), 29-38.
  • Nerio, L.S., Olivero-Verbel, J., & Stashenko, E. (2010). Repellent activity of essential oils: a review. Bioresource technology, 101(1), 372-378. https://doi.org/10.1016/j.biortech.2009.07.048
  • de Paula, J.P., Gomes-Carneiro, M.R., & Paumgartten, F.J. (2003). Chemical composition, toxicity and mosquito repellency of Ocimum selloi oil. Journal of Ethnopharmacology, 88(2-3), 253-260. https://doi.org/10.1016/S0378-8741(03)00233-2
  • Pascual-Villalobos, M.J., & Ballesta-Acosta, M.C. (2003). Chemical variation in an Ocimum basilicum germplasm collection and activity of the essential oils on Callosobruchus maculatus. Biochemical Systematics and Ecology, 31(7), 673-679. https://doi.org/10.1016/S0305-1978(02)00183-7
  • Peter, R., Josende, M.E., da Silva Barreto, J., da Costa Silva, D.G., da Rosa, C.E., & Maciel, F. E. (2022). Effect of Illicium verum (Hook) essential oil on cholinesterase and locomotor activity of Alphitobius diaperinus (Panzer). Pesticide Biochemistry and Physiology, 181, 105027. https://doi.org/10.1016/j.pestbp.2021.105027
  • Pimentel, D., Lach, L., Zuniga, R., & Morrison, D. (2000). Environmental and economic costs of nonindigenous species in the United States. BioScience, 50(1), 53-65. https://doi.org/10.1641/0006-3568(2000)050[0053:EAECON]2.3.CO;2
  • Prajapati, V., Tripathi, A.K., Aggarwal, K.K., & Khanuja, S.P.S. (2005). Insecticidal, repellent and oviposition-deterrent activity of selected essential oils against Anopheles stephensi, Aedes aegypti and Culex
  • quinquefasciatus. Bioresource Technology, 96(16), 1749-1757. https://doi.org/10.1016/j.biortech.2005.01.007 Prins, C.L., Vieira, I.J., & Freitas, S.P. (2010). Growth regulators and essential oil production. Brazilian Journal of Plant Physiology, 22, 91-102. https://doi.org/10.1590/S1677-04202010000200003
  • Rajkumar, S., & Jebanesan, A. (2005). Repellency of volatile oils from Moschosma polystachyum and Solanum xanthocarpum against filarial vector Culex quinquefasciatus say. Tropical Biomedicine, 22(2), 139-142.
  • Ravi Kiran, S., & Sita Devi, P. (2007). Evaluation of mosquitocidal activity of essential oil and sesquiterpenes from leaves of Chloroxylon swietenia DC. Parasitology Research, 101, 413-418. https://doi.org/10.1007/s00436-007-0485-z
  • Regnault-Roger, C., Vincent, C., & Arnason, J.T. (2012). Essential oils in insect control: low-risk products in a high-stakes world. Annual Review of Entomology, 57(1), 405-424. https://doi.org/10.1146/annurev-ento-120710-100554
  • Romani, R., Bedini, S., Salerno, G., Ascrizzi, R., Flamini, G., Echeverría, M.C., Farina, P., & Conti, B. (2019). Andean flora as a source of new repellents against insect pests: behavioral, morphological and electrophysiological studies on Sitophilus zeamais (Coleoptera: Curculionidae). Insects, 10, 171. https://doi.org/10.3390/insects10060171
  • Sakamoto, C., Suzuki, M., Iwasaki, A., Suenaga, K., & Kato-Noguchi, H. (2019). Evaluation of allelopathic competency of Lamium amplexicaule and identification of its allelopathic active substance. Emirates Journal of Food and Agriculture, 31(2), 76-80. https://doi.org/10.9755/ejfa.2019.v31.i2.1907
  • Salehi, B., Armstrong, L., Rescigno, A., Yeskaliyeva, B., Seitimova, G., Beyatli, A., ... & Sharifi-Rad, J. (2019). Lamium plants—A comprehensive review on health benefits and biological activities. Molecules, 24(10), 1913. https://doi.org/10.3390/molecules24101913
  • Santana, C.B., Souza, J.G.L., Toledo, A.G., Alves, L.F.A., Alves, D.S., Corrêa, J.M., & Pinto, F.G.S. (2021). Antimicrobial and insecticidal effects of essential oil and plant extracts of Myrcia oblongata DC in pathogenic bacteria and Alphitobius diaperinus. Brazilian Journal of Biology, 82, e233425. https://doi.org/10.1590/1519-6984.233425
  • Sanyaolu, N.O., Agboyinu, E.B., Yussuf, S.T., Sonde, O.I., Avoseh, O.N., & Ibikunle, A.A. (2019). Chemical composition and insecticidal activity of the essential oils of Crateva adansonii DC. Leaf on Sitophilus zeamais and Callosobrunchus maculatus. Life Journal of Science, 21(3), 129-137. https://doi.org/10.4314/ijs.v21i3.11
  • Savchenko, T., Blackford, M., Sarker, S.D., & Dinan, L. (2001). Phytoecdysteroids from Lamium spp: identification and distribution within plants. Biochemical Systematics and Ecology, 29(9), 891-900. https://doi.org/10.1016/S0305-1978(01)00035-7
  • Sparagano, O., Di Domenico, D., Venturelli, C., Papadopoulos, E., Smallegange, R.C., & Giangaspero, A. (2018). Arthropod pests in the poultry industry. Pests and vector-borne diseases in the livestock industry: Wageningen Academic Publishers. https://doi.org/10.3920/978-90-8686-863-6_2
  • Subekti, N., & Cahyaningrum, S.H. (2020). Insecticidal activity of some plant essential oil extracts against Alphitobius diaperinus pest causing avian influenza. Journal of Physics: Conference Series. 1567(3), p. 032048. IOP Publishing. https://doi.org/10.1088/1742-6596/1567/3/032048
  • Subekti, N., Cahyaningrum, S.H., & Maulana, S. (2022). Effective control of Alphitobius diaperinus using natural bioinsecticides: Effective control of Alphitobius diaperinus using natural bioinsecticides. Journal of Tropical Life Science, 12(3), 289-297. https://doi.org/10.11594/jtls.12.03.01
  • Sukumar, K., Perich, M.J., & Boobar, L.R. (1991). Botanical derivatives in mosquito control: a review. Journal of the American Mosquito Control Association, 7(2), 210-237.
  • Sulborska, A., Dmitruk, M., Konarska, A., & Weryszko-Chmielewska, E. (2014). Adaptations of Lamium album L. flowers to pollination by Apoidea. Acta Scientiarum Polonorum. Hortorum Cultus, 13(6), 31-43.
  • Szczepanik, M., Walczak, M., Zawitowska, B., Michalska‐Sionkowska, M., Szumny, A., Wawrzeńczyk, C., & Brzezinska, M.S. (2018). Chemical composition, antimicromicrobial activity and insecticidal activity against the lesser mealworm Alphitobius diaperinus (Panzer)(Coleoptera: Tenebrionidae) of Origanum vulgare L. ssp. hirtum (Link) and Artemisia dracunculus L. essential oils. Journal of the Science of Food and Agriculture, 98(2), 767-774. https://doi.org/10.1002/jsfa.8524
  • Szołyga, B., Gniłka, R., Szczepanik, M., & Szumny, A. (2014). Chemical composition and insecticidal activity of Thuja occidentalis and Tanacetum vulgare essential oils against larvae of the lesser mealworm, Alphitobius diaperinus. Entomologia Experimentalis et Applicata, 151(1), 1-10. https://doi.org/10.1111/eea.12166
  • Tamburro, M., Sammarco, M.L., Trematerra, P., Colacci, M., & Ripabelli, G. (2022). Alphitobius diaperinus Panzer (Insecta, Coleoptera) in a single house of a broiler production facility as a potential source of pathogenic bacteria for broilers and humans. Letters in Applied Microbiology, 74(6), 883-892. https://doi.org/10.1111/lam.13679
  • Tawatsin, A., Wratten, S.D., Scott, R.R., Thavara, U., & Techadamrongsin, Y. (2001). Repellency of volatile oils from plants against three mosquito vectors. Journal of Vector Ecology, 26, 76-82.
  • Toji, T., Ishimoto, N., Egawa, S., Nakase, Y., Hattori, M., & Itino, T. (2021). Intraspecific convergence of floral size correlates with pollinator size on different mountains: a case study of a bumblebee-pollinated Lamium (Lamiaceae) flowers in Japan. BMC Ecology and Evolution, 21(1), 64. https://doi.org/10.1186/s12862-021-01796-8
  • Tripathi, A.K., Prajapati, V., Verma, N., Bahl, J.R., Bansal, R.P., Khanuja, S.P.S., & Kumar, S. (2002). Bioactivities of the leaf essential oil of Curcuma longa (var. ch-66) on three species of stored-product beetles (Coleoptera). Journal of Economic Entomology, 95(1), 183-189. https://doi.org/10.1603/0022-0493-95.1.183
  • Tripathi, A.K., Prajapati, V., Aggarwal, K.K., Khanuja, S.P.S., & Kumar, S. (2000). Repellency and toxicity of oil from Artemisia annua to certain stored-product beetles. Journal of Economic Entomology, 93(1), 43-47.https://doi.org/10.1603/0022-0493-93.1.43
  • Tripathi, A.K., Upadhyay, S., Bhuiyan, M., & Battacharya, P.B. (2009). A review on prospects of essential oils as bio pesticide in insect pest management. Journal of Pharmacognosy and Phytotherapy, 1, 52–63. https://doi.org/10.5897/JPP.9000003
  • Valkov, R. (2021). On the importance of inconspicuous flowering plants–how a" noxious weed" sustains valuable insects. Phegea, 49(1), 30.
  • Volpato, A., Lorenzetti, W.R., Zortea, T., Giombelli, L.C.D.D., Baretta, D., Santos, R.C.V., ... & Silva, A.D. (2016). Melaleuca alternifolia essential oil against the lesser mealworm (Alphitobius diaperinus) and its possible effect on the soil fauna. Revista Brasileira de Ciencia Avicola, 18(1), 41-46. https://doi.org/10.1590/1516-635X1801041-046
  • Wang, X., Li, Q., Shen, L., Yang, J., Cheng, H., Jiang, S., ... & Wang, H. (2014). Fumigant, contact, and repellent activities of essential oils against the darkling beetle, Alphitobius diaperinus. Journal of Insect Science, 14, 75. https://doi.org/10.1093/jis/14.1.75
  • Watson, D.W., Kaufman, P.E., Rutz, D.A., & Glenister, C.S. (2001). Impact of the darkling beetle Alphitobius diaperinus (Panzer) on establishment of the predaceous beetle Carcinops pumilio (Erichson) for Musca domestica control in caged-layer poultry houses. Biological Control, 20(1), 8-15. https://doi.org/10.1006/bcon.2000.0874
  • Yalçin, F.N., & Kaya, D. (2006). Ethnobotany, pharmacology and phytochemistry of the genus Lamium (Lamiaceae). FABAD Journal of Pharmaceutical Sciences, 31(1), 43.
  • Yordanova, Z.P., Zhiponova, M.K., Iakimova, E.T., Dimitrova, M.A., & Kapchina-Toteva, V.M. (2014). Revealing the reviving secret of the white dead nettle (Lamium album L.). Phytochemistry Reviews, 13, 375-389. https://doi.org/10.1007/s11101-014-9356-2
There are 86 citations in total.

Details

Primary Language English
Subjects Entomology
Journal Section Research Articles
Authors

Berna Sanön 0000-0002-4343-770X

Erinç Çelik Biçer 0000-0002-7659-5528

Project Number Herhangi bir proje desteği bulunmamaktadır.
Early Pub Date September 30, 2025
Publication Date October 15, 2025
Submission Date May 3, 2025
Acceptance Date September 23, 2025
Published in Issue Year 2025 Volume: 9 Issue: 2

Cite

APA Sanön, B., & Çelik Biçer, E. (2025). Determination of Fumigant, Contact, and Repellent-Attractant Effects of Lamium purpureum L. Essential Oil on Alphitobius diaperinus (Coleoptera: Tenebrionidae). Commagene Journal of Biology, 9(2), 187-197. https://doi.org/10.31594/commagene.1690665