Comparative evaluation of some commercial spray-applied insecticides as control method against Blatta orientalis
Betina Boneva - Marutsova
, Plamen Dimitrov Marutsov, Georgi Zhelev Georgiev
Резюме: Cockroaches are globally distributed pests with high epidemic importance. Their role as spreaders of many infectious and parasitic diseases in animals and humans determines disinsection as the main anti-epidemic measure. The present study compared the effectiveness of spray application of different commercial insecticides against a field population of oriental cockroaches (B. orientalis) under laboratory conditions. A very high efficiency of fipronil (100% mortality) was found as early as 37-48 hours after treatment and a high efficiency of synthetic pyrethroids - 95-97% mortality at 49-60 hours. With the organophosphate derivatives (Dichlorvos) low mortality (37%) and unsatisfactory efficiency was achieved. The obtained results confirm the insecticides from the phenylpyrazole group and the synthetic pyrethroids, in spray-applied forms, as an effective method of fighting the oriental cockroach.
Ключови думи: insecticides; organophosphates; Oriental cockroach; phenylpyrazoles; pyrethroids; spray method
Цитиране: Boneva - M., B., Marutsov, P. D. and Georgiev, G. Zh. (2024). Comparative evaluation of some commercial spray-applied insecticides as control method against Blatta orientalis. Bulgarian Journal of Animal Husbandry, 61(1), 55-62.
Литература: (click to open/close) | Ahmad, I. & Suliyat, A. (2011). Development of fipronil gel bait against German cockroaches, Blattella germanica (Dictyoptera: Blattellidae). Journal of Entomology, 8(3), 288-294. Atiokeng Tatang, R. J., Tsila, H. G. & Wabo Pone, J. (2017). Medically important parasites carried by cockroaches in Melong subdivision, littoral, Cameroon. J. Parasitol. Res., 7967325. Boneva, B., Marutsov, P. & Zhelev, G. (2023). A survey of the distribution of synanthropic cockroaches in animal farms and food processing plants in Bulgaria. Trakia Journal of Sciences, 21(3), 217. Chai, R. Y. & Lee, C. Y. (2010). Insecticide resistance profiles and synergism in field populations of the German cockroach from Singapore. J. Econ. Entomol., 103, 460–471. Cochran, D. G. (1987). Selection for pyrethroid resistance in the German cockroach. J. Econ. Entomol., 80, 1117–1121. Cole, L. M., Nicholson, R. A. & Casida, J. E. (1993). Action of phenylpyrazole insecticides at the GABA-gated chloride channel. Pesticide Biochemistry and Physiology, 46(1), 47-54. Davari, B., A., Hassanvand, H., Nasirian, S., Ghiasian, A., Salehzadeh & Nazari, M. (2017a). Comparison of cockroach fungal contamination in the clinical and non-clinical environments from Iran. J. Entomol. Acarol. Res., 49, 109–115. Davari, B., Hassanvand, A. E., Salehzadeh, A., Alikhani, M. Y. & Hosseini, S. M. (2023). Bacterial Contamination of Collected Cockroaches and Determination their Antibiotic Susceptibility in Khorramabad City, Iran. Journal of Arthropod-Borne Diseases, 17(1), 63-71. Donets, A.V. (2004). Problematic issues of cockroach control in medical institutions. Bulletin of hygiene and epidemiology, 8 (1) (Ru). Esty, B. & Phipatanakul, W. (2018). School exposure and asthma. Ann. Allergy. Asthma Immunol., 120, 482–487. Fakoorziba, M. R., F. Eghbal, J. Hassanzadeh & Moemenbellah-Fard, M. D. (2010). Cockroaches (Periplaneta americana and Blattella germanica) as potential vectors of the pathogenic bacteria found in nosocomial infections. Ann. Trop. Med. Parasitol., 104, 521–528. Gaire, S. & Romero, A. (2020). Comparative efficacy of residual insecticides against the Turkestan cockroach, Blatta lateralis, (Blattodea: Blattidae) on different substrates. Insects, 11(8), 477. Ghosal, A. (2018). Mode of action of insecticides. Applied entomology and zoology, 1, 1-17. Gits, M. P., Gondhalekar, A. D. & Scharf, M. E. (2023). Impacts of Bioassay Type on Insecticide Resistance Assessment in the German Cockroach (Blattodea: Ectobiidae). Journal of Medical Entomology, 60(2), 356-363. Gondhalekar, A. D., Song, Ch. & Scharf, M. E. (2011). Development of strategies for monitoring indoxacarb and gel bait susceptibility in the German cockroach (Blattodea: Blattellidae). Pest Manag Sci., 67, 262–270. Gour, T. B. & Sridevi, D. (2012). Chemistry, Toxicity and Mode of action of Insecticides. Kalyani Publishers. Holbrook, G. L., Roebuck, J., Moore, C. B., Waldvogel, M. G. & Schal, C. (2003). Origin and extent of resistance to fipronil in the German cockroach, Blattella germanica (L.). J. Econ. Entomol., 96, 1548–1558. Ishaaya, I. & Horowitz, A. R. (1998). Insecticides with novel modes of action: an overview. Insecticides with novel modes of action: mechanisms and application, 1-24. Kassiri, H. & Kazemi, S. (2012). Cockroaches [Periplaneta americana (L.), Dictyoptera; Blattidae] as carriers of bacterial pathogens, Khorramshahr County, Iran. Jundishapur J. Microbiol., 5, 320–322. Krieger, R. (Ed.).(2001). Handbook of pesticide toxicology: Principles and agents. Academic press. Lee, C. Y., Rust, M. K. & Wang, C. (2021). Chemical control methods, Clayton South, Victoria, Australia: CSIRO Publishing.165-212. Lee, S. H., Choe, D. H., Scharf, M. E., Rust, M. K. & Lee, C. Y. (2022). Combined metabolic and target-site resistance mechanisms confer fipronil and deltamethrin resistance in field-collected German cockroaches (Blattodea: Ectobiidae). Pesticide Biochemistry and Physiology, 184, 105123. Limoee, M., Ladonni, H., Enayati, A. A., Vatandoost, H. & Aboulhasani, M. (2006). Detection of pyrethroid resistance and cross-resistance to DDT in seven field-collected strains of the German cockroach, Blattella germanica (L.). J. Biol. Sci., 6, 382–387. Martinez-Giron, R., Martinez-Torre, C. & van Woerden, H. C. (2017). The prevalence of protozoa in the gut of German cockroaches (Blattella germanica) with special reference to Lophomonas blattarum. Parasitol. Res.,116, 3205–3210. Mellanby, K. (1939). Low temperature and insect activity. Proc. R. Soc. Lond. B., 127, 473–487. http://doi.org/10.1098/rspb.1939.0035 (17 September 2021, date last accessed). Menasria, T., Tine, S., Mahcene, D., Benammar, L., Megri, R., Boukoucha, M. & Debabza, M. (2015). External bacterial flora and antimicrobial susceptibility patterns of Staphylococcus spp. and Pseudomonas spp. Isolated from two household cockroaches, Blattella germanica and Blatta orientalis. Biomed. Environ. Sci., 28, 316–320. Miller, D. M. & Meek, F. (2004). Cost and efficacy comparison of integrated pest management strategies with monthly spray insecticide applications for German cockroach (Dictyoptera: Blattellidae) control in public housing. Journal of Economic Entomology, 97(2), 559-569. Motevali Haghi, F. M., Nikookar, H., Hajati, H., Harati, M. R., Shafaroudi, M. M., Yazdani-Charati, J. & Ahanjan, M. (2014a). Evaluation of bacterial infection and antibiotic susceptibility of the bacteria isolated from cockroaches in educational hospitals of Mazandaran University of medical sciences. Bulletin of Environment, Pharmacology and Life Sciences, 3, 25–28. Nasirian, H., Ladonni, H. & Vatandoost, H. (2006). Duration of fipronil topical application toxicity in Blattella germanica field population strains. Pakistan J. Biol. Sci., 9, 800-804. Nasirian, H. (2016). New aspects about Supella longipalpa (Blattaria: Blattellidae). Asian Pac. J. Trop. Biomed., 6, 1065–1075. Nasirian, H. (2017). Infestation of cockroaches (Insecta: Blattaria) in the human dwelling environments: A systematic review and meta-analysis. Acta Trop., 167, 86–98. Nasirian, H. (2019). Recent cockroach bacterial contamination trend in the human dwelling environments: A systematic review and meta-analysis. Bangladesh J. Med. Sci., 18: in press. Odinets, A. A., Seraji, V. E., Degtyarev, L. A. & Odinets, O. L., (1993). Level of social organization of synanthropic cockroaches. Proceedings of colloquiums on general insects. St. Petersburg, 2, 221- 222 (Ru). http://pestkiller.ru/sochrorganizachiya.shtml. Page, K. (2012). Role of cockroach proteases in allergic disease. Curr. Allergy Asthma Rep., 12, 448–455 Pai, H. H. (2013). Multidrug resistant bacteria isolated from cockroaches in long-term care facilities and nursing homes. Acta Trop., 125, 18–22. Paramasivam, M. & Selvi, C. (2017). Laboratory bioassay methods to assess the insecticide toxicity against insect pests-A review. Journal of Entomology and Zoology Studies, 5(3), 1441-1445. Piper, G. L. & Antonelli, A. L. (2012). Cockroaches: Identification, Biology and Control. Agricultural Research Center, Washington State University. http://www.pnw0186.html. Retrieved on the 25th of May, 2012. Radcliffe, E. B., Hutchison, W. D. & Cancelado, R. E. (Eds.). (2009). Integrated pest management: concepts, tactics, strategies and case studies. Cambridge University Press. Rahayu, R., Madona, W. R., Bestari, W. & Jannatan, R. (2016). Resistance monitoring of some commercial insecticides to German cockroach (Blattella germanica (L.) in Indonesia. J. Entomol. Zool. Studies, 4, 709-712. Salehzadeh, A., Tavacol, P. & Mahjub, H. (2007). Bacterial, fungal and parasitic contamination of cockroaches in public hospitals of Hamadan, Iran. J. Vector. Borne. Dis., 44, 105–110. Salgado, V. L. (2013). Insecticide mode of action: technical training manual. BASF Corporation, Ludwigshafen, Germany. Schapheer, C., Sandoval, G. & Villagra, C. A. (2018). Pest cockroaches may overcome environmental restriction due to anthropization. J. Med. Entomol., 55, 1357–1364. Scharf, M. E., Kaakeh, W. & Bennett, G. W. (1997). Changes in an insecticide-resistant field population of German cockroach after exposure to an insecticide mixture. J. Econ. Entomol., 90, 38–48. Scharf, M. E., Wolfe, Z. M., Raje, K. R., Fardisi, M., Thimmapuram, J., Bhide, K. & Gondhalekar, A. D. (2022). Transcriptome responses to defined insecticide selection pressures in the German cockroach (Blattella germanica L.). Frontiers in Physiology, 12, 2570. Shahraki, G. H., Hafidzi, M. N., Khadri, M. S., Rafinejad, J. & Ibrahim, Y. B. (2011). Cost-effectiveness of integrated pest management compared with insecticidal spraying against the German cockroach in apartment buildings, Neotropical Entomology, 40, 607-612. Siddiqui, R., Elmashak, Y. & Khan, N. A. (2023). Cockroaches: a potential source of novel bioactive molecule (s) for the benefit of human health. Applied entomology and zoology, 58(1), 1-11. Sookrung, N., Reamtong, O., Poolphol, R., Indrawattana, N., Seesuay, W., Saelim, N., Tantilipikorn, P., Bunnag, C., Chaicumpa, W. & Tungtrongchitr, A. (2018). Glutathione S-transferase (GST) of American cockroach, Periplaneta americana: classes, isoforms, and allergenicity. Sci. Rep., 8, 484. Syed, R., Manzoor, F., Adalat, R., Abdul-Sattar, A. & Syed, A. (2014). Laboratory evaluation of toxicity of insecticide formulations from different classes against American cockroach (Dictyoptera: Blattidae). Journal of arthropod-borne diseases, 8(1), 21. Tachbele, E., Erku, W., Gebre-Michael, T. & Ashenafi, M. (2006). Cockroachassociated food-borne bacterial pathogens from some hospitals and restaurants in Addis Ababa, Ethiopia: Distribution and antibiograms. Journal of Rural and Tropical Public Health, 5, 34–41. Tilak, R., Tilak, V. W., Yadav, J. D. & Gupta, K. K. (2002). Efficacy of Fipronil and Propoxur in the control of German cockroaches (Dictyoptera: Blatellidae). The Journal of Communicable Diseases, 34(1), 65-69. Valles, S. M. & Yu, S. J. (1996). Detection and biochemical characterization of insecticide resistance in the German cockroach. J. Econ. Entomol., 89, 21–26. Valles, S. M., Koehler, P. G. & Brenner, R. J. (1997). Antagonism of fipronil toxicity by piperonyl butoxide and S, S, S-tributyl phosphorotrithioate in the German cockroach (Dictyoptera: Blattellidae). Journal of Economic Entomology, 90(5), 1254-1258. Varadinova, Z., Frynta, D., Aulick, R. & Stejskal, V. (2015). Detection of cockroach faeces: consumption of fluorescent bait and production of UV-lightdetectable faeces from German cockroach, Blattella germanica. Entomol. Exp. Appl., 155, 167–175. Vatev, N. T., Kevorkyan, A. K., Rakadzhieva, T. A. & Stoilova, Y. D. (2006). Guide for practical exercises in epidemiology of infectious diseases, Raykov, 26-27 (Bg). Wang, C., Scharf, M. E. & Bennett, G. W. (2004). Behavioral and physiological resistance of the German cockroach to gel baits (Blattodea: Blattellidae). Journal of economic entomology, 97(6), 2067-2072. Ware, G. W. & Whitacre, D. M. (2004). An introduction to insecticides. The pesticide book, 6. Wei, Y., Appel, A. G., Moar, W. J. & Liu, N. (2001). Pyrethroid resistance andcross-resistance in the German cockroach, Blattella germanica (L). PestManag. Sci., 57, 1055–1059. Wright, C. G. (1971). Efficacy of dichlorvos ministrips for German cockroach control in enclosed kitchen cabinets. Journal of Economic Entomology,64(1), 278-280.
|
|
| Дата на публикуване: 2024-02-26
Свали пълен текст