Efficacy of Herbal Fly Repellent Product (Keetguard Liquid) to Control Musca Domestica Population in Poultry Egg Layer Farm

Gopal Bharkad, Mohanji Saxena, Kotagiri Ravikanth, Ajay Thakur, Shivi Maini

Abstract


The housefly Musca domestica L. is recognized as a public health pest causing a serious threat to human and livestock by vectoring many infectious diseases. Chemical control method commonly used against this pest, though effective, has some major disadvantages, such as development of insect resistance and bioaccumulation. Therefore the efficacy of a herbal fly repellent Keetguard Liquid (supplied by M/S Ayurvet Limited, Baddi, H.P., India) was evaluated in vivo on the layer farm as well as in vitro. For in vivo trial the keetguard was used at the concentrations of 1:20 (Group-I recommended for application on body) in one shed and 1:40 (Group-II, recommended for application in premises) in another shed. Another shed kept as control (Group-III) was sprayed with plain water. The herbal fly repellant product was assessed for fly repellent and larvicidal effect and for its efficacy to minimize the count of larvae. In both the treatment groups, the fly repellency recorded during first 2-6 hrs was satisfactory. However, the fly population observed at the end of the week was encouraging in group-I due to its larvicidal effect. The probit analysis to draw Effective Concentration 50 (EC50) showed 43.66 ml/lit as EC50. The in vitro comparative efficacy study was conducted on third stage larvae of Musca spp. divided equally in 4 groups and exposed to 1:20, 1:40 (two different concentrations) of KEETGUARD LIQUID, a standard pyrethroid insecticide ‘Cypermethrin (1%)’ and control (plain water) respectively as group-I: 1:20 concentration of Keetguard liquid Group-II: 1:40 concentration of Keetguard liquid, group-III: standard pyrethroids insecticide ‘Cypermethrin (1%) and group-IV: control (plain water). In invitro study, higher efficacy (95 %) was recorded in group-I as compared to group-II (66.66%) and the standard insecticide-Cypermethrin-1% (100%) while similar trend of efficacy (90.69% in G-I and only 65.76% in G-II) was observed during in vivo field experimentation. The plant based herbal  product Keetguard is efficacious as a fly repellent against house fly Musca spp. in egg layer poultry farm in both 1:20 & 1:40 dilution. In addition, it also has larvicidal potential against 3rd stage of larvae of Musca spp. considering the detrimental effects of chemical fly repellents and insecticides on the environment and human health, Keetguard Liquid was found better option for control of fly population in and around poultry layer farms.


Keywords


keetguard liquid;fly repellent;larvicidal;ectoparasiticidal;herbal

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References


Adams R. P. 1991. Cedar wood oil – analysis and properties. Modern Methods of Plant Analysis. 12:159-173.

Bhatia B. B., K. M. L. Pathak, and D. P. Banerjee. 2006. Text book of Veterinary Parasitology. 2nd Edn, Kalyani Publishers. Ludhiana. pp: 248-49.

Crespo D., C. Roberto, E. Lecuona, and A. Jerome. 1998. Biological Control: An Important Component in Integrated Management of Musca domestica (Diptera: Muscidae) in Caged-Layer Poultry Houses in Buenos Aires. Argentina. Biological Control. 13:16–24

Campbell M. M. 1983. A test of repellency to non-biting flies and a comparison of repellants using Musca domestica L. Pestic Sci. 14:199-212.

Dales M. J. 1996. A review of plant materials used for controlling insect pests of stored Products. National Resources Institute. UK. 65:1-84.

Eisner T., M. Deyrup, R. Jacob, and J. Meinwald. 1986. Necrodol: anti-insectan terpenes from defensive secretion of carrion beetle (Necrodes surinamensis). J Chem Ecol. 12:14.

Finney D. J., and W. L. Stevens. 1948. A table for the calculation of working probits and weights in probit analysis. Biometrika. 35(1-2):191-201.

Finney D. J. 1952. Probit Analysis. Cambridge, England, Cambridge University Press.

Geden Christopher J., 2012. Status of biopesticides for control of house flies. J Biopest, 5(Supplementary), pp: 1-11.

Grace J. K., and R. T. Yamamoto. 1994. Natural resistance of Alaska-cedar, redwood, an teak to Formosan subterranean termites. J Fors Prod, 44(3):41-45.

Isman M. 2000. Plant essential oils for pest and disease management. Crop Protection, 19(8-10):603-608.

Jangam, A. K., and P. Thali. 2001. WASP- Web Agri StatPackage.http://www.icargoa.res.in/wasp/index.php.

Jesika M. 2012. Mixed Flower Waste Extract as Larvicides against Musca Domestica. Open Access Scientific Reports, 1(12):1-3.

Kant R., and R. M. Bhatt. 1994. Field evaluation of mosquito repellent action of neem oil. J Malar.31:122–125.

Khater Hanem, F. Y. Mohamed, Ramadan, S. Reham, and E. L. Madawy. 2009. The lousicidal, ovicidal, and repellent efficacy of some essential oils against lice and flies infesting water buffaloes in Egypt. Local publication, Department of Parasitology, Faculty of Veterinary Medicine Benha University, Moshtohor – Toukh, 13736. Egypt.

Kirby, 2008. Fly Management Handbook A Guide to Biology, Dispersal, and Management of the House Fly. The Connecticut Agricultural Experimentation Station. Bulletin 1013.

Lin T. S., and H. W. Yin. 1995. Effects of Litsea cubeba press oils on the control of termite Coptotermes formosanus Shiraki. Taiwan For. Res. Inst. New Series. 10:59.

Pavela, R. 2008. Insecticidal Properties of Several Essential Oils on the House Fly (Musca domestica L.). Phytotherapy Research, 22:274-278.

Oyedokun A. V., J. C. Anikwe, F. A. Okelana, I. U. Mokwunye, and Azeez O. M. 2011. Pesticidal efficacy of three tropical herbal plants’ leaf extracts against Macrotermes bellicosus, an emerging pest of cocoa, Theobroma cacao L., J Biopest. 4(2):131-137.

Perry A. S. 1958. Factors associated with DDT resistance in the house fly Musca domestica L. Proceedings, 10th International Congress of Entomology. 2:157-172.

Snedecor, W G., and C. G. William. 1989. Statistical Methods, Eighth Edition, Iowa State University Press.

Singh D., Singh A.K. 1991. Repellent and insecticidal properties of essential oils against housefly, Musca domestica L. Insect. Sci. Applic.12:487-491.

Sunita F., and B. Lalijee. 2008. Study of Various Extracts of Ayapana triplinervis for their Potential in Controlling Three Insect Pests of Horticultural Crops.Tropicultural. 26(2):119-124.

Thomas G. and J. B. Jespersen. 1994. Non-biting Muscidae and control methods. Rev. Sci. tech. off int. Epiz. 13(4):1159-1173.

Varzandeh M, W. N. Bruce, and G. C. Decker. 1954. Resistance to insecticides as a factor influencing the biotic potential of the house fly. J Eco Ent. 47:129-134.

Watanabe A.K., Shono Y., Kakimizu A., Matsuo, Saton A., Nishimura H. 1993. New mosquito repellent from Eucalyptus camaldulensis. J. Agric. Food Chem. 41:2164-2166.

Wimalaratne P.D.C., K.N. Slessor, J.H. Borden, L.J. Chong and T. Abate. 1996. Isolation and identification of house fly, Musca domestica L., Repellents from pepper tree, schinus molle L., J. Chemical ecology. 22(1):49-51.


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