407
Views
17
CrossRef citations to date
0
Altmetric
Pathology and parasitology

Oral administration of essential oils and main components: Study on honey bee survival and Nosema ceranae development

Administración oral de aceites esenciales y componentes principales: Estudio sobre la supervivencia de abejas melíferas y el desarrollo de Nosema ceranae

ORCID Icon, ORCID Icon, , , , & show all
Pages 616-624 | Received 02 Feb 2017, Accepted 26 Jun 2017, Published online: 25 Sep 2017

References

  • Adams, R.P. (2007). Identification of essential oil components by gas chromatography/mass spectrometry (p. 804). Carol Stream, Illinois.
  • Albo, G.N., Henning, C., Ringuelet, J., Reynaldi, F.J., De Giusti, M.R., & Alippi, A.M. (2003). Evaluation of some essential oils for the control and prevention of American foulbrood disease in honey bees. Apidologie, 34, 417–427.10.1051/apido:2003040
  • Alippi, A.M., Ringuelet, J.A., Cerimele, E.L., Re, M.S., & Henning, C.P. (1996). Antimicrobial activity of some essential oils against Paenibacillus larvae, the causal American foulbrood disease. Journal of Herbs, Spices & Medicinal Plants, 4, 9–16.10.1300/J044v04n02_03
  • Anderson, K., Sheehan, T., Eckholm, B., Mott, B., & DeGrandi-Hoffman, G. (2011). An emerging paradigm of colony health: Microbial balance of the honey bee and hive (Apis mellifera). Insectes Sociaux, 58, 431–444.10.1007/s00040-011-0194-6
  • Bakkali, F., Averbeck, S., Averbeck, D., & Idaomar, M. (2008). Biological effects of essential oils – A review. Food and Chemical Toxicology, 46, 446–475.10.1016/j.fct.2007.09.106
  • Bergougnoux, M., Treilhou, M., & Armengaud, C. (2013). Exposure to thymol decreased phototactic behaviour in the honey bee (Apis mellifera) in laboratory conditions. Apidologie, 44, 82–89.10.1007/s13592-012-0158-5
  • Botías, C., Martín-Hernández, R., Meana, A., & Higes, M. (2013). Screening alternative therapies to control Nosemosis type C in honey bee (Apis mellifera iberiensis) colonies. Research in Veterinary Science, 95, 1041–1045.10.1016/j.rvsc.2013.09.012
  • Cantwell, G. (1970). Standard methods for counting nosema spores. American Bee Journal, 100, 222–223.
  • Carayon, J.L., Téné, N., Bonnafé, E., Alayrangues, J., Hotier, L., Armengaud, C., & Treilhou, M. (2013). Thymol as an alternative to pesticides: Persistence and effects of Apilife Var on the phototactic behavior of the honey bee Apis mellifera. Environmental Science and Pollution Research, 21, 4934–4939.
  • Chen, Y.P., Pettis, J., Zhao, Y., Liu, X., Tallon, L., Sadzewicz, L., … Hamilton, M.C. (2013). Genome sequencing and comparative genomics of honey bee microsporidia, Nosema apis reveal novel insights into host-parasite interactions. BMC Genomics, 14, 451.10.1186/1471-2164-14-451
  • Costa, C., Lodesani, M., & Maistrello, L. (2010). Effect of thymol and resveratrol administered with candy or syrup on the development of Nosema ceranae and on the longevity of honey bees (Apis mellifera L.) in laboratory conditions. Apidologie, 41, 141–150.10.1051/apido/2009070
  • Craig, D., & Wendy, W. (2003) Control of chalkbrood disease with natural products, a report for the rural industries research and development corporation, Australia: RIRDC, Publication No. 03/107, RIRDC Project No DAQ-269A.
  • Damiani, N., Gende, L., Bailac, P., Marcangeli, J., & Eguaras, M. (2009). Acaricidal and insecticidal activity of essential oils on Varroa destructor (Acari: Varroidae) and Apis mellifera (Hymenoptera: Apidae). Parasitology Research, 106, 145–152.10.1007/s00436-009-1639-y
  • Damiani, N., Gende, L., Maggi, M., Palacios, S., Marcangeli, J., & Eguaras, M. (2010). Repellent and acaricidal effects of botanical extracts on Varroa destructor. Parasitology Research, 108, 79–86.
  • Damiani, N., Fernández, N.J., Porrini, M.P., Gende, L.B., Álvarez, E., Buffa, F., … Eguaras, M.J. (2014). Laurel leaf extracts for honey bee pest and disease management: Antimicrobial, microsporicidal, and acaricidal activity. Parasitology Research., 113, 701–709.10.1007/s00436-013-3698-3
  • Dellacasa, A.D., Bailac, P. N., Ponzi, M.I., Ruffinengo, S.R., & Eguaras, M.J. (2003). In Vitro activity of essential oils from san Luis-Argentina against Ascosphaera Apis. Journal of Essential Oil Research, 15, 282–285.10.1080/10412905.2003.9712143
  • Detzeland, A., & Wink, M. (1993). Attraction, deterrence or intoxication of bees (Apis mellifera) by plant allelochemicals. Chemoecology, 4, 8–18.10.1007/BF01245891
  • Dussaubat, C., Brunet, J.L., Higes, M., Colbourne, J.K., Lopez, J., Choi, J.H., & Alaux, C. (2012). Gut Pathology and responses to the microsporidium Nosema ceranae in the honey bee Apis mellifera. PLoS ONE, 7, e37017. doi:10.1371/journal.pone.0037017
  • Ebert, T.A., Kevan, P.G., Bishop, B.L., Kevan, S.D., & Downer, R.A. (2007). Oral toxicity of essential oils and organic acids fed to honey bees (Apis mellifera). Journal of Apicultural Research, 46, 220–224. doi:10.1080/00218839.2007.11101398
  • Eguaras, M., Ruffinengo, S., Fuselli, S., Clemente, G., Gende, L., Gonzalez, A., & Ponzi, M. (2005). An in vitro evaluation of Tagetes minuta L. essential oil for the control of the honey bee pathogens Paenibacillus larvae and Ascosphaera apis, and the parasitic mite Varroa destructor. Journal of Essential Oil Research, 17, 336–340.10.1080/10412905.2005.9698924
  • Gende, L.B., Floris, I., Fritz, R., & Eguaras, M.J. (2008). Antimicrobial activity of cinnamon (Cinnamomum zeylanicum) essential oil and its main components against Paenibacillus larvae from Argentine. Bulletin of Insectology, 61, 1–4.
  • Gende, L.B., Matías, D.M., Damiani, N., Fritz, R., Eguaras, M.J., & Floris, I. (2009). Advances in the apiary control of the honey bee American Foulbrood with Cinnamon (Cinnamomum zeylanicum) essential oil. Bulletin of Insectology, 62, 93–97.
  • Genersch, E. (2010). Honey bee pathology: Current threats to honey bees and beekeeping. Applied Microbiology and Biotechnology, 87, 87–97.10.1007/s00253-010-2573-8
  • Good, A.P., Gauthier, M.P.L., Vannette, R.L., & Fukami, T. (2014). Honey bees avoid nectar colonized by three bacterial species, but not by a yeast species, isolated from the bee gut. PLoS ONE., 9, e86494. doi:10.1371/journal.pone.0086494
  • Higes, M., García-Palencia, P., Martín-Hernández, R., & Meana, A. (2007). Experimental infection of Apis mellifera honey bees with the microsporidia Nosema ceranae. Journal of Invertebrate Pathology, 94, 211–217.10.1016/j.jip.2006.11.001
  • Higes, M., Martín-Hernández, R., & Aranzazu, M. (2010). Nosema ceranae in Europe: An emergent type C nosemosis. Apidologie, 41, 375–392.10.1051/apido/2010019
  • Higes, M., Martín-Hernández, R., & Meana, A. (2006). Nosema ceranae, a new microsporidian parasite in honey bees in Europe. Journal of Invertebrate Pathology, 92, 93–95.10.1016/j.jip.2006.02.005
  • Higes, M., Nozal, M.J., Álvaro, A., Barrios, L., Meana, A., Martín-Hernández, R., … Bernal, J. (2011). The stability and effectiveness of fumagillin in controlling Nosema ceranae (Microsporidia) infection in honey bees (Apis mellifera) under laboratory and field conditions. Apidologie, 42, 364–377.10.1007/s13592-011-0003-2
  • Holt, H.L., & Grozingerv, C.M. (2016). Approaches and challenges to managing Nosema (Microspora: Nosematidae) parasites in honey bee (Hymenoptera: Apidae) colonies. Journal of Economic Entomology, 109, 1487–1503. doi:10.1093/jee/tow103
  • Huang, W., Jiang, J., Chen, Y., & Wang, C.H. (2007). A Nosema ceranae isolate from the honey bee Apis mellifera. Apidologie, 38, 30–37.10.1051/apido:2006054
  • Imdorf, A., Bogdanov, S., Kilchenmann, V., & Berger, T. (2006). Toxic effects of essential oils and some of their components on Varroa destructor and Apis mellifera L. under laboratory conditions. ALP science, 495, 1–18.
  • Klee, J., Besana, A.M., Genersch, E., Gisder, S., Nanetti, A., Tam, D.Q., … Message, D. (2007). Widespread dispersal of the microsporidian Nosema ceranae, an emergent pathogen of the western honey bee, Apis mellifera. Journal of Invertebrate Pathology, 96, 1–10.10.1016/j.jip.2007.02.014
  • Maggi, M., Ruffinengo, S., Damiani, N., Sardella, N., & Eguaras, M. (2009). First detection of Varroa destructor resistance to coumaphos in Argentina. Experimental and Applied Acarology, 47, 317–320.10.1007/s10493-008-9216-0
  • Maggi, M., Ruffinengo, S., Negri, P., & Eguaras, M. (2010). Resistance phenomena to amitraz from populations of the ectoparasitic mite Varroa destructor of Argentina. Parasitology Research, 107, 1189–1192.10.1007/s00436-010-1986-8
  • Maistrello, L., Lodesani, M., Costa, C., Leonardi, F., Marani, G., Caldon, M., … Granato, A. (2008). Screening of natural compounds for the control of nosema disease in honey bees (Apis mellifera). Apidologie, 39, 436–444.10.1051/apido:2008022
  • Martín-Hernández, R., Meana, A., Prieto, L., Martínez-Salvador, A., Garrido-Bailón, E., & Higes, M. (2007). Outcome of colonization of Apis mellifera by Nosema ceranae. Applied and Environmental Microbiology, 73, 6331–6338.10.1128/AEM.00270-07
  • Mullin, C.A., Frazier, M., Frazier, J.L., Ashcraft, S., Simonds, R., Pettis, J.S. (2010). High Levels of miticides and agrochemicals in North American apiaries: Implications for honey bee health. PLoS ONE, 5, e9754. doi:10.1371/journal.pone.0009754
  • Paldi, N., Glick, E., Oliva, M., Zilberberg, Y., Aubin, L., & Pettis, J. (2010). Effective gene silencing in a microsporidian parasite associated with honey bee (Apis mellifera) colony declines. Applied and Environmental Microbiology, 76, 5960–5964.10.1128/AEM.01067-10
  • Porrini, M., Audisio, M.C., Sabaté, D., Ibarguren, C., Medici, S., Sarlo, E.G., … Eguaras, M. (2010). Effect of bacterial metabolites on microsporidian Nosema ceranae and on its host Apis mellifera. Parasitology Research, 107, 381–388.10.1007/s00436-010-1875-1
  • Porrini, M.P., Fernández, N., Garrido, P.M., Gende, L.B., Medici, S., & Eguaras, M.J. (2011). In vivo evaluation of antiparasitic activity of plant extracts on Nosema ceranae (Microsporidia). Apidologie, 42, 700–707.10.1007/s13592-011-0076-y
  • Porrini, M.P., Garrido, P.M., & Eguaras, M.J. (2013). Individual feeding of honey bees: Modification of the Rinderer technique. Journal of Apicultural Research, 52, 194–195. doi:10.3896/IBRA.1.52.5.0410.3896/IBRA.1.52.5.04
  • Ruffinengo, S., Eguaras, M., Floris, I., Faverin, C., Bailac, P., & Ponzi, M. (2005). LD50 and repellent effects of essential oils from Argentinian wild plant species on Varroa destructor. Journal of Economic Entomology, 98, 651–655.10.1603/0022-0493-98.3.651
  • Sammataro, D., Degrandi-Hoffman, G., Needham, G., & Wardell, G. (1998). Some volatile plant oils as potential control agents for Varroa Mite (Acari: Varroaidae) in honey bee colonies (Hymenoptera: Apidae). American Bee Journal, 138, 681–685.
  • Sammataro, D., Degrandi-Hoffman, G., Ostiguy, N., Wardell, G., & Finley, J. (2004). Testing a combination of control strategies to manage Varroa destructor (Acari: Varroidae) population levels in honey bee (Hymenoptera: Apidae) colonies. International Journal of Acarology, 30, 71–76.10.1080/01647950408684371
  • Sammataro, D., Finley, J., LeBlanc, B., Wardell, G., Ahumada-Segura, F., & Carroll, M.J. (2009). Feeding essential oils and 2-heptanone in sugar syrup and liquid protein diets to honey bees (Apis mellifera L.) as potential Varroa mite (Varroa destructor) controls. Journal of Apicultural Research, 48, 256–262. doi:10.3896/IBRA.1.48.4.0510.3896/IBRA.1.48.4.05
  • Sarlo, E.G., Medici, S.K., Porrini, M.P., Garrido, M., Floris, I., & Euguaras, M.J. (2011). Comparison between different fumagillin dosage and evaluation method in the apiary control of nosemosis type C. Redia, 94, 39–44.
  • Shaaya, E., Kostjukovski, M., Eilberg, J., & Sukprakarn, C. (1997). Plant oils as fumigants and contact insecticides for the control of stored product insects. Journal of Stored Products Research, 33, 7–15.10.1016/S0022-474X(96)00032-X
  • Shaaya, E., Ravid, U., Paster, N., Juven, B., Zisman, U., & Pisarrev, V. (1991). Fumigant toxicity of essential oils against four major stored product insects. Journal of Chemical Ecology, 17, 499–504.10.1007/BF00982120
  • Smith-Palmer, A., Stewart, J., & Fyfe, L. (1998). Antimicrobial properties of plant essential oils and essences against five important food-borne pathogens. Letters in Applied Microbiology, 26, 118–122.10.1046/j.1472-765X.1998.00303.x
  • Tian, B., Fadhil, N.H., Powell, J.E., Kwong, W.K., & Moran, N.A. (2012) Long-term exposure to antibiotics has caused accumulation of resistance determinants in the gut microbiota of honey bees. mBio. doi:10.1128/mBio.00377-12, Editor Roberto Kolter, Harvard Medical School.
  • Umpiérrez, M.E., Santos, E., González, A., & Rossini, C. (2011). Plant essential oils as potential control agents of varroatosis. Phytochemical Reviews, 10, 227–244.10.1007/s11101-010-9182-0
  • Umpiérrez, M., Santos, E., Mendoza, Y., Altesor, P., & Rossini, C. (2013). Essential oil from Eupatorium buniifolium leaves as potential varroacide. Parasitology Research, 112, 3389–3400.10.1007/s00436-013-3517-x
  • van den Heever, J.P., Thompson, T.S., Curtis, J.M., Ibrahim, A., & Pernal, S.F. (2014). Fumagillin: An overview of recent scientific advances and their significance for apiculture. Journal of Agricultural and Food Chemistry, 62, 2728–2737.10.1021/jf4055374
  • Williams, G.R., Sampson, M.A., Shutler, D., & Rogers, R.E.L. (2008). Does fumagillin control the recently detected invasive parasite Nosema ceranae in western honey bees (Apis mellifera)? Journal of Invertebrate Pathology, 99, 342–344.10.1016/j.jip.2008.04.005

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.