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بهینه سازی کنترل حشرات کامل سوسک توتون Lasioderma serricorne با استفاده از اتمسفر کنترل شده در مقایسه با کاربرد قرص فستوکسین | ||
پژوهش های کاربردی در گیاهپزشکی | ||
مقاله 3، دوره 10، شماره 3، مهر 1400، صفحه 29-39 اصل مقاله (1.47 M) | ||
نوع مقاله: مقاله پژوهشی | ||
شناسه دیجیتال (DOI): 10.22034/arpp.2021.13324 | ||
نویسندگان | ||
نرمین صادق زاده خیاطی؛ اروج ولیزادگان* | ||
گروه حشرهشناسی، دانشکده کشاورزی، دانشگاه ارومیه، ارومیه، ایران | ||
چکیده | ||
سوسک توتون Lasioderma serricorneبه بسیاری از محصولات انباری خسارت میزند. علیرغم تلاشها و تحقیقات مختلف، کنترل این آفت هنوز متکی به استفاده از قرص فستوکسین است که با توسعه مقاومت بسیاری از آفات انباری در برابر آن به یک ترکیب کمتر موثر تبدیل شده است. در این تحقیق اثر حشره کشی گازهای دی اکسید کربن و نیتروژن به تنهایی و در تلفیق با هم علیه حشرات کامل سوسک توتون مورد ارزیابی قرار گرفت. تلفات بعد از 24 ساعت ثبت گردید. نتایج نشان داد که گاز نیتروژن به تنهایی فاقد اثر کشندگی قابل توجه و معنی دار روی حشرات کامل آفت است. مقدار LC50 گاز دی اکسید کربن نیز برابر با 59/2498 پیپیام به دست آمد. در تلفیق گازهای مذکور نیز غلظتهای 254، 381 و 508 پیپیام از گاز نیتروژن با مقدار LC50 گاز دی اکسید کربن تلفیق داده شد. نتایج حاصل از اختلاط این دو گاز نشان داد بیشترین مقدار کشندگی گاز دی اکسید کربن در غلظتهای پایین از گاز نیتروژن حاصل می شود. طبق نتایح حاصل از تحقیق، هزینه استفاده از قرص فستوکسین در مقایسه با گاز دی اکسید کربن برای کنترل سوسک توتون بسیار بیشتر بود. میتوان روش برنامه ریزی خطی را به عنوان یک روش مفید برای بهینه سازی مدیریت کنترل این آفت معرفی کرد و با در نظر گرفتن هزینه پایین و اثر حشرهکشی بالای دی اکسید کربن و با بررسی کردن دیگر جوانب استفاده از آن، این فومیگانت را یک جایگزین مناسب برای فستوکسین در نظر گرفت. | ||
کلیدواژهها | ||
آفت انباری؛ برنامه ریزی خطی؛ قرص فستوکسین؛ گاز دی اکسید کربن؛ گاز نیتروژن | ||
اصل مقاله | ||
References Ahmdani MS, 2009. Phytosanitary management of Trogoderma granarium Everts with methyl bromide alternatives to ensure food security and safety, PhD Thesis of Arid Agriculture University Rawalpindi, Pakistan, 427 pp. Bagheri Zonouz E, 1996.Stored Product Pests and Their Control Methods. Sepehr Publication Center. Tehran, Iran, 305 pp. (In Persian). Bailey SW, 1955. Air-tight storage of grain; its effects on insect pests. I. Calandra granaria L. (Coleoptera: Curculionidae). Australian Journal of Agricultural Research 6: 33–51. Beikpor AR, Shayesteh N, Kazemi MH, Sadeghi R, 2009. Application of carbon dioxide and phosphine for controlling different life stages of Plodia interpunctella Hubner. Agricultural Sciences 3(9): 89–102 (In Persian with English abstract). Cao Y, Xu K, Zhu X, Bai Y, Yang W, et al., 2019. Role of modified atmosphere in pest control and mechanism of its effect on insects. Frontiers in Physiology 10: 206. Cassanova JL, 2002. An overview of the scientific aspect of ozone depletion and their impact on environment. Proceeding of International Conference on Alternative to Methyl Bromide, 5–8 March, Sevilla, Spain. Pp. 23–27. Eldein SAS, Sobhi N, 2019. Waste reduction by linear programing optimizing. In: IOP Conference Series: Materials Science and Engineering 610(1): 012079. Emekci M, 2010. Fumigation modified atmospheres and hermetic storage, 10th International Working Conference on Stored Product Protection, Julius-Kühn-Archiv, Pp. 303–313. Ghaderzadeh H, Ganji S, Ganji A, 2016. Determine the cost and share of cost factors in the production of potatoes (Case study: Gorveh and Dehgolan plain). In Proceedings of 1 th International Conference on Economic Planning, Sustainable and Balanced Regional Development, Approaches and Applications, 13–14 May, University of Kurdistan (In Persian with English abstract). Gilberg M, 1989. Inert atmosphere fumigation of museum objects. Studies in Conservation 34: 128–148. Gisi U, 1996. Synergistic interaction of fungicides in mixtures. Phytopathological 86(11): 1273–1279. Hassan I, Muhammad AR, Khan AI, Ilahi R, 2005. Use of linear programming model to determine the optimum cropping patter, production and income level: a case study from dera ghazi khan division. Journal of Agricultural and Social Science 1(1):32–34. Husain M, Rasool KG, Tufail M, Alhamdan AM, Mehmood, K, et al., 2015. Comparative efficacy of CO2 and ozone gases against Ephestia cautella (Lepidoptera: Pyralidae) larvae under different temperature regimes. Journal of Insect Science 15: 126. Jay EG, Cuff W, 1981. Weight loss and mortality of three life stages of Tribolium castaneum (Herbst) when exposed to four modified atmospheres. Journal of Stored Products Research 17(3): 117–124 Khan MA, 2014. Transportation cost optimization using linear programming. Proceedings International Conference on Mechanical, Industrial and Energy Engineering, 26–27 December, ICMIEE. Pp. 2241–2245. Li C, Li Z, Zhou B, Zheng XW, Cao Y, 2007. Effect of carbondioxide enriched atmosphere on the activity of acetylcholinesterase in adults of Stegobium paniceum and Lasioderma serricorne (Coleoptera: Anobiidae). Journal of Plant Protection 34: 642–646. Lindgren DL, Vincent LE, 1970. Effect of atmospheric gases alone or in combination on the mortality of granary and rice weevils. Journal of Economic Entomology 63(1970): 1926–1929. Marouf A, Shayesteh N, Rostam Kolaii SE, 2009. Assessment of the efficacy of current recommendations for fumigation with Phosphine to control Lasioderma serricorne F. (Col., Anobiidae) in tobacco storages. Journal of Entomological Research 1(3): 249–259. Mediouni-Ben Jemâa J, Tersim N, Khouja ML, 2011. Composition and repellent efficacy of essential oil from Laurus nobilis against adults of the cigarette beetle Lasioderma serricorne (Coleoptera: Anobiidae). Tunisian Journal of Plant Protection 6: 29–41. Navarro S, 1986. Gaseous fumigant mixtures with special reference to mixture of carbon dioxide with phosphine or methyl bromide. Proceedings of GASGA Seminar on Fumigation Technology in Developing Countries, 18–21 March, Berkshire, England. Pp. 150–158. Navarro S, 2012. The use of modified and controlled atmospheres for the disinfestation of stored products. Journal of Pest Science 85(3): 301–322. Nicolas G, Sillans D, 1989. Immediate and latent effects of carbon dioxide on insects. Annual Review of Entomology 34: 97–116. Oppert C, Klingeman WE, Willis JD, Oppert B, Jurat-Fuentes JL, 2010. Prospecting for cellulolytic activity in insect digestive fluids. Comparative Biochemistry and Physiology B 155: 145–154. Ruttan VW, 1988. Sustainability is not enough. American Journal of Alternative Agriculture 3: 128-130. Rajendran S, Muralidharan N, 2001. Performance of phosphine in fumigation of bagged paddy rice in indoor and outdoor stores. Journal of Stored Products Research 37(4): 351–358. Ruttan VW, 1997. Alternative agriculture “Sustainability is not enough. Agriculture Science and Technology 130–134 Sadeghi R, Jamshidnia A, 2014. Effects of nitrogen and carbon dioxide mixtures on the mortality of five stored-product insects. Romanian Journal of Plant Protection 7: 56–64. Sajjadian SM, Hosseininaveh V, Vatanparast M, 2012. Cellulase activity in the larval digestive tract of the Colorado potato beetle, Leptinotarsa decemlineata (Coleoptera: Chrysomelidae) and the cigarette beetle, Lasioderma serricorne (Coleoptera: Anobiidae). Journal of Crop Protection 1(3): 201–210. Samadov VS, Yusubaliyev YK, Jafarova SF, Isgandarova TH, Asilbayova TM, et al., 2019. Application of linear programming methods to integrated pest management in Walnut plantations of Azerbaijan. Sylwan Journal 163: 129–135. Sauer JA, Shelton MD, 2002. High-temperature controlled atmosphere for post-harvest control of indian meal moth (Lepidoptera: Pyralidae) on preserved flowers. Journal of Economic Entomology 95: 1074–1078. Sepasgozarian H, 1978. Stored Pests of Iran and Their Control. Tehran University Press, Tehran, Iran. 288 pp. (in Persian). Sekhon RK, Schilling MW, Phillips TW, Aikins RMJ, Hasan MM, et al., 2010. Effects of carbon dioxide and ozone treatments on the volatile composition and sensory quality of dry-cured ham. Journal of Food Science 75: 452–458. Shahab Ghayoor H, Valizadegan O, Aramideh S, 2020. Fumigant effect of carbon dioxide and ammonia gases on adults of Callosobruchus maculatus and Sitophilus granarius. Journal of Applied Research in Plant Protection 9(3): 77–86. Sujeetha AR, Meenatchi R, Venkatesan P, Brimapureeswaran R, 2015. Nitrogen based modified atmosphere for the management of Cigarette beetle, Lasioderma sericorne. International Journal for Science and Advance Research in Technology 1(11): 84–87. Yue X, 2013. A linear programming model and partial budget analysis to optimize management strategies of western flower thrips in greenhouse impatiens production. MSc Thesis, Agricultural Economics and Agribusiness, Louisiana State University. Zhou S, Criddle RS, Mitcham EJ, 2001. Metabolic response of Platynota stultana pupae during and after extended exposure to elevated CO2and reduced O2atmospheres. Journal of Insect Physiology 47:401–409.
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مراجع | ||
References Ahmdani MS, 2009. Phytosanitary management of Trogoderma granarium Everts with methyl bromide alternatives to ensure food security and safety, PhD Thesis of Arid Agriculture University Rawalpindi, Pakistan, 427 pp. Bagheri Zonouz E, 1996.Stored Product Pests and Their Control Methods. Sepehr Publication Center. Tehran, Iran, 305 pp. (In Persian). Bailey SW, 1955. Air-tight storage of grain; its effects on insect pests. I. Calandra granaria L. (Coleoptera: Curculionidae). Australian Journal of Agricultural Research 6: 33–51. Beikpor AR, Shayesteh N, Kazemi MH, Sadeghi R, 2009. Application of carbon dioxide and phosphine for controlling different life stages of Plodia interpunctella Hubner. Agricultural Sciences 3(9): 89–102 (In Persian with English abstract). Cao Y, Xu K, Zhu X, Bai Y, Yang W, et al., 2019. Role of modified atmosphere in pest control and mechanism of its effect on insects. Frontiers in Physiology 10: 206. Cassanova JL, 2002. An overview of the scientific aspect of ozone depletion and their impact on environment. Proceeding of International Conference on Alternative to Methyl Bromide, 5–8 March, Sevilla, Spain. Pp. 23–27. Eldein SAS, Sobhi N, 2019. Waste reduction by linear programing optimizing. In: IOP Conference Series: Materials Science and Engineering 610(1): 012079. Emekci M, 2010. Fumigation modified atmospheres and hermetic storage, 10th International Working Conference on Stored Product Protection, Julius-Kühn-Archiv, Pp. 303–313. Ghaderzadeh H, Ganji S, Ganji A, 2016. Determine the cost and share of cost factors in the production of potatoes (Case study: Gorveh and Dehgolan plain). In Proceedings of 1 th International Conference on Economic Planning, Sustainable and Balanced Regional Development, Approaches and Applications, 13–14 May, University of Kurdistan (In Persian with English abstract). Gilberg M, 1989. Inert atmosphere fumigation of museum objects. Studies in Conservation 34: 128–148. Gisi U, 1996. Synergistic interaction of fungicides in mixtures. Phytopathological 86(11): 1273–1279. Hassan I, Muhammad AR, Khan AI, Ilahi R, 2005. Use of linear programming model to determine the optimum cropping patter, production and income level: a case study from dera ghazi khan division. Journal of Agricultural and Social Science 1(1):32–34. Husain M, Rasool KG, Tufail M, Alhamdan AM, Mehmood, K, et al., 2015. Comparative efficacy of CO2 and ozone gases against Ephestia cautella (Lepidoptera: Pyralidae) larvae under different temperature regimes. Journal of Insect Science 15: 126. Jay EG, Cuff W, 1981. Weight loss and mortality of three life stages of Tribolium castaneum (Herbst) when exposed to four modified atmospheres. Journal of Stored Products Research 17(3): 117–124 Khan MA, 2014. Transportation cost optimization using linear programming. Proceedings International Conference on Mechanical, Industrial and Energy Engineering, 26–27 December, ICMIEE. Pp. 2241–2245. Li C, Li Z, Zhou B, Zheng XW, Cao Y, 2007. Effect of carbondioxide enriched atmosphere on the activity of acetylcholinesterase in adults of Stegobium paniceum and Lasioderma serricorne (Coleoptera: Anobiidae). Journal of Plant Protection 34: 642–646. Lindgren DL, Vincent LE, 1970. Effect of atmospheric gases alone or in combination on the mortality of granary and rice weevils. Journal of Economic Entomology 63(1970): 1926–1929. Marouf A, Shayesteh N, Rostam Kolaii SE, 2009. Assessment of the efficacy of current recommendations for fumigation with Phosphine to control Lasioderma serricorne F. (Col., Anobiidae) in tobacco storages. Journal of Entomological Research 1(3): 249–259. Mediouni-Ben Jemâa J, Tersim N, Khouja ML, 2011. Composition and repellent efficacy of essential oil from Laurus nobilis against adults of the cigarette beetle Lasioderma serricorne (Coleoptera: Anobiidae). Tunisian Journal of Plant Protection 6: 29–41. Navarro S, 1986. Gaseous fumigant mixtures with special reference to mixture of carbon dioxide with phosphine or methyl bromide. Proceedings of GASGA Seminar on Fumigation Technology in Developing Countries, 18–21 March, Berkshire, England. Pp. 150–158. Navarro S, 2012. The use of modified and controlled atmospheres for the disinfestation of stored products. Journal of Pest Science 85(3): 301–322. Nicolas G, Sillans D, 1989. Immediate and latent effects of carbon dioxide on insects. Annual Review of Entomology 34: 97–116. Oppert C, Klingeman WE, Willis JD, Oppert B, Jurat-Fuentes JL, 2010. Prospecting for cellulolytic activity in insect digestive fluids. Comparative Biochemistry and Physiology B 155: 145–154. Ruttan VW, 1988. Sustainability is not enough. American Journal of Alternative Agriculture 3: 128-130. Rajendran S, Muralidharan N, 2001. Performance of phosphine in fumigation of bagged paddy rice in indoor and outdoor stores. Journal of Stored Products Research 37(4): 351–358. Ruttan VW, 1997. Alternative agriculture “Sustainability is not enough. Agriculture Science and Technology 130–134 Sadeghi R, Jamshidnia A, 2014. Effects of nitrogen and carbon dioxide mixtures on the mortality of five stored-product insects. Romanian Journal of Plant Protection 7: 56–64. Sajjadian SM, Hosseininaveh V, Vatanparast M, 2012. Cellulase activity in the larval digestive tract of the Colorado potato beetle, Leptinotarsa decemlineata (Coleoptera: Chrysomelidae) and the cigarette beetle, Lasioderma serricorne (Coleoptera: Anobiidae). Journal of Crop Protection 1(3): 201–210. Samadov VS, Yusubaliyev YK, Jafarova SF, Isgandarova TH, Asilbayova TM, et al., 2019. Application of linear programming methods to integrated pest management in Walnut plantations of Azerbaijan. Sylwan Journal 163: 129–135. Sauer JA, Shelton MD, 2002. High-temperature controlled atmosphere for post-harvest control of indian meal moth (Lepidoptera: Pyralidae) on preserved flowers. Journal of Economic Entomology 95: 1074–1078. Sepasgozarian H, 1978. Stored Pests of Iran and Their Control. Tehran University Press, Tehran, Iran. 288 pp. (in Persian). Sekhon RK, Schilling MW, Phillips TW, Aikins RMJ, Hasan MM, et al., 2010. Effects of carbon dioxide and ozone treatments on the volatile composition and sensory quality of dry-cured ham. Journal of Food Science 75: 452–458. Shahab Ghayoor H, Valizadegan O, Aramideh S, 2020. Fumigant effect of carbon dioxide and ammonia gases on adults of Callosobruchus maculatus and Sitophilus granarius. Journal of Applied Research in Plant Protection 9(3): 77–86. Sujeetha AR, Meenatchi R, Venkatesan P, Brimapureeswaran R, 2015. Nitrogen based modified atmosphere for the management of Cigarette beetle, Lasioderma sericorne. International Journal for Science and Advance Research in Technology 1(11): 84–87. Yue X, 2013. A linear programming model and partial budget analysis to optimize management strategies of western flower thrips in greenhouse impatiens production. MSc Thesis, Agricultural Economics and Agribusiness, Louisiana State University. Zhou S, Criddle RS, Mitcham EJ, 2001. Metabolic response of Platynota stultana pupae during and after extended exposure to elevated CO2 and reduced O2 atmospheres. Journal of Insect Physiology 47:401–409. | ||
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