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Antimicrobial Activities of Nest Materials Dolichovespula saxonica (Fabricius,1793) (Hymenoptera: Vespidae) in Turkey

Year 2018, Volume: 10 Issue: 1, 9 - 14, 01.06.2018

Abstract

Organization of bee societies for
many years is of interest to many study topic. In this study the antimicrobial
activity of diluted with ethanol five fraction nest was assayed in vitro by
agar disc diffusion method against 8 bacteria and 2 fungi species.

The ethanol extracts of almost
all the nest exhibited antibacterial antifungal activity towards one or another
bacterium against to all of microorganism used in this study. The maximum
antibacterial antifungal activity was shown by diluted 25 µL (2.5 mg), 20 µL (2
mg), followed by and 15 µL (1.5 mg), respectively. The antimicrobial activities
of the extracts of bees nest against bacteria were more effective than those
against fungi.









The obtained results show that
nest may be used as possible natural, antimicrobial agents to control various
human, animal and plant diseases.

References

  • Anderson, K.E., Eckholm, B., Mott, B.M., Sheehan, T.H., Hoffman, G.D. (2011). An emerging paradigm of colony health: microbial balance of the honey bee and hive (Apis mellifera). Insectes Sociaux, 58: 431–444.
  • Banks, B.E.C., Shipolini, R.A. (1986). Chemistry and pharmacology of honeybee venom. In Venoms of the Hymenoptera: Biochemical, pharmacological and behavioral aspects. Edited by Piek T. London: Academic, 329–416.7
  • Blum, M.S., Walker, J.R., Callahan, P.S. Novak, A.F. (1985). Chemical, insecticidal and antibiotic properties of fire ant venom. Science 128: 306–307.
  • Christe, P., Oppliger, A., Bancalà, F., Castella, G., Chauisat, M. (2003). Evidence for collective medication in ants. Ecol. Lett, 6: 19–22.
  • Ertürk, Ö., Kati, H., Yayli, N., Demirbağ, Z. (2003). Antimicrobial activity of Viscum album L. subsp. Abietis (Wiesb). Turkish Journal of Biology, 27: 255–258.
  • Ertürk, Ö., Pehlivankarakaş, F., Pehlivan, D., Nas, N. (2009). The Antibacterial and Antifungal Effects of Rhodedendron Derived Mad Honey and Extracts of Four Rhododendron Species. Turk J Biol, 33: 151-158.
  • Jeanne, R.L. (1997). The evolution of exocrinegl and function in wasps, In: Turillazzi, S., West-Eberhard, M.J., Edits. Natural historyandevolution of paper-wasps. Oxford: Oxford University Press. 144-160.
  • Langenheim, J. (2003). Plant resins. Chemistry, evolution, ecology, ethnobotany, Timber Press, Portland Oregon.
  • Lokvam, J., Braddock, J.F. (1999). Anti-bacterial function in the sexually dimorphic pollinator rewards of Clusia grandiflora (Clusiaceae). Oecologia, 119: 534–540.
  • Maschwıtz, U., Dorow, W.H.O., Botz, T. (1990). Chemicalcomposition of thenestwalls, and nestingbehaviour, of Ropalidia (Icarielia) opifexvan der Vecht, 1962 (Hymenoptera:Vespidae), a Southeast Asian social wasp with translucent nest. Journal of Natural History., 24: 1311-1319.
  • Mcgovern, J.N., Jeanne, R.L., Effland, M.J. (1988). Thenature of waspnestpaper. Tappi Journal, 71: 133-139.
  • Monteiro, M.C., Romao, P.R., Soares, A.M. (2009). Pharmacological perspectives of wasp venom. Protein Pept Lett. 16: 944–952.
  • Ronald, M.A. (1990). Microbiologia; Compania Editorial Continental SA de CV, México DF. 505.
  • Rosengaus, R.B., Guldin, M.R., Traniello, J.F.A. (1998). Inhibitory effect of termite fecal pellets on fungal sporegermination. J Chem Ecol, 24: 1697–1706.
  • Schremmer, F., März, L., Sımonsberger, P. (1985). Chitin im Speichel der Papierwespen (soziale Faltenwespen, Vespidae): Biologie, Chemismus, Feinstruktur. Mikroskopie. 42: 52-56.
  • Silva, T.M.S., Camara, C.A., Lins, A.C.S., Barbosa-Filho, J.M., Silva, E.M.S., Freitas, B.M., Santos, F.A.R. (2006). Chemical composition and free radical scavenging activity of polen loads froms tingless bee MeliponasubnitidaDucke. J. Food Compos. Analys. 19: 507–511.
  • Spradbery, J.V. (1973) Wasps. An account of thebiologyandnaturalhistory of social and solitary wasps. Sidgwickand Jackson Pres, London.
  • Starr, C.K. (1991). Thenest as thelocus of social life, In: Ross, K.G., Matthews, R.W. Edits. Thesocialbiology of wasps. IthacaandLondon: Cornell University Press. 480-509.
  • Yamane, S.Ô., Kudô, K., Tajıma, T., Nıhon’yanagı, K., Shınoda, M., Saıto, K., Yamamoto, H. (1998). Comparison of investment in nestconstructionbythefoundresses of consubgeneric Polisteswasps, Polistes (Polistes) ripariusand P.(P.) chinensis (Hymenoptera, Vespidae). Journal of Ethology, 16: 97-104.
  • Yıldırım, E., Özbek, H. (1992). Türkiye Vespiane (Hymenoptera: Vespoidea: Vespidae) Türleri üzerine Sistemetik ve Faunistik çalışmalar, Türk Entamol.derg, 16: 227-242.
Year 2018, Volume: 10 Issue: 1, 9 - 14, 01.06.2018

Abstract

References

  • Anderson, K.E., Eckholm, B., Mott, B.M., Sheehan, T.H., Hoffman, G.D. (2011). An emerging paradigm of colony health: microbial balance of the honey bee and hive (Apis mellifera). Insectes Sociaux, 58: 431–444.
  • Banks, B.E.C., Shipolini, R.A. (1986). Chemistry and pharmacology of honeybee venom. In Venoms of the Hymenoptera: Biochemical, pharmacological and behavioral aspects. Edited by Piek T. London: Academic, 329–416.7
  • Blum, M.S., Walker, J.R., Callahan, P.S. Novak, A.F. (1985). Chemical, insecticidal and antibiotic properties of fire ant venom. Science 128: 306–307.
  • Christe, P., Oppliger, A., Bancalà, F., Castella, G., Chauisat, M. (2003). Evidence for collective medication in ants. Ecol. Lett, 6: 19–22.
  • Ertürk, Ö., Kati, H., Yayli, N., Demirbağ, Z. (2003). Antimicrobial activity of Viscum album L. subsp. Abietis (Wiesb). Turkish Journal of Biology, 27: 255–258.
  • Ertürk, Ö., Pehlivankarakaş, F., Pehlivan, D., Nas, N. (2009). The Antibacterial and Antifungal Effects of Rhodedendron Derived Mad Honey and Extracts of Four Rhododendron Species. Turk J Biol, 33: 151-158.
  • Jeanne, R.L. (1997). The evolution of exocrinegl and function in wasps, In: Turillazzi, S., West-Eberhard, M.J., Edits. Natural historyandevolution of paper-wasps. Oxford: Oxford University Press. 144-160.
  • Langenheim, J. (2003). Plant resins. Chemistry, evolution, ecology, ethnobotany, Timber Press, Portland Oregon.
  • Lokvam, J., Braddock, J.F. (1999). Anti-bacterial function in the sexually dimorphic pollinator rewards of Clusia grandiflora (Clusiaceae). Oecologia, 119: 534–540.
  • Maschwıtz, U., Dorow, W.H.O., Botz, T. (1990). Chemicalcomposition of thenestwalls, and nestingbehaviour, of Ropalidia (Icarielia) opifexvan der Vecht, 1962 (Hymenoptera:Vespidae), a Southeast Asian social wasp with translucent nest. Journal of Natural History., 24: 1311-1319.
  • Mcgovern, J.N., Jeanne, R.L., Effland, M.J. (1988). Thenature of waspnestpaper. Tappi Journal, 71: 133-139.
  • Monteiro, M.C., Romao, P.R., Soares, A.M. (2009). Pharmacological perspectives of wasp venom. Protein Pept Lett. 16: 944–952.
  • Ronald, M.A. (1990). Microbiologia; Compania Editorial Continental SA de CV, México DF. 505.
  • Rosengaus, R.B., Guldin, M.R., Traniello, J.F.A. (1998). Inhibitory effect of termite fecal pellets on fungal sporegermination. J Chem Ecol, 24: 1697–1706.
  • Schremmer, F., März, L., Sımonsberger, P. (1985). Chitin im Speichel der Papierwespen (soziale Faltenwespen, Vespidae): Biologie, Chemismus, Feinstruktur. Mikroskopie. 42: 52-56.
  • Silva, T.M.S., Camara, C.A., Lins, A.C.S., Barbosa-Filho, J.M., Silva, E.M.S., Freitas, B.M., Santos, F.A.R. (2006). Chemical composition and free radical scavenging activity of polen loads froms tingless bee MeliponasubnitidaDucke. J. Food Compos. Analys. 19: 507–511.
  • Spradbery, J.V. (1973) Wasps. An account of thebiologyandnaturalhistory of social and solitary wasps. Sidgwickand Jackson Pres, London.
  • Starr, C.K. (1991). Thenest as thelocus of social life, In: Ross, K.G., Matthews, R.W. Edits. Thesocialbiology of wasps. IthacaandLondon: Cornell University Press. 480-509.
  • Yamane, S.Ô., Kudô, K., Tajıma, T., Nıhon’yanagı, K., Shınoda, M., Saıto, K., Yamamoto, H. (1998). Comparison of investment in nestconstructionbythefoundresses of consubgeneric Polisteswasps, Polistes (Polistes) ripariusand P.(P.) chinensis (Hymenoptera, Vespidae). Journal of Ethology, 16: 97-104.
  • Yıldırım, E., Özbek, H. (1992). Türkiye Vespiane (Hymenoptera: Vespoidea: Vespidae) Türleri üzerine Sistemetik ve Faunistik çalışmalar, Türk Entamol.derg, 16: 227-242.
There are 20 citations in total.

Details

Primary Language English
Subjects Zootechny (Other)
Journal Section Makaleler
Authors

Ömer Ertürk

Ceren Başkan

Zeynep Koleren

Publication Date June 1, 2018
Published in Issue Year 2018 Volume: 10 Issue: 1

Cite

APA Ertürk, Ö., Başkan, C., & Koleren, Z. (2018). Antimicrobial Activities of Nest Materials Dolichovespula saxonica (Fabricius,1793) (Hymenoptera: Vespidae) in Turkey. Arıcılık Araştırma Dergisi, 10(1), 9-14.
AMA Ertürk Ö, Başkan C, Koleren Z. Antimicrobial Activities of Nest Materials Dolichovespula saxonica (Fabricius,1793) (Hymenoptera: Vespidae) in Turkey. Arıcılık Araştırma Dergisi. June 2018;10(1):9-14.
Chicago Ertürk, Ömer, Ceren Başkan, and Zeynep Koleren. “Antimicrobial Activities of Nest Materials Dolichovespula Saxonica (Fabricius,1793) (Hymenoptera: Vespidae) in Turkey”. Arıcılık Araştırma Dergisi 10, no. 1 (June 2018): 9-14.
EndNote Ertürk Ö, Başkan C, Koleren Z (June 1, 2018) Antimicrobial Activities of Nest Materials Dolichovespula saxonica (Fabricius,1793) (Hymenoptera: Vespidae) in Turkey. Arıcılık Araştırma Dergisi 10 1 9–14.
IEEE Ö. Ertürk, C. Başkan, and Z. Koleren, “Antimicrobial Activities of Nest Materials Dolichovespula saxonica (Fabricius,1793) (Hymenoptera: Vespidae) in Turkey”, Arıcılık Araştırma Dergisi, vol. 10, no. 1, pp. 9–14, 2018.
ISNAD Ertürk, Ömer et al. “Antimicrobial Activities of Nest Materials Dolichovespula Saxonica (Fabricius,1793) (Hymenoptera: Vespidae) in Turkey”. Arıcılık Araştırma Dergisi 10/1 (June 2018), 9-14.
JAMA Ertürk Ö, Başkan C, Koleren Z. Antimicrobial Activities of Nest Materials Dolichovespula saxonica (Fabricius,1793) (Hymenoptera: Vespidae) in Turkey. Arıcılık Araştırma Dergisi. 2018;10:9–14.
MLA Ertürk, Ömer et al. “Antimicrobial Activities of Nest Materials Dolichovespula Saxonica (Fabricius,1793) (Hymenoptera: Vespidae) in Turkey”. Arıcılık Araştırma Dergisi, vol. 10, no. 1, 2018, pp. 9-14.
Vancouver Ertürk Ö, Başkan C, Koleren Z. Antimicrobial Activities of Nest Materials Dolichovespula saxonica (Fabricius,1793) (Hymenoptera: Vespidae) in Turkey. Arıcılık Araştırma Dergisi. 2018;10(1):9-14.