Antimicrobial activity of some Argentinian wild plant essential oils against Paenibacillus larvae larvae, causal agent of American foulbrood (AFB)

Five essential oils from Argentinian wild plants were tested in vitro for antimicrobial activity against different strains of Paenibacillus larvae larvae, causal agent of American foulbrood in honey bees. Apis mellifera L. The species selected from which to extract the essential oils were aguaribay...

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Autor principal: Fuselli, S.R
Otros Autores: De La Rosa, S.B.G, Gende, L.B, Eguaras, M.J, Fritz, R.
Formato: Capítulo de libro
Lenguaje:Inglés
Publicado: 2006
Acceso en línea:Registro en Scopus
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100 1 |a Fuselli, S.R. 
245 1 0 |a Antimicrobial activity of some Argentinian wild plant essential oils against Paenibacillus larvae larvae, causal agent of American foulbrood (AFB) 
260 |c 2006 
270 1 0 |m Fuselli, S.R.; Universidad Nacional de Mar del Plata (UNMdP), Facultad de Ciencias Exactas y Naturales, Funes 3350, (7600), Mar del Plata, Argentina 
506 |2 openaire  |e Política editorial 
504 |a Aldicara, J.R., Essential oils (1976) Encyclopedia of Chemical Processing and Design, p. 262. , (McKetta J.J., Cunningham W.A., eds.). Marcel Dekker, NY, USA 
504 |a Albo, G.N., Henning, C.P., Ringuelet, J.A., Reynaldi, F.J., De Giusti, M.R., Alippi, A.M., Evaluation of some essential oils for the control and prevention of American Foulbrood disease in honey bees (2003) Apidologie, 34, pp. 1-10 
504 |a Alippi, A.M., A comparison of laboratory techniques for the detection of significant bacteria of the honey bee, Apis mellifera in Argentina (1991) Journal of Apicultural Research, 30, pp. 75-80 
504 |a Alippi, A.M., Detección de Bacillus larvae en poblaciones mixtas de esporas bacterianas a partir de restos larvales (1992) Microbiología SEM, 8, pp. 115-118 
504 |a Alippi, A.M., Sensibilidad in vitro de Bacillus larvae frente a diferentes agentes antimicrobianos (1994) Vida Apícola, 66, pp. 20-24 
504 |a Alippi, A.M., Ringuelet, J.A., Cerimele, E.L., Re, M.S., Henning, C.P., Antimicrobial activity of some essential oils against Paenibacillus larvae, the causal agent of American foulbrood disease (1996) Journal of Herbs, Spices and Medicinal Plants, 4 (2), pp. 9-16 
504 |a Alippi, A.M., Is Terramycin® losing its effectiveness against AFB? (2000) Bee Biz, pp. 27-29 
504 |a Alippi, A.M., Ringuelet, J.A., Henning, C.P., Bandoni, A., Loque Americana: Actividad antimicrobiana in vitro de algunos aceites esenciales y mezclas de esencias sobre Paenibacillus larvae subsp. larvae (2001) Vida Apícola, 106, pp. 41-44 
504 |a Alonso, J.R., Bases clinicas y farmacológicas (1998) Tratado de Fitomedicina, pp. 112-113. , (ed) Isis SRL, Buenos Aires, Argentina 
504 |a Bazzoni, E., Floris, I., Azione in vitro di diversi oli essenzali contro Paenibacillus larvae e Ascosphaera apis (1999) Atti Apilombardia, 98, pp. 191-197 
504 |a Charbounneau, R., Gosselin, P., Thibáult, C., Irradiation and AFB (1992) American Bee Journal, 4, pp. 249-251 
504 |a Calderone, N.W., Shimanuki, H., An in vitro evaluation of botanical compounds for the control of the honey bee pathogens Bacillus larvae and Ascosphera apis, and the secondary invader B. alvei (1994) Journal Essential Oil Research, 6, pp. 279-287 
504 |a Carpana, E., Marocchi, L., Gelmini, L., Evaluation of the API 50CHB system for the identification and biochemical characterization of Bacillus larvae (1995) Apidologie, 26, pp. 11-16 
504 |a Colin, M.E., Ducos De Lahitte, L., Larribau, E., Boué, T., Activité des huiles essentielles de Labiées sur Ascosphaera apis et traitment dún rucher (1989) Apidologie, 20, pp. 221-228 
504 |a Dingman, D.W., Stahly, D.P., Medium promoting sporulation of Bacillus larvae and metabolism of medium components (1983) Applied and Environmental Microbiology, 46, pp. 860-869 
504 |a Eguaras, M., Ruffinengo, S., Faverín, C., Cora, D., Palacio, A., Basualdo, M., Eficacia del timol en el control de Varroa destructor (Acari: Varroidae), un parásito de la abeja melífera (2002) Revista Argentina de Producción Animal, 22 (1), p. 438 
504 |a App.3.73 (1998) Bacteriological Analytical Manual, (ed) 8th, p. 581. , AOAC International, Gaithersburg, USA 
504 |a Fuselli, S.R., Gende, L.B., Garcia De La Rosa, S.B., Eguaras, M.J., Fritz, R., Inhibition of Paenibacillus larvae subsp. larvae by the essential oils of two wild plants and their emulsifying agents (2005) Spanish Journal of Agricultural Research, 3 (2), pp. 220-224 
504 |a Floris, I., Carta, C., Moretti, M., Activités in vitro de plusieurs huiles essentielles sur Bacillus larvae White et essai au rucher (1996) Apidologie, 27, pp. 111-119 
504 |a García Damiano, M.C., Normas de estudios clínicos de antimicrobianos (Parte II) (1991) Enfermedades Infecciosas Microbiología Clinica, 3 (3), pp. 17-28 
504 |a Gochnauer, T.A., Antibiotic sensitivity pattern of a honey bee pathogen (1970) Journal of Invertebrate Pathology, 16, pp. 153-154 
504 |a Gordon, R.E., Haynes, W.C., Pang-H-N, C., The genus Bacillus (1973) Agricultural Handbook No. 427, p. 283. , United States Department of Agriculture. USA, Washington 
504 |a Glinski, Z., Rzedzicki, J., Evaluation of Bacillus larvae to antibiotics and sulphonamides isolated in Poland in 1962-1971 (1977) Polskie Archiwun Weterynaryjne, 20 (1), pp. 9-16 
504 |a Glinski, Z., Rzedzicki, J., A comparison of the activity of certain new sulphonamide preparations against Bacillus larvae and other bacilli isolated from honey bees (1977) Polskie Archiwun Weterynaryjne, 20 (3), pp. 9-19 
504 |a Imdorf, A., Kilchenmann, V., Maquelin, C., Bogdanov, S., Optimierung der anwendung von 'Apilife VAR' zur bekämpfung von Varroa jacobsoni oud in Bienenvölkern (1994) Apidologie, 25, pp. 49-60 
504 |a Isman, M., Plant essential oils for pest and disease management (2001) Crop Protection, 19, pp. 603-608 
504 |a Jelinski, M., Some biochemical properties of Bacillus larvae White (1985) Apidologie, 16, pp. 69-76 
504 |a Juven, B.L., Kanner, J., Schved, F., Weisslowicz, H., Factors that interact with the antibacterial action of thyme essential oil and its active constituents (1994) Journal Applied Bacteriology, 76, pp. 626-631 
504 |a Kochanski, J., Knox, D., Feldlaufer, M., Pettis, J., Screening alternative antibiotics against oxytetracycline-susceptible and -resistant Paenibacillus larvae (2001) Apidologie, 32, pp. 215-222 
504 |a Lennette, S., Balows, R., Hansler, L., Shadony, E., (1987) Manual de Microbiología Clinica, , Ed. Panamericana, Bs As, Argentina, 244 pp 
504 |a Machova, M., Drobnikova, V., Titera, D., Veidovska, A., Kristanova, O., Henzl, S., Preventive use of tylosin in honey bee colonies endangered by American fouldbrood, and residues of tylosin in honey and syrup stored by honey bees (1992) Veterinary Medicine (Praha), 37 (2), pp. 119-125 
504 |a Matheson, A., Reid, M., Strategies for the prevention and control of American foulbrood (1992) American Bee Journal, 133, pp. 471-475 
504 |a (1989) The Wiley/NBS Registry of Mass Spectral Data.v. 1-7, , Mclafferty F. W.; Stauffer, D. B.; Stenhagen, E.; Heller, S. R. (Eds.). New York, USA 
504 |a Miyagi, T., Peng, C.Y.S., Chuang, R.Y., Mussen, E.C., Spivak, M.S., Doi, R.H., Verification of oxytetracycline-resistant American foulbrood pathogen Paenibacillus larvae in the United States (2000) Journal Invertebrate Pathology, 75, pp. 95-96 
504 |a (1998) Mass Spectral Database, Standard Reference Database No 1A, Version 1.6, , NIST/EPA/NIH: Gaithersburg, MD 
504 |a Oldroyd, B.P., Goodman, R.D., Hornitzky, M.A., The effect on AFB of standard oxytetracyline treatments for the control of EFB of honey bees (Apis mellífera) (1988) Australian Journal of Agricultural Research, 40 (3), pp. 691-697 
504 |a Park, S.J., Shin, Y.S., Lee, J.R., Preparation and characterization of microcapsules containing lemon oil (2001) Journal of Colloid and Interface Science, 241, pp. 502-508 
504 |a Plagemann, O., Sensivity of Bacillus larvae to antibiotics and sulphoamides (1991) Tiereztliche Umsechau, 46, pp. 24-27 
504 |a Rickli, M., Imdorf, A., Kilchenmann, V., Treatment against varroatosis using compounds of essential oils (1991) Apidologie, 22, pp. 417-421 
504 |a Ruffinengo, S., Maggi, M., Floris, I., Faverin, C., Pelayes, A., Gascon, A., Eguaras, M., Eficacia de aceites esenciales microencapsulados de Acantholippia seriphioides sobre el acaro Varroa destructor, en condiciones de laboratorio (2005) I. Congreso de Apicultura del MERCOSUR, , 24 al 26 de Junio, Punta del Este, Uruguay 
504 |a (1998) Statgraphics Plus Users's Guide, Standard Ed. Version 4, , Manugistics Inc., Rockville, MD 
504 |a (1996) Encyclopedia of Chemicals, Drugs, and Biologicals. 12 th. (Ed), , Merck Research Laboratories Division of Merck & CO., Inc. Whitehouse Station, N.J. 8040 pp 
520 3 |a Five essential oils from Argentinian wild plants were tested in vitro for antimicrobial activity against different strains of Paenibacillus larvae larvae, causal agent of American foulbrood in honey bees. Apis mellifera L. The species selected from which to extract the essential oils were aguaribay (Schinus molle var. areira L), Andean thyme (Acantholippia seriphioides A. Gray), peperine (Mintosthachys mollis H.B.K. Gris), camomile (Togetes minuta L.) and pennyroyal (Lippia turbinata Griseb.). Oils were extracted from different parts of the plants by steam distillation. Minimal inhibitory concentration (MIC) and minimal bactericide concentration (MBC) were evaluated on Mueller-Hinton broth and on MYPGP agar respectively, by the tube dilution method. MIC and MBC minimum and maximum values obtained were 200-250 mgL-1 and 200-300 mgL -1 for Andean thyme and 800-1000 mgL-1 and 850-1100 mgL-1 for pennyroyal, respectively. The other oils had intermediate MIC and MBC values between the formers mentioned. Highly significant differences between MIC and MBC values for the essential oils tested were found. Tukey's mean separation test indicated that Andean thyme (A. seriphioides) essential oil was different from the other four essential oils at α0.01. Andean thyme proved to be the most effective in vitro essential oil against P. larvae larvae. Therefore, it may be a promising natural alternative to traditional antibiotics, meriting further studies on its field applicability for AFB control. © IBRA 2006.  |l eng 
593 |a Universidad Nacional de Mar del Plata (UNMdP), Facultad de Ciencias Exactas y Naturales, Funes 3350, (7600), Mar del Plata, Argentina 
593 |a Comisión de Investigaciones Científicas, Calle 526 e/10 y 11, (1900), La Plata, Argentina 
593 |a Consejo Nacional de Investigaciones Científicas y Técnicas, Rivadavia 1917, C1033AAJ, Buenos Aires, Argentina 
690 1 0 |a ANTIMICROBIAL ACTIVITY 
690 1 0 |a ESSENTIAL OILS 
690 1 0 |a PAENIBACILLUS LARVAE LARVAE 
690 1 0 |a WILD PLANTS 
690 1 0 |a ACANTHOLIPPIA 
690 1 0 |a ANTHEMIS 
690 1 0 |a APINAE 
690 1 0 |a APIS MELLIFERA 
690 1 0 |a LIPPIA 
690 1 0 |a LIPPIA TURBINATA 
690 1 0 |a PAENIBACILLUS 
690 1 0 |a PAENIBACILLUS LARVAE 
690 1 0 |a SCHINUS MOLLE 
690 1 0 |a THYMUS VULGARIS 
700 1 |a De La Rosa, S.B.G. 
700 1 |a Gende, L.B. 
700 1 |a Eguaras, M.J. 
700 1 |a Fritz, R. 
773 0 |d 2006  |g v. 45  |h pp. 2-7  |k n. 1  |p J. Apic. Res.  |x 00218839  |t Journal of Apicultural Research 
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