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Yavru Çürüklüğü Klinik Bulguları olan Arılıklarda Arıcılık Ekı̇pmanlarındakı̇ Mı̇kroorganı̇zma Kontaminasyon Noktalarının Araştırılması

Year 2023, , 128 - 137, 19.05.2023
https://doi.org/10.31467/uluaricilik.1272217

Abstract

Çalışmada, arılıklarda yavru çürüklüğü klinik bulguları bulunan koloniler ile aynı kolonilerde kullanılan el demiri, körük, eldiven, şerbetlik ve arıcı kıyafetlerinin mikrobiyal infeksiyonlar yönünden bir rezervuar kaynağı olup olmadıklarının belirlenmesi amaçlanmıştır. Bu amaçla Güney Marmara bölgesinde bulunan 29 farklı arılıktan örnekler toplanmıştır. Alınan örnekler uygun koşullarda laboratuvara getirilerek izolasyon ve identifikasyon yapılmıştır. Her arılıktan toplanan yemlik, el demiri, körük, eldiven ve arıcı kıyafetlerinde farklı mikroorganizmalar izole edilmiştir. Yavru çürüklüğü klinik bulguları görülen kovanlardan alınan örnekler ile alet ve ekipmandan alınan örneklerden izole edilen bakteriler aynı tür ya da karışık olarak izole edilmiştir. Sonuç olarak arıcıların kullandıkları yemlik, el demiri, körük, eldiven ve arıcı maske ve tulumlarında zengin bir mikroorganizma varlığı saptanmış ve arıcılıkta kullanılan bu malzemelerin mikrobiyal bir rezervuar kaynağı olduğu belirlenmiştir.

References

  • Al-Waili N, Salom K, Al-Ghamdi A, Ansari MJ. Antibiotic, pesticide, and microbial contaminants of honey: human health hazards. Sci World J. 2012;930849, DOI:10.1100/2012/930849.
  • Arbia A, Babbay B.. Management Strategies of Honey Bee Diseases. J Entomol. 2011;8(1): 1-15. DOI:10.3923/je.2011.1.15.
  • Bayrakal GM, Ekici G, Akkaya H, Sezgin FH, Dümen E. Detection and molecular examination of pathogens in honey and bees in the northern Marmara region, Turkey. Kaskad Univ vet Fak Derg 2020;26(3).313-319. DOI: 10.9775/kvfd.2019.22845.
  • Bogdanov S., Imdorf A., Fluri P., Kilchenmann V. The contaminants of the bee colony. Bulg J Vet Med. 2003; 6(2):59-70.
  • Borum AE. Biosecurity and good beekeeping practices in beekeeping (Arıcılıkta biyogüvenlik ve iyi arıcılık uygulamaları). U. Arı D./U. Bee J. 2022;22(2):246-275. DOI: 10.31467/uluaricilik.1175874.
  • CFIA. Section 1: Bee Health Management. Honey Bee Producer Guide to the National Bee Farm-level Biosecurity Standard: Government of Canada; 2013.
  • Cunningham MM, Tran L, McKee C, Newman T, Gladish DW, Lofano AK, Bilodeau GJ, Rott M, Guarna MM. Honey bees as environmental biomonitors of pathogens and contaminants. Ecological Indicators. 2022;108457.
  • De Graaf DC, Alippi AM, Antúnez K, Aronstein KA, Budge G, De Koker D, De Smet L, Dingman DW, Evans JD, Foster LJ, Fünfhaus A, Garcia-Gonzalez E, Gregorc A, Human H, Murray KD, Neguyen BK, 99 Poppinga L, Spivak M, Vanengelsdorp D, Wilkins S, Genersch E: Standard methods for American foulbrood research. J Apic Res. 2013;51(3):1-27.
  • Devillers J, Pham-Delègue MH. Honey Bees: Estimating the environmental impact of chemicals, Taylor & Francis, London and New York, 2002.
  • Forsgren E, Budge GE, Charriere JD, Hornitzky MAZ: Standard methods for European foulbrood research. J Apic Res. 2013;52(1):1-14.
  • Fries I, Camazine S. Implications of horizontal and vertical pathogen transmission for honey bee epidemiology. Apidologie. 2001;32(3):199-214.
  • Gallai N, Salles JM, Settele J, Vaissière B E. Economic valuation of the vulnerability of world agriculture confronted with pollinator decline, Ecol Econ. 2009;68(3):810-82. https://doi.org/10.1016/j.ecolecon.2008.06.014.
  • Gilliam M. Identification and roles of non-pathogenic microflora associated with honey bees. FEMS Microbiol Lett. 1997;155(1):1-10.
  • Graham J. The hive and The honey bee. Dadant and Sons.1991.
  • Kopcakova A, Salamunova S, Javorsky P, et al. The Application of MALDI-TOF MS for a Variability Study of Paenibacillus larvae. Vet Sci. 2022;9(10):521. DOI:10.3390/vetsci9100521.
  • Leska A, Nowak A, Nowak I, Górczyńska A. Effects of Insecticides and Microbiological Contaminants on Apis mellifera Health. Molecules. 2021;26(16):5080. DOI:10.3390/molecules26165080.
  • Locke B, Low M, Forsgren E. An integrated management strategy to prevent outbreaks and eliminate infection pressure of American foulbrood disease in a commercial beekeeping operation. Prev Vet Med. 2019; 167:48-52.
  • Nordström S, Fries I. A comparison of media and cultural conditions for identification of Bacillus larvae in honey. J. Apic. Res. 1995;34:97-103.
  • Özakın C, Aydın L, Çakmak I, Güleğen E. Hazır ve eski peteklerin bakteriyolojik ve mikolojik yönden incelenmesi. U. Arı D./ U. Bee J. 2003;3(3):26-30.
  • Rašović MB. The most important methods of disınfection in beekeeping. Poljoprivreda Sumarstvo. 2021;67(3):167-176. https://doi.org/10.17707/AgricultForest.67.3.14.
  • Staveley JP, Law SA, Fairbrother A, Menzie CA. A Causal Analysis of Observed Declines in Managed Honey Bees (Apis mellifera). Hum Ecol Risk Assess. 2014;20(2):566-591. DOI:10.1080/10807039.2013.831263.
  • Snowdon JA, Cliver DO. Microorganisms in honey. Int J Food Microbiol. 1996;31(1-3):1-26. https://doi.org/10.1016/0168-1605(96)00970-1.
  • Tautz, J. The Buzz about bees: Biology of a superorganism. Springer, 2008.
  • Tomljanović Z, Cvitković D, Pašić S, Volarević B, Tlak Gajger I. Production, practices and attitudes of beekeepers in Croatia. Vet Arh. 2020; 90:413-427.
  • vanEngelsdorp D, Tarpy DR, Lengerich EJ, Pettis JS. Idiopathic brood disease syndrome and queen events as precursors of colony mortality in migratory beekeeping operations in the eastern United States. Prev Vet Med. 2013;108(2-3):225-233. DOI:10.1016/j.prevetmed.2012.08.004.
  • Williams M. Identification and roles of non-pathogenic microflora associated wit honey bees. FEMS Microbiology Letters 1997, 155:1-10.

INVESTIGATION of MICROORGANISM CONTAMINATION POINTS in BEEKEEPING EQUIPMENTS WITH CLINICAL SIGNS of FOULBROOD in APIARIES

Year 2023, , 128 - 137, 19.05.2023
https://doi.org/10.31467/uluaricilik.1272217

Abstract

The goal of this study was to determine whether colonies with clinical signs of foulbrood in apiaries and hive tools, smokers, gloves, feeders and beekeeper's veils used in the same colonies were a reservoir source for microbial infections. For this purpose, samples were taken from colonies with clinical signs of foulbrood and collected from 29 different apiaries in the Southern Marmara region of Türkiye. The samples were brought to the laboratory under appropriate conditions, and agent isolation and identification were performed. Different microorganisms were isolated from the feeder, hive tool, beekeeper smoker, gloves and beekeeper suit samples collected from each apiary. Bacteria isolated from the samples taken from the hives with clinical signs of foulbrood and from the samples taken from the tools and equipment were isolated as the same species or as a mixture. As a result, an intense presence of microorganisms was detected in the hive tool, beekeeper suit, gloves, feeder, and beekeeper’s smoker, used by beekeepers, and it was determined that these materials used in beekeeping were a source of microbial reservoirs.

References

  • Al-Waili N, Salom K, Al-Ghamdi A, Ansari MJ. Antibiotic, pesticide, and microbial contaminants of honey: human health hazards. Sci World J. 2012;930849, DOI:10.1100/2012/930849.
  • Arbia A, Babbay B.. Management Strategies of Honey Bee Diseases. J Entomol. 2011;8(1): 1-15. DOI:10.3923/je.2011.1.15.
  • Bayrakal GM, Ekici G, Akkaya H, Sezgin FH, Dümen E. Detection and molecular examination of pathogens in honey and bees in the northern Marmara region, Turkey. Kaskad Univ vet Fak Derg 2020;26(3).313-319. DOI: 10.9775/kvfd.2019.22845.
  • Bogdanov S., Imdorf A., Fluri P., Kilchenmann V. The contaminants of the bee colony. Bulg J Vet Med. 2003; 6(2):59-70.
  • Borum AE. Biosecurity and good beekeeping practices in beekeeping (Arıcılıkta biyogüvenlik ve iyi arıcılık uygulamaları). U. Arı D./U. Bee J. 2022;22(2):246-275. DOI: 10.31467/uluaricilik.1175874.
  • CFIA. Section 1: Bee Health Management. Honey Bee Producer Guide to the National Bee Farm-level Biosecurity Standard: Government of Canada; 2013.
  • Cunningham MM, Tran L, McKee C, Newman T, Gladish DW, Lofano AK, Bilodeau GJ, Rott M, Guarna MM. Honey bees as environmental biomonitors of pathogens and contaminants. Ecological Indicators. 2022;108457.
  • De Graaf DC, Alippi AM, Antúnez K, Aronstein KA, Budge G, De Koker D, De Smet L, Dingman DW, Evans JD, Foster LJ, Fünfhaus A, Garcia-Gonzalez E, Gregorc A, Human H, Murray KD, Neguyen BK, 99 Poppinga L, Spivak M, Vanengelsdorp D, Wilkins S, Genersch E: Standard methods for American foulbrood research. J Apic Res. 2013;51(3):1-27.
  • Devillers J, Pham-Delègue MH. Honey Bees: Estimating the environmental impact of chemicals, Taylor & Francis, London and New York, 2002.
  • Forsgren E, Budge GE, Charriere JD, Hornitzky MAZ: Standard methods for European foulbrood research. J Apic Res. 2013;52(1):1-14.
  • Fries I, Camazine S. Implications of horizontal and vertical pathogen transmission for honey bee epidemiology. Apidologie. 2001;32(3):199-214.
  • Gallai N, Salles JM, Settele J, Vaissière B E. Economic valuation of the vulnerability of world agriculture confronted with pollinator decline, Ecol Econ. 2009;68(3):810-82. https://doi.org/10.1016/j.ecolecon.2008.06.014.
  • Gilliam M. Identification and roles of non-pathogenic microflora associated with honey bees. FEMS Microbiol Lett. 1997;155(1):1-10.
  • Graham J. The hive and The honey bee. Dadant and Sons.1991.
  • Kopcakova A, Salamunova S, Javorsky P, et al. The Application of MALDI-TOF MS for a Variability Study of Paenibacillus larvae. Vet Sci. 2022;9(10):521. DOI:10.3390/vetsci9100521.
  • Leska A, Nowak A, Nowak I, Górczyńska A. Effects of Insecticides and Microbiological Contaminants on Apis mellifera Health. Molecules. 2021;26(16):5080. DOI:10.3390/molecules26165080.
  • Locke B, Low M, Forsgren E. An integrated management strategy to prevent outbreaks and eliminate infection pressure of American foulbrood disease in a commercial beekeeping operation. Prev Vet Med. 2019; 167:48-52.
  • Nordström S, Fries I. A comparison of media and cultural conditions for identification of Bacillus larvae in honey. J. Apic. Res. 1995;34:97-103.
  • Özakın C, Aydın L, Çakmak I, Güleğen E. Hazır ve eski peteklerin bakteriyolojik ve mikolojik yönden incelenmesi. U. Arı D./ U. Bee J. 2003;3(3):26-30.
  • Rašović MB. The most important methods of disınfection in beekeeping. Poljoprivreda Sumarstvo. 2021;67(3):167-176. https://doi.org/10.17707/AgricultForest.67.3.14.
  • Staveley JP, Law SA, Fairbrother A, Menzie CA. A Causal Analysis of Observed Declines in Managed Honey Bees (Apis mellifera). Hum Ecol Risk Assess. 2014;20(2):566-591. DOI:10.1080/10807039.2013.831263.
  • Snowdon JA, Cliver DO. Microorganisms in honey. Int J Food Microbiol. 1996;31(1-3):1-26. https://doi.org/10.1016/0168-1605(96)00970-1.
  • Tautz, J. The Buzz about bees: Biology of a superorganism. Springer, 2008.
  • Tomljanović Z, Cvitković D, Pašić S, Volarević B, Tlak Gajger I. Production, practices and attitudes of beekeepers in Croatia. Vet Arh. 2020; 90:413-427.
  • vanEngelsdorp D, Tarpy DR, Lengerich EJ, Pettis JS. Idiopathic brood disease syndrome and queen events as precursors of colony mortality in migratory beekeeping operations in the eastern United States. Prev Vet Med. 2013;108(2-3):225-233. DOI:10.1016/j.prevetmed.2012.08.004.
  • Williams M. Identification and roles of non-pathogenic microflora associated wit honey bees. FEMS Microbiology Letters 1997, 155:1-10.
There are 26 citations in total.

Details

Primary Language English
Subjects Entomology, Agricultural Engineering (Other), Veterinary Surgery
Journal Section Research Articles
Authors

Ayşe Ebru Borum 0000-0002-6916-8982

İbrahim Çakmak 0000-0002-8000-5770

Publication Date May 19, 2023
Acceptance Date April 16, 2023
Published in Issue Year 2023

Cite

Vancouver Borum AE, Çakmak İ. INVESTIGATION of MICROORGANISM CONTAMINATION POINTS in BEEKEEPING EQUIPMENTS WITH CLINICAL SIGNS of FOULBROOD in APIARIES. U.Arı D.-U.Bee J. 2023;23(1):128-37.

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