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Yıl 2019, Cilt: 2 Sayı: 3, 243 - 268, 28.12.2019

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Kaynakça

  • 1. Mowery, S.V., et al., Mechanisms underlying sawtoothed grain beetle (Oryzaephilus surinamensis [L.]) (Coleoptera: Silvanidae) infestation of consumer food packaging materials. Journal of Economic Entomology, 2002. 95: p. 1333-1336.
  • 2. Beckel, H.D.S., et al., Rearing method of Oryzaephilus surinamensis (L.) (Coleoptera, Silvanidae) on various wheat grain granulometry. Brazillian Journal of Entomology, 2007. 51(4): p. 501-505.
  • 3. Halstead, D.G.H. A revision of the genus Oryzaephilus Ganglbauer, including descriptions of related genera. (Coleoptera: Silvanidae). Zoological Journal of the Linnean Society, 1980. 69: p. 271-374.
  • 4. Thomas, M.C. and R.E. Woodruff, A stored products pest, Oryzaephilus acuminatus (Insecta: Coleoptera: Silvanidae). EENY-188. University of Florida IFAS Extension, 2007. Retrieved from http://edis.ifas.ufl.edu/pdffiles/IN/IN34500.pdf , 23 April 2018.
  • 5. Laszczak-Dawid, A., et al.,. Development of sawtoothed grain beetle (Oryzaephilus surinamensis) in winter wheat grain. Progress of Plant Protection, 2008. 48(3): p. 908–912.
  • 6. Trematerra, P. and A. Sciarretta, Spatial distribution of some beetles infesting a feed mill with spatio-temperal dynamics of Oryzaephilus surinamensis, Tribolium castaneum and Tribolium confusum. Journal of Stored Product Research, 2004. 40: p. 363-377.
  • 7. Johnson, J. Improving safety and quality of nuts. Food Science, Technology and Nutrition, 2013: p. 56-87.
  • 8. Garcia, D., et al., Harmful effects on Oryzaephilus surinamensis (L.) and Tribolium castaneum by food grade antioxidants and their formulations in peanut kernel. Journal of Food Chemistry and Nanotechnology, 2017. 3(3): p. 86-92.
  • 9. Matthews, G.A. Insecticide application in stores. In: Matthews, G.A. and E.C. Hislop, (eds.), Application technology for crop protection. CAB, London. 1993: p. 305-315.
  • 10. Grisley, W. Crop-pest yields loss: A diagnostic study in the Kenya highlands. International Journal of Pest Management, 1997. 43(2): p. 137-142.
  • 11. Pinto Jr., et al.,. Evaluation of insecticides in the control of Sitophilus oryzae (L.) (Col.,Curculionidade) and Rhyzopertha dominica (F.) (Col., Bostrichidae) in stored rice. Annals of the Entomological Society of Brazil, 1997. 26: p. 285-290.
  • 12. Dhaliwal, G.S., et al., Insect pest problems and crop losses: Changing trends. Indian Journal of Ecology, 2010. 37(1): p. 1-7.
  • 13. Gianessi, L.P. Important of pesticides for growing rice in South and South East Asia. International Pesticide Benefit Case Study, 2014: p. 1-4.
  • 14. Syarifah Zulaikha, S.A., et al., Diversity and abundance of storage pest in rice warehouses in Klang, Selangor, Malaysia. Serangga, 2018. 23(1): p. 89-98.
  • 15. Trematerra, P., et al., Laboratory tests on the ability of Oryzaephilus surinamensis adults to locate different types of chocolate varying in quantity of cocoa. Bulletin of Insectology, 2016. 69(1): p. 21-24.
  • 16. Barnes, J.K. Sawtoothed grain beetle. Arthropod Museum Notes No.7. University of Arkansas Division of Agriculture Department of Entomology, 2002.
  • 17. Mason, L.J. Grain Insect Fact Sheet E-228-W: Sawtoothed Grain Beetle, Oryzaephilus surinamensis (L.). Purdue University, Department of Entomology, 2003.
  • 18. Al-Jabr, A.M. Toxicity and repellency of seven plant essential oils to Oryzaephilus surinamensis (Coleoptera: Silvanidae) and Tribolium castaneum (Coleoptera: Tenebrioidae). Scientific Journal of King Faisal University (Basic and Applied Sciences), 2006. 7: p. 49-60.
  • 19. Klys, M. Emigration activity of the sawtoothed grain beetle Oryzaephilus surinamensis L. (Coleoptera: Silvanidae) in various environmental temperatures. Journal of Plant Protection Research, 2012. 52: p. 97-400.
  • 20. Mallis, A. Handbook of Pest Control. 7th edition. Cleveland: Franzak & Foster Co., 1990: p. 524-526.
  • 21. Rejesus, M.B. and J.B. Obra, Utilization of rice bran for dust formulation of plant oils, derris powder, pirimiphos methyl and deltamethrin against corn and mungbean weevils. Proceedings of the Sixteenth ASEAN Seminar on Grain. Postharvest Technology, 1993: p.123-134.
  • 22. Arthur, F.H. and J.E. Throne, Pirimiphos-methyl degradation and insect population growth in aerated and unaerated corn stored in southeast Georgia. Journal of Economic Entomology, 1994. 87: p. 810-816.
  • 23. Sgarbiero, E., et al., Pirimiphos-methyl residues in corn and popcorn grains and some of their processed products and the insecticide action on the control of Sitophilus zeamais Mots. (Coleoptera: Curculionidae). Neotropical Entomology, 2003. 32: p. 707-711.
  • 24. Nath, N.S., et al., Mechanisms of phosphine toxicity. Journal of Toxicology, 2011. doi:10.1155/2011/494168.
  • 25. Abdelgaleil, S.A.M., et al., Chemical composition, insecticidal and biochemical effects of essential oils of different plant species from Northern Egypt on the rice weevil, Sitophilus oryzae L. Journal of Pest Science, 2016. 89(1): p. 219-229.
  • 26. Arthur, F.H. Immediate and delayed mortality of Oryzaephilus surinamensis (L.) exposed on wheat treated with diatomaceous earth: effects of temperature, relative humidity and exposure interval. Journal of Stored Product Research, 2001. 37(1): p. 3-21.
  • 27. Aktar, M. W., et al., Impact of pesticides use in agriculture: Their benefits and hazards. Interdisciplinary Toxicology, 2009. 2(1): p. 1-12.
  • 28. Mahdi, S.H.A. and M. Khalequzzaman, Toxicity studies of some inert dusts with the cowpea beetle, Callosobruchus maculatus (Fabricius) (Coleoptera: Bruchidae). Journal of Biological Sciences, 2006. 6: p. 402-407.
  • 29. Korunic, Z., et al., Diatomaceous earth an effective tool in integrated pest management. In Proceedings 1996 Annual International Research Conference on Methyl Bromide Alternatives and Emissions Reductions. Orlando, Florida: Environmental Agency and US Department of Agriculture. 1996: p. 81-82.
  • 30. Valizadegan, O., et al., Combination of microwaves radiation and cold storage for control of Oryzaephilus surinamensis (L.) (Col. Silvanidae). Journal of Biological Sciences, 2009. 9: p. 231-236.
  • 31. Banks, H.J. and J.B Fields, Physical methods for insect control in stored-grain ecosystem. In: Jayas, D.S., et al., (eds). Stored grain ecosystem. Marcel Dekker, New York, 1995: p. 353-409.
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  • 41. Talukder, F.A. Plant products as potential stored product insect management agents–a mini review. Emirates Journal of Agricultural Science, 2006. 18: p. 17–32.
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  • 59. Guo, S., et al., The chemical composition of essential oils from Cinnamomum camphora and their insecticidal activity against the stored product pests. International Journal of Molecular Science, 2016. 17(1836). doi:10.3390/ijms17111836.
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  • 64. Tiwari, S.N. Efficacy of some plant products as grain protectants against Rhizopertha dominica (F.) (Coleoptera; Bostrichidae). International Journal of Pest Management, 1994. 40(1): p. 94–97.
  • 65. Shah, M.M.R., et al., Repellent effect of some indigenous plant extracts against saw-toothed grain beetle, Oryzaephilus surnamensis (L.). International Journal Sustainable Crop Production, 2008. 3(5): p. 51-54.
  • 66. Manzoor, F., et al., Effect of ethanolic plant extracts on three storage grain pests of economic importance. Pakistan Journal of Botany, 2011. 43: p. 2941-2946.
  • 67. Dwivedi, S.C. & K. Kumar, Screening of responses of adult Khapra beetle, Trogoderma granarium Everts on ten plants species for possible repellent action. Uttar Pradesh Journal of Zoology, 1999. 19(3): p. 197-200.
  • 68. Ebadollahi, S., et al., Toxicity of essential oil of Agastache foeniculum (Pursh) Kuntze to Oryzaephilus surinamensis L. and Lasioderma serricorne F. Journal of Plant Protection Research, 2010. 50(2). doi: 10.2478/v10045-010-0037-x.
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Plants as Potential Repellent Against Oryzaephilus Species

Yıl 2019, Cilt: 2 Sayı: 3, 243 - 268, 28.12.2019

Öz

Stored
food pests are a perennial problem in storage facilities and retail stores
where they infest and contaminate on a variety of products including grain
products, dried fruits, nuts, seeds, dried meats, and in fact, almost all plant
products that were used as human foods. The utilization of
synthetic
pesticides as the main strategy to control food pests has
long attracted major concern
due
to the residue problems and adverse effects to consumers. In view of the above,
there is an increasing extensive search for plant species that are
showing insecticidal and repellent properties to eradicate these pests that
feed on the stored products. These harmful pests include
Oryzaephilus surinamensis, which is the subject of this review. This review describes the biology of O. surinamensis and summarizes on the
current state of the alternative methods using plant as a repellent to control
this species and other stored product pests within the same niche.

Kaynakça

  • 1. Mowery, S.V., et al., Mechanisms underlying sawtoothed grain beetle (Oryzaephilus surinamensis [L.]) (Coleoptera: Silvanidae) infestation of consumer food packaging materials. Journal of Economic Entomology, 2002. 95: p. 1333-1336.
  • 2. Beckel, H.D.S., et al., Rearing method of Oryzaephilus surinamensis (L.) (Coleoptera, Silvanidae) on various wheat grain granulometry. Brazillian Journal of Entomology, 2007. 51(4): p. 501-505.
  • 3. Halstead, D.G.H. A revision of the genus Oryzaephilus Ganglbauer, including descriptions of related genera. (Coleoptera: Silvanidae). Zoological Journal of the Linnean Society, 1980. 69: p. 271-374.
  • 4. Thomas, M.C. and R.E. Woodruff, A stored products pest, Oryzaephilus acuminatus (Insecta: Coleoptera: Silvanidae). EENY-188. University of Florida IFAS Extension, 2007. Retrieved from http://edis.ifas.ufl.edu/pdffiles/IN/IN34500.pdf , 23 April 2018.
  • 5. Laszczak-Dawid, A., et al.,. Development of sawtoothed grain beetle (Oryzaephilus surinamensis) in winter wheat grain. Progress of Plant Protection, 2008. 48(3): p. 908–912.
  • 6. Trematerra, P. and A. Sciarretta, Spatial distribution of some beetles infesting a feed mill with spatio-temperal dynamics of Oryzaephilus surinamensis, Tribolium castaneum and Tribolium confusum. Journal of Stored Product Research, 2004. 40: p. 363-377.
  • 7. Johnson, J. Improving safety and quality of nuts. Food Science, Technology and Nutrition, 2013: p. 56-87.
  • 8. Garcia, D., et al., Harmful effects on Oryzaephilus surinamensis (L.) and Tribolium castaneum by food grade antioxidants and their formulations in peanut kernel. Journal of Food Chemistry and Nanotechnology, 2017. 3(3): p. 86-92.
  • 9. Matthews, G.A. Insecticide application in stores. In: Matthews, G.A. and E.C. Hislop, (eds.), Application technology for crop protection. CAB, London. 1993: p. 305-315.
  • 10. Grisley, W. Crop-pest yields loss: A diagnostic study in the Kenya highlands. International Journal of Pest Management, 1997. 43(2): p. 137-142.
  • 11. Pinto Jr., et al.,. Evaluation of insecticides in the control of Sitophilus oryzae (L.) (Col.,Curculionidade) and Rhyzopertha dominica (F.) (Col., Bostrichidae) in stored rice. Annals of the Entomological Society of Brazil, 1997. 26: p. 285-290.
  • 12. Dhaliwal, G.S., et al., Insect pest problems and crop losses: Changing trends. Indian Journal of Ecology, 2010. 37(1): p. 1-7.
  • 13. Gianessi, L.P. Important of pesticides for growing rice in South and South East Asia. International Pesticide Benefit Case Study, 2014: p. 1-4.
  • 14. Syarifah Zulaikha, S.A., et al., Diversity and abundance of storage pest in rice warehouses in Klang, Selangor, Malaysia. Serangga, 2018. 23(1): p. 89-98.
  • 15. Trematerra, P., et al., Laboratory tests on the ability of Oryzaephilus surinamensis adults to locate different types of chocolate varying in quantity of cocoa. Bulletin of Insectology, 2016. 69(1): p. 21-24.
  • 16. Barnes, J.K. Sawtoothed grain beetle. Arthropod Museum Notes No.7. University of Arkansas Division of Agriculture Department of Entomology, 2002.
  • 17. Mason, L.J. Grain Insect Fact Sheet E-228-W: Sawtoothed Grain Beetle, Oryzaephilus surinamensis (L.). Purdue University, Department of Entomology, 2003.
  • 18. Al-Jabr, A.M. Toxicity and repellency of seven plant essential oils to Oryzaephilus surinamensis (Coleoptera: Silvanidae) and Tribolium castaneum (Coleoptera: Tenebrioidae). Scientific Journal of King Faisal University (Basic and Applied Sciences), 2006. 7: p. 49-60.
  • 19. Klys, M. Emigration activity of the sawtoothed grain beetle Oryzaephilus surinamensis L. (Coleoptera: Silvanidae) in various environmental temperatures. Journal of Plant Protection Research, 2012. 52: p. 97-400.
  • 20. Mallis, A. Handbook of Pest Control. 7th edition. Cleveland: Franzak & Foster Co., 1990: p. 524-526.
  • 21. Rejesus, M.B. and J.B. Obra, Utilization of rice bran for dust formulation of plant oils, derris powder, pirimiphos methyl and deltamethrin against corn and mungbean weevils. Proceedings of the Sixteenth ASEAN Seminar on Grain. Postharvest Technology, 1993: p.123-134.
  • 22. Arthur, F.H. and J.E. Throne, Pirimiphos-methyl degradation and insect population growth in aerated and unaerated corn stored in southeast Georgia. Journal of Economic Entomology, 1994. 87: p. 810-816.
  • 23. Sgarbiero, E., et al., Pirimiphos-methyl residues in corn and popcorn grains and some of their processed products and the insecticide action on the control of Sitophilus zeamais Mots. (Coleoptera: Curculionidae). Neotropical Entomology, 2003. 32: p. 707-711.
  • 24. Nath, N.S., et al., Mechanisms of phosphine toxicity. Journal of Toxicology, 2011. doi:10.1155/2011/494168.
  • 25. Abdelgaleil, S.A.M., et al., Chemical composition, insecticidal and biochemical effects of essential oils of different plant species from Northern Egypt on the rice weevil, Sitophilus oryzae L. Journal of Pest Science, 2016. 89(1): p. 219-229.
  • 26. Arthur, F.H. Immediate and delayed mortality of Oryzaephilus surinamensis (L.) exposed on wheat treated with diatomaceous earth: effects of temperature, relative humidity and exposure interval. Journal of Stored Product Research, 2001. 37(1): p. 3-21.
  • 27. Aktar, M. W., et al., Impact of pesticides use in agriculture: Their benefits and hazards. Interdisciplinary Toxicology, 2009. 2(1): p. 1-12.
  • 28. Mahdi, S.H.A. and M. Khalequzzaman, Toxicity studies of some inert dusts with the cowpea beetle, Callosobruchus maculatus (Fabricius) (Coleoptera: Bruchidae). Journal of Biological Sciences, 2006. 6: p. 402-407.
  • 29. Korunic, Z., et al., Diatomaceous earth an effective tool in integrated pest management. In Proceedings 1996 Annual International Research Conference on Methyl Bromide Alternatives and Emissions Reductions. Orlando, Florida: Environmental Agency and US Department of Agriculture. 1996: p. 81-82.
  • 30. Valizadegan, O., et al., Combination of microwaves radiation and cold storage for control of Oryzaephilus surinamensis (L.) (Col. Silvanidae). Journal of Biological Sciences, 2009. 9: p. 231-236.
  • 31. Banks, H.J. and J.B Fields, Physical methods for insect control in stored-grain ecosystem. In: Jayas, D.S., et al., (eds). Stored grain ecosystem. Marcel Dekker, New York, 1995: p. 353-409.
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  • 54. Tripathi, A.K., et al., Repellency and toxicity of oil from Artemisia annua to certain stored-product beetles. Journal of Economic Entomology, 2000. 93(1): p. 43–47.
  • 55. Ngamo, T.S.L., et al., Persistence of insecticidal activities of crude essential oils of three aromatic plants towards four major stored product insect pests. African Journal of Agricultural Research, 2007. 2: p. 173-177.
  • 56. Zia, S., et al., Comparative bioefficacy of different citrus peel extracts as grain protectant against Callosobruchus chinensis, Trogoderma granarium and Tribolium castaneum. World Applied Sciences Journal, 2013. 21(12): p. 1760-176.
  • 57. Liu, C.H., et al., Repellent and insecticidal activities of essential oils from Artemisia princeps and Cinnamomum camphora and their effect on seed germination of wheat and broad bean. Bioresource Technology, 2006. 97: p. 1969-1973.
  • 58. Cansian, R.L., et al., Insecticidal and repellent activity of the essential oil of Cinnamomum camphora var. linaloolifera Y. Fujita (Ho-Sho) and Cinnamomum camphora (L.) J Presl. var. hosyo (Hon-Sho) on Sitophilus zeamais_Mots. (Coleoptera, Curculionedae). Revista Brasileira de Plantas Medicinais, 2015. 17(1): p. 769-773.
  • 59. Guo, S., et al., The chemical composition of essential oils from Cinnamomum camphora and their insecticidal activity against the stored product pests. International Journal of Molecular Science, 2016. 17(1836). doi:10.3390/ijms17111836.
  • 60. Doharey, R.B.R., et al., Eco-toxicological studies on pulse beetles infesting green gram. Bulletin of Grain Technology, 1990. 28(2): p. 116-119.
  • 61. Klys, M. and A. Przystupinska, The mortality of Oryzaephilus surinamensis Linnaeus, 1758 (Coleoptera: Silvanidae) induced by powdered plants. Journal of Plant Protection Research, 2015. 55: p. 110 -116.
  • 62. Amiri, R., et al., Repellency of three plants extraction against Oryzaephilus surinamensis and Oryzaephilus mercator (Coleoptera: Silvanidae). Journal of Entomology and Zoology Studies, 2016. 4(6): p. 864-867.
  • 63. Devi, K.C. and S.S. Devi, Insecticidal and oviposition deterrent properties of some spices against coleopteran beetle, Sitophilus oryzae. Journal of Food Science and Technology, 2013. 50(3): p. 600-604.
  • 64. Tiwari, S.N. Efficacy of some plant products as grain protectants against Rhizopertha dominica (F.) (Coleoptera; Bostrichidae). International Journal of Pest Management, 1994. 40(1): p. 94–97.
  • 65. Shah, M.M.R., et al., Repellent effect of some indigenous plant extracts against saw-toothed grain beetle, Oryzaephilus surnamensis (L.). International Journal Sustainable Crop Production, 2008. 3(5): p. 51-54.
  • 66. Manzoor, F., et al., Effect of ethanolic plant extracts on three storage grain pests of economic importance. Pakistan Journal of Botany, 2011. 43: p. 2941-2946.
  • 67. Dwivedi, S.C. & K. Kumar, Screening of responses of adult Khapra beetle, Trogoderma granarium Everts on ten plants species for possible repellent action. Uttar Pradesh Journal of Zoology, 1999. 19(3): p. 197-200.
  • 68. Ebadollahi, S., et al., Toxicity of essential oil of Agastache foeniculum (Pursh) Kuntze to Oryzaephilus surinamensis L. and Lasioderma serricorne F. Journal of Plant Protection Research, 2010. 50(2). doi: 10.2478/v10045-010-0037-x.
  • 69. Moreira, M.D., et al., Plant compounds insecticide activity against Coleoptera pests of stored products. Pesquisa Agropecuária Brasileira, 2007. 42 (7): p. 909-915.
  • 70. Lu, J. and S. Wu, Bioactivity of essential oil from Ailanthus altissima bark against 4 major stored-grain insects. African Journal of Microbiology Research, 2010. 4(3): p. 154-157.
  • 71. Gharsan, F., et al., Toxicity of five plant oils to adult Tribolium castaneum (Coleoptera: Tenebrionidae) and Oryzaephilus surinamensis (Coleoptera: Silvanidae). Florida Entomologist, 2018. 101(4): p. 592-596.
  • 72. Moawad, S. S. and F.N. Al Gamdi, Efficacy of some botanical volatile oils on protection dry date palm from Oryzaephilus surinamensis L. infestation. Journal of Entomology, 2018. 15(3): p. 106- 113.
  • 73. Jawsuwanwong, et al., Repellent effect and ovipositional inhibition of essential oil formulas from star anise (Illicium verum) and dill (Anethum graveolens) against adult of red flour beetle (Tribolium castaneum (Herbst)) and saw-toothed grain beetle (Oryzaephilus surinamensis (L.)). In: Arthur, F.H., et al., (eds.) Proceedings of the 11th International Working Conference on Stored Product Protection, 24-28 November 2014, Chiang Mai, Thailand.
  • 74. Alqurashi, A.D. and A.A. Bakhashwain, Insecticidal and repellent effect of some indigenous plant extracts against saw-toothed grain beetle, Oryzaephilus surinamensis (L.) (Coleoptera: Silvanidae). Mansoura Journal of Plant Protection and Pathology, 2010. 1(8): p. 665 – 672.
  • 75. Bachrouch, O., et al., Major compounds and insecticidal activities of two Tunisian Artemisia essential oils toward two major coleopteran pests. Industrial Crops and Products, 2015. 65: p. 127–133.
  • 76. Lu, J., et al., Toxicity of essential oil from Artemisia argyi against Oryzaephilus surinamensis (Linnaeus) (Coleoptera: Silvanidae). African Journal of Microbiology Research, 2011. 5(18): p. 2816-2819.
  • 77. Najafabadi, S.S.M., et al., Repellency and toxicity of three plants leaves extraction against Oryzaephilus surinamensis L. and Tribolium castaneum Herbst. Journal of Biodiversity and Environmental Science, 2014. 4(6): p. 26-32.
  • 78. Facknath, S. Combination of neem and physical disturbance for the control of four insect pests of stored products. International Journal of Tropical Insect Science, 2006. 26(1): p. 16–27.
  • 79. Yousif, R.E H.A. and A.K. Taha, Evaluation of some plant extracts against adults of the saw-toothed grain beetle, Oryzaephilus surinamensis (Linn.) (Coleoptera: Silvanidae). Universal Journal of Agricultural Research, 2016. 4(5): p. 170-174.
  • 80. Lee, S.E. Biochemical mechanisms conferringcross-resistance to fumigant toxicities of essential oils in a chlorpyrifos-methyl resistant strain of Oryzaephilus surinamensis L. (Coleoptera: Silvanidae). Journal of Stored Products Research, 2002. 38: p. 157–166.
  • 81. Abad, M.K.R. and B.A. Besheli, Insecticidal potential of essential oil from the leaves of Citrus aurantium L. against Oryzaephilus surinamensis (F.), Lasioderma serricorne (L.) and Sitophilus oryzae (L.). Journal of Entomology and Zoology Studies, 2016. 4(5): p. 865-869.
  • 82. Ismail, I.A., et al., Evaluation of certain rosaceae plant extracts as gunny sacks protectants against Oryzaephilus surinamensis and Carpophilus hemipterus infesting dates. Egyptian Journal of Biological Pest Control, 2014. 24(2): p. 415-420.
  • 83. Hermandez-Lambrano, R., et al., Essential oils from plants of the genus Cymbopogon as natural insecticides to control stored product pests. Journal of Stored Products Research, 2015. 62: p. 81-83.
  • 84. Al Qahtani, A.M., et al., Insecticidal and biochemical effect of some dried plants against Oryzaephilus surinamensis (Coleoptera-Silvanidae). The Journal of Basic & Applied Zoology, 2012. 65: p. 88–93.
  • 85. Aref, S.P., et al., Eucalyptus dundasii Maiden essential oil, chemical composition and insecticidal values against Rhyzopertha dominica (F.) and Oryzaephilus surinamensis (L.). Journal of Plant Protection Research, 2015. 55(1): p. 35-41.
  • 86. Aref, S.P., et al., The insecticidal effect of essential oil of Eucalyptus floribundi against two major stored product insect pests; Rhyzopertha dominica (F.) and Oryzaephilus surinamensis (L.). Journal of Essential Oil Bearing Plants, 2016. 19(4): p. 820-831.
  • 87. El-Salam, A.M.E A., et al., Fumigant and toxic activity of some aromatic oils for protecting dry dates from Oryzaephilus surinamensis (L.) (Coleoptera: Silvanidae) in stores. Bulletin of the National Research Centre, 2019. 43(63): p. 1-6.
  • 88. Fouad, H.A., et al., Extraction and repellent activity of Lepidoploa aurea and Memora nodosa against stored grain and byproduct pests. Vie et Milieu-Life and Environment, 2012. 62(1): p. 11-15.
  • 89. Ogendo, J.O., et al., Bioactivity of Ocimum gratissimum L. oil and two of its constituents against five insect pests attacking stored food products. Journal of Stored Products Research, 2008. 44: p. 328–334.
Toplam 89 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Yapısal Biyoloji
Bölüm Araştırma Makaleleri
Yazarlar

Nurul Huda Abdul 0000-0002-7629-9681

Nor Hafizah Zakaria Bu kişi benim

Maizatul Akma Ibrahim Bu kişi benim

Yayımlanma Tarihi 28 Aralık 2019
Yayımlandığı Sayı Yıl 2019 Cilt: 2 Sayı: 3

Kaynak Göster

EndNote Abdul NH, Zakaria NH, Ibrahim MA (01 Aralık 2019) Plants as Potential Repellent Against Oryzaephilus Species. International Journal of Life Sciences and Biotechnology 2 3 243–268.


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