Effect of some chemical and biological insecticides on European corn borer control in Moghan region
Subject Areas :
Agroecology Journal
Mozhgan Molaei
1
,
Soleiman Jamshidi
2
1 - Department of Plant Protection, Miyaneh Branch, Islamic Azad University, Miyaneh, Iran
2 - Department of Plant Protection, Miyaneh Branch, Islamic Azad University, Miyaneh, Iran
Received: 2017-07-15
Accepted : 2018-06-11
Published : 2018-05-22
Keywords:
stalk worm,
Abstract :
To evaluate some chemical and biological insecticides impact on European corn borer, an experiment was carried out based on a randomized complete block design in three replications in Moghan plain, Iran. The pest flight peak was determined by standard pheromone delta-trap considered as insecticides application time including indoxacarb, deltamethrin, diazinon, fanvalerate, alpha-cypermethrin+ teflubenzuron and B.t. as biological insecticide containing Bacillus thurengiensis using a dorsal-swab sprayer. Pest mortality percentage and stem hole number in the first and second generation were recorded 3 and 7 days after treatment application. In harvesting time, yield and yield component including plant height, thousand kernel number, seed number per row and biological yield were measured. Despite significant difference of B.t. insecticide on pest losses, it could not be effect on corn yield and yield components. The effect of chemical insecticide on pest mortality and stem hole number was partially equal; however, the weakest one was diazinon in this regard. Also, alpha-cypermethrin+ teflubenzuron and indoxacarb had better improving effect on corn yield and yield component than others. On the whole, alpha-cypermethrin+ teflubenzuron application is recommended to combat with European corn borer in corn farms in Maghan plain region.
References:
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Chapman AV, Kuhar TP, Schultz PB, Leslie TW, Fleischer SJ, Dively GP, Whalen J (2009). Integrating chemical and biological control of European corn borer in Bell Pepper. Journal of Econ. Entomology 102: 287-295.
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Hudon M, LeRoux EJ (1986) Biology and population dynamics of the European corn borer (Ostrinia nubilalis) with special reference to sweet corn in Quebec. I. Systematics, morphology, geographical distribution, host range, economic importance. Phytoprotection, 67: 39-54.
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Masoero F, Gallo A, Zanfi C, Giuberti G and Spanghero M (2010) Chemical composition and rumen degradability of three corn hybrids treated with insecticides against the European corn borer (Ostrinia nubilalis). Animal Feed Science Technology 155: 25-32.
Mazaheri D, Majnoon Hosseini N (2005) Principles of General Agriculture. Tehran University Publishers: Tehran.
Mazurek, J., Hurej, M. and Jackowski, J (2005) The effectiveness of selected chemical and biological insecticides in control of European corn borer (Ostrinia nubililis Hbn.) on sweet corn. Journal of Plant Protection Research 45: 41-47.
Ministry of Jihad-e-Agriculture (2015) Agricultural Crop annual report Years (1393-94). Agricultural Statistics. Department of Information Technology, Ministry of Jihad –e- Agriculture 1: 33-35.
Mirhadi M (1989) Guides for Corn Pests and Diseases in Iran and the World. Scientific Information Center for Agriculture: Tehran. [in Persian}
Najafi Navaei A, Taghizadeh, M, Javan Moghaddam H, Osco, T, Attaran M (2002) The study of Trichogramma pintoi and Habrobracon hebetor efficiency in Moghan corn farms. The proceedings of 15th Plant Protection Congress, Kermanshah, Iran. 327.
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Arzani A (2004) Reproduction of Crops. Isfahan University Publisher: Isfahan. 398-430.
Chapman AV, Kuhar TP, Schultz PB, Leslie TW, Fleischer SJ, Dively GP, Whalen J (2009). Integrating chemical and biological control of European corn borer in Bell Pepper. Journal of Econ. Entomology 102: 287-295.
Dadpour H (2006) Described Project of Using Biological Agents in Corn Farms of Moghan Agriculture and Animal Husbandry Association, Biological Research Department. 68 pp. [In Persian with English abstract]
FAO (2015) Tropical maize, Improvement and production. Food and Agriculture Organization of the united nations production and protection Series. No. 23. 363 pp
Gallagher EJ (1984) Cereal production. Butterworths. 354 pp.
Gianessi LP, Carpenter JE (1999) Agricultural biotechnology: Insect Control Benefits. National Center for Food and Agricultural Policy. Washington: 5–36.
Hudon M, LeRoux EJ (1986) Biology and population dynamics of the European corn borer (Ostrinia nubilalis) with special reference to sweet corn in Quebec. I. Systematics, morphology, geographical distribution, host range, economic importance. Phytoprotection, 67: 39-54.
Khanjani M (2005) Field Crops Pests in Iran. Bu-Ali Sina University Publications: Hamedan.
Masoero F, Gallo A, Zanfi C, Giuberti G and Spanghero M (2010) Chemical composition and rumen degradability of three corn hybrids treated with insecticides against the European corn borer (Ostrinia nubilalis). Animal Feed Science Technology 155: 25-32.
Mazaheri D, Majnoon Hosseini N (2005) Principles of General Agriculture. Tehran University Publishers: Tehran.
Mazurek, J., Hurej, M. and Jackowski, J (2005) The effectiveness of selected chemical and biological insecticides in control of European corn borer (Ostrinia nubililis Hbn.) on sweet corn. Journal of Plant Protection Research 45: 41-47.
Ministry of Jihad-e-Agriculture (2015) Agricultural Crop annual report Years (1393-94). Agricultural Statistics. Department of Information Technology, Ministry of Jihad –e- Agriculture 1: 33-35.
Mirhadi M (1989) Guides for Corn Pests and Diseases in Iran and the World. Scientific Information Center for Agriculture: Tehran. [in Persian}
Najafi Navaei A, Taghizadeh, M, Javan Moghaddam H, Osco, T, Attaran M (2002) The study of Trichogramma pintoi and Habrobracon hebetor efficiency in Moghan corn farms. The proceedings of 15th Plant Protection Congress, Kermanshah, Iran. 327.