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Articles

Phytochemical and acaricidal study of the Kermani lemongrass, Dracocephalum polychaetum Bornm. (Lamiaceae) essential oil against Tetranychus urticae Koch

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Pages 503-509 | Received 15 Jul 2022, Accepted 30 Sep 2022, Published online: 16 Oct 2022

References

  • Abbasipour H, Mahmoudvand M, Rastegar F, Basij M. 2010. Insecticidal activity of Peganum harmala seed extract against the diamondback moth, Plutella xylostella. Bulletin of Insectology. 63:259–263.
  • Abbasipour H, Mahmoudvand M, Rastegar F, Hosseinpour MH. 2011. Bioactivities of the jimsonweed extract, Datura stramonium L. (Solanaceae) on Tribolium castaneum (Coleoptera: Tenebrionidae). Turkish Journal of Agriculture and Forestry. 35:623–629.
  • Abdelgaleil AMS, Badawy MEI. 2006. Acaricidal and molluscicidal potential of three essential oils isolated from Egyptian plants. Journal of Pest Control and Environmental Sciences. 14:35–46.
  • Amer A, Mehlhorn H. 2006. Repellency effect of forty-one essential oils against Aedes, Anopheles, and Culex mosquitoes. Parasitology Research. 99:478–490.
  • Arnason JT, Philogene BJR, Morand P. 1989. Insecticides of plant origin. Washington DC (USA): American Chemistry Society.
  • Aziz EE, Abbass MH. 2010. Chemical composition and efficiency of five essential oils against the pulse beetle Callosobruchus maculatus (F.) on Vigna radiata seeds. American-Eurasian Journal Agricultural & Environmental Sciences. 8:411–419.
  • Balbino JM. 2006. Tecnologias para Produção, Colheita e Pós colheita do Morangueiro. Incaper. 2:77.
  • Bernardi D, Botton M, Nava DE, Zawadneak MA. 2015. Guia para identificação e monitoramento de pragas e seus inimigos naturais em morangueiro. Brasília (DF): Embrapa. p. 46.
  • Boroomand N, Moghbeli M, Hosseini Grouh MS, Farajpour M. 2017. Phytochemical components, total phenol and mineral contents and antioxidant activity of six major medicinal plants from Rayen, Iran. Natural Product Research. 32:564–567.
  • Brust GE, Gotoh T. 2018. Mites: biology, ecology, and management. In: Wakil, W., Perring, T.M., Brust, G.E., editor(s). Sustainable management of arthropod pests of tomato. California, USA: Elsevier; p. 111–130.
  • Çalmaşur Ö, Aslan İ, Şahin F. 2006. Insecticidal and acaricidal effect of three Lamiaceae plant essential oils against Tetranychus urticae Koch and Bemisia tabaci Genn. Industrial Crops Products. 23:140–146.
  • Cazaux M, Nvarro M, Bruinsma KA, Zhurov V, Negrave T, Leeuwen VT, Grbic V, Grbic M. 2014. Application of two-spotted spider mite Tetranychus urticae for plantpest interaction studies. Journal of Visualized Experiments. 89:7.
  • Choi WI, Lee SG, Park HM, Ahn YJ. 2004. Toxicity of plant essential oils to Tetranychus urticae (Acari: Tetranychidae) and Phytoseiulus persimilis (Acari: Phytoseiidae). Journal of Economic Entomology. 97:553–558.
  • Chu SS, Liu SL, Liu QZ, Liu ZL, Du SS. 2011. Composition and toxicity of Chinese Dracocephalum moldavica (Labiatae) essential oil against two grain storage insects. Journal of Medicinal Plants Research. 5:5262–5267.
  • da Camara CAG, Akhtar Y, Isman MB, Seffrin RC, Born FS. 2015. Repellent activity of essential oils from two species of Citrus against Tetranychus urticae in the laboratory and greenhouse. Crop Protection. 74:110–115.
  • Daferera DJ, Ziogas BN, Polissiou MG. 2000. GC-MS analysis of essential oils from some Greek aromatic plants and their fungitoxicity on Penicillium digitatum. Journal of Agricultural and Food Chemistry. 48:2576–2581.
  • Dastmalchi K. 2008. Dracocephalum moldavica and Melissa officials: chemistry and bioactivity relevant in Alzheimer disease therapy. Helsinki: ACS Publications.
  • Erler F, Ulug I, Yalcinkaya B. 2006. Repellent activity of five essential oils against Culex pipiens. Fitoterapia. 77:491–494.
  • Fadini MA, Pallini A, Venzon M. 2004. Controle de ácaros em sistema de produção integrada de morango. Ciência Rural. 34:1271–1277.
  • Farahani S, Bandani A, Amiri A. 2020. Toxicity and repellency effects of three essential oils on two populations of Tetranychus urticae (Acari: Tetranychidae). Persian Journal of Acarology. 9:67–81.
  • Fatemikia S, Abbasipour H, Karimi J, Saeedizadeh A, Sheikhi Gorjan A. 2014. Efficacy of Elettaria cardamomum L. (Zingiberaceae) essential oil on the two spotted spider mite, Tetranychus urticae Koch (Acari: Tetranychidae). Archives of Phytopathology and Plant Protection. 47:1008–1014.
  • Fatemikia S, Abbasipour H, Saeedizadeh A. 2017. Phytochemical and acaricidal study of the galbanum, Ferula gumosa Boiss. (Apiaceae) essential oil against Tetranychus urticae Koch (Tetranychidae). Journal of Essential Oil Bearing Plants. 20:185–195.
  • Fathipour Y, Ahmadi M, Kamali K. 2006. Life table and survival rate of Tetranychus urticae (Acari: Tetranychidae) on different bean varieties. Iranian Journal of Agricultural Sciences. 37:65–71. (In Persian with English abstract).
  • Fattahi M, Bonfill M, Fattahi B, Torras-Claveria L, Sefidkon F, Cusido RM, Palazon J. 2016. Secondary metabolites profiling of Dracocephalum kotschyi Boiss at three phenological stages using uni-and multivariate methods. Journal of Applied Research on Medicinal and Aromatic Plants. 3:177–185.
  • Garay J, Brennan T, Bon D. 2020. Essential oils A viable pest control alternative. International Journal of Ecotoxicology and Ecobiology. 5:13.
  • Hoyt SC, Westigard PH, Croft BA. 1985. Cyhexatin resistance in Oregon populations of Tetranychus urticae Koch (Acarina: Tetranychidae). Journal of Economic Entomology. 78:656–659.
  • Isman MB. 2000. Plant essential oils for pest and disease management. Crop Protection. 19:603–608.
  • Isman MB, Machial CM. 2006. Pesticides based on plant essential oils: from traditional practice to commercialization. In: Rai M, Carpinella MC, editors. Naturally occurring bioactive compounds. BV: Elsevier. p. 29–44.
  • Javidnia K, Miri R, Fahham N, Mehregan I. 2005. Composition of the essential oil of Dracocephalum kotschyi Boiss. Journal of Essential Oil Research. 17:481–482.
  • Kakasy AZ, Lemberkovics E, Kursinszki L, Janicsak G, Szoeke E. 2004. Data to the phytochemical evaluation of Moldavian dragon head (Dracocephalum moldavica L., lamiaceae). Herba Polonica. 3:111–119.
  • Kim EH, Kim HK, Ahn YJ. 2003. Acaricidal activity of clove bud oil compounds against Dermatophagoides farinae and Dermatophagoides pteronyssinus (Acari: Pyroglyphidae). Journal of Agricultural and Food Chemistry. 51:885–889.
  • Kim JR, Perumalsamy H, Lee JH, Ahn YJ, Lee YS, Lee SG. 2016. Acaricidal activity of Asarum heterotropoides root-derived compounds and hydrodistillate constitutes toward Dermanyssus gallinae (Mesostigmata: Dermanyssidae). Experimental & Applied Acarology. 68:485–495.
  • Kim SI, Yi JH, Tak JH, Ahn YJ. 2004. Acaricidal activity of plant essential oils against Dermanyssus gallinae (Acari: Dermanyssidae). Veterinary Parasitology. 120:297–304.
  • Kogan M, Goeden RD. 1970. The host-plant range of Lema trilineata daturaphila (Coleoptera: Chrysomelidae). Annals of the Entomological Society of America. 63:1175–1180.
  • Komari T, Fujiwara R, Tanida M, Nomura J. 1995. Potential anti-depressant effect of lemon odor in rats. European Neurophysiopharmacology. 5:477–480.
  • Koschier EH, Sedy KA, Novak J. 2002. Influence of plant volatiles on feeding damage caused by the onion thrips Thrips tabaci. Crop Protection. 21:419–425.
  • Lawless J. 2002. The encyclopedia of essential oils: the complete guide to the use of aromatic oils in aromatherapy, herbalism, health & well-being. London: Thorsons.
  • Mahmoudvand M, Abbasipour H, Rastegar F, Hossienpour MH, Basij M. 2011. Efficacy of some plants as a post-harvest protectant against some major stored pests. Archives of Phytopathology and Plant Protection. 45:806–811.
  • Mehrabani M, Roholahi S, Foruomadi A. 2005. Phytochemical studies of Dracocephalum polychaetum Bornm. Journal of Medicinal Plants. 4:36–42.
  • Moayeri HRS, Ashouri A, Poll L, Enkegaard A. 2007. Olfactory response of a predatory mirid to herbivore induced plant volatiles: multiple herbivory versus single herbivory. Journal of Applied Entomology. 131:326–332.
  • Moro LB, Polanczy RA, Carvalho JR, Pratissoli D, Franco CR. 2012. Parâmetros biológicos e tabela de vida de Tetranychus urticae (Acari: Tetranychidae) em cultivares de mamão. Ciência Rural. 42:487–493. doi:10.1590/S0103-84782012000300016
  • Mozaffari F, Abbasipour H, Sheikhi Garjan A, Saboori A, Mahmoudvand M. 2013. Toxicity and oviposition deterrence and repellency of Mentha pulegium (Lamiacaeae) essential oils against Tetranychus urticae Koch (Teteranychidae). Journal of Essential Oil Bearing Plants. 16:575–581.
  • Omolo M, Okinyo D, Ndiege IO, Lwande W, Hassanali A. 2005. Fumigant toxicity of the essential oils of some African plants against Anopheles gambiae stricto. Phytomedicine. 11:241–246.
  • Pascual-Villalobos MJ, Robledo A. 1998. Screening for anti-insect activity in Mediterranean plants. Industrial Crops and Products. 8:183–194.
  • Prabakar K, Jebanesan A. 2004. Larvicidal efficacy of some Cucurbitacious plant leaf extracts against Culex quinquefasciatus (Say). Bioreseurce Techenology. 95:113–114.
  • Priestley CM, Williamson EM, Wafford KA, Sattelle DB. 2003. Thymol, a constituent of thyme essential oil, is a positive allosteric modulator of human GABA receptors and a homo-oligomeric GABA receptor from Drosophila melanogaster. British Journal of Pharmacology. 140:1363–1372.
  • Pumnuan J, Chandrapatya A, Insung A. 2010. Acaricidal activities of plant essential oils from three plants on the Mushroom mite, Luciaphorus perniciosus Rack (Acari: Pygmephoridae). Pakistan Journal of Zoology. 42:247–252.
  • Ritzinger CH, Souza JH. 2000. Mamão: fitossanidade. Embrapa Comunicação para Transferência de Tecnologia. 91:2000.
  • Roh HS, Lee BH, Park CG. 2013. Acaricidal and repellent effects of myrtacean essential oils and their major constituents against Tetranychus urticae (Tetranychidae). Journal of Asia Pacific Entomology. 16:245–249.
  • Roh HS, Lim EG, Kim J, Park CG. 2011. Acaricidal and oviposition deterring effects of santalol identified in sandalwood oil against two-spotted spider mite, Tetranychus urticae Koch (Acari: Tetranychidae). Journal of Pest Science. 84:495–501.
  • Saeidnia S, Gohari AR, Hadjiakhoondi A, Shafiee A. 2007. Bioactive compounds of the volatile oil of Dracocephalum kotschyi. Journal of Biosciences. 62:793–796.
  • Saeidnia S, Gohari AR, Uchyiyama N. 2004. Two new monoterpene glycosides and trypanocidal terpanocidal terpenoids from Dracocephalum kotschyi. Chemical & Pharmaceutical Bulletin. 10:1149–1150.
  • SAS Institute. 1997. SAS/STAT. guide for personal computers. Ver. 6.12. Cary (NC): SAS Institute.
  • Sedaratian A, Fathipour Y, Moharramipour S. 2011. Comparative life table analysis of Tetranychus urticae (Acari: Tetranychidae) on 14 soybean genotypes. Insect Science. 18:541–553.
  • Sellar W. 2001. The directory of essential oils. The C.W. Daniel Company Limited, Saffron Walden Tang E, Eisenbrand G (1992) Chinese drugs of plant origin. New York: Springer.
  • Sertkaya E, Kaya K, Soylu S. 2010. Acaricidal activities of essential oils from several medicinal plants against the carmine spider mite (Tetranychus cinnabarinus Boisd.) (Acari: Tetranychidae). Industrial Crops Products. 31:107–112.
  • Sonboli A, Gholipour A, Yousefzadi M. 2012. Antibacterial activity of the essential oil and main components of two Dracocephalum species from Iran. Natural Product Research. 26:2121–2125.
  • Wege PJ, Leonard PK 1994. Insecticide resistance action committee (IRAC) fruit crops spider mite resistance management guidelines. In: Proceeding of the Brighton Crop Protection Conference-Pest and Diseases, Brighton, England, pp. 427–430.
  • Windle R, Shanks N, Lightman S, Ingram C. 1997. Central oxytocin administration reduces stress-induce cortico sterone release and anxiety behavior in rats. Endocrinology. 138:2829–2834.
  • Yang P, Ma Y. 2005. Repellent effect of plant essential oils against Aedes albopictus. Journal of Vector Ecology. 30:231–234.
  • Zeng Q, Jin HZ, Qin JJ, Fu JJ, Hu XJ, Liu JH, Yan L, Chen M, Zhang WD. 2010. Chemical constituents of plants from the Genus Dracocephalum. Chemistry & Biodiversity. 7:1911–1929.

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