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Abstract:

Phenotypic plasticity has been defined as the ability of a genotype to produce different phenotypes when exposed to distinct environments throughout its ontogeny. Morphological variability of individuals is an example of this plasticity. Taking into account that several studies have reported a wide morphological variability in Varroa destructor populations, we evaluated if the body size plasticity of the parasite constituted a key factor able to modulate mites survival when they were exposed to a drug bioassays. Drug bioassays against mites were conducted using three different Syzygium aromaticum essential oil concentrations (0.5, 1, and 5 μl/capsule) and controls. After 4 h of exposition, mite mortality was registered. The width (WS) and length (LS) of the dorsal shield were measured in dead mites. General lineal models were carried to determine if V. destructor survival to acaricides was related to the explanatory variables. Data modelling confirmed that WS and LS variables, together with time interaction, were significantly related to V. destructor survival when the parasites were exposed to acaricides. The models proposed demonstrated that for the smaller S. aromaticum essential oil concentration, the larger the parasite body, the greater the probability that it remains alive at the end of the bioassay. Such relationship was inverse for the other two concentrations tested. Possible causes explaining the body size variability in V. destructor individuals were discussed. © Springer-Verlag 2011.

Registro:

Documento: Artículo
Título:Body size variability of Varroa destructor and its role in acaricide tolerance
Autor:Maggi, M.; Peralta, L.; Ruffinengo, S.; Fuselli, S.; Eguaras, M.
Filiación:Laboratorio de Artrópodos, Facultad de Ciencias Exactas y Naturales, Universidad Nacional de Mar del Plata, Funes, 3350, 7600 Mar del Plata, Argentina
Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Rivadavia, 1917, C1033AJ Buenos Aires, Argentina
Cátedra de Apicultura, Facultad de Ciencias Agrarias, Universidad Nacional de Mar del Plata, Ruta Nacional 226, CC 276 (B7620ZAA), Balcarce, Argentina
Comisión de Investigaciones Científicas (CIC), Calle 526 entre 10 y 11, 1900 La Plata, Buenos Aires, Argentina
Idioma: Inglés
Palabras clave:acaricide; clove oil; essential oil; article; bioassay; body height; body size; clove; concentration response; controlled study; correlational study; environmental exposure; in vitro study; mathematical model; mortality; nonhuman; phenotypic plasticity; physical tolerance; priority journal; survival rate; Varroa; Acaricides; Animals; Biological Assay; Body Size; Eugenia; Models, Statistical; Oils, Volatile; Survival Analysis; Varroidae; Acari; Syzygium aromaticum; Varroa destructor
Año:2012
Volumen:110
Número:6
Página de inicio:2333
Página de fin:2340
DOI: http://dx.doi.org/10.1007/s00436-011-2768-7
Título revista:Parasitology Research
Título revista abreviado:Parasitol. Res.
ISSN:09320113
CODEN:PARRE
CAS:clove oil, 8000-34-8; Acaricides; Oils, Volatile
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_09320113_v110_n6_p2333_Maggi

Referencias:

  • Agrawal, N., Phenotypic plasticity in the interactions and evolution of species (2001) Science, 294, pp. 321-325
  • Akimov, I.A., Yastrebtsov, A., Variability of some characters of the mite Varroa jacobsoni Oudemans, 1904 - A parasite of the honey bee (1985) Dokl Akad Nauk USSR Biol Nauki, 9, pp. 58-60
  • Akimov, I.A., Zaloznaya, L.M., Variability of morphological characters of males and females of the mite Varroa (1996) Pchelovodstvo, 17, pp. 42-46
  • Akimov, I., Yastrebtsov, A., Gorgol, V., Functional and morphological specialization of Varroa jacobsoni for parasitism (1988) Africanized Honey Bees and Bee Mites, p. 120. , Needham GR (ed) Ellis Horwood, Chichester
  • Akimov, I.A., Zaloznaya, L.M., Efimov, V.M., Galaktionov, Y.K., Seasonal and geographical variation of the morphological characters of the mite Varroa jacobsoni (Parasitiformes, Varroidae): Moving of mean values, standard deviations and coefficients of the fluctuating asymmetry (1990) Zool Zhurn, 69 (9), pp. 27-37
  • Akimov, I.A., Benedyk, S., Zaloznaya, L.M., Complex analysis of morphological characters of gamasid mite Varroa destructor (Parasitiformes, varroidae) (2004) Vest Zool, 38 (5), pp. 57-66
  • Andow, D.A., Ives, A.R., Monitoring and adaptive resistance management (2002) Ecological Applications, 12 (5), pp. 1378-1390
  • Bakkali, F., Averbeck, S., Averbeck, D., Idaomar, M., Biological effects of essential oils - A review (2008) Food and Chemical Toxicology, 46 (2), pp. 446-475. , DOI 10.1016/j.fct.2007.09.106, PII S0278691507004541
  • Beal, R., Smith, V., Relative susceptibilities of Coptotermes formosanus, Reticulitermes flavipes, and R. virginicus to soil insecticides (1987) J Econ Entomol, 64 (2), pp. 472-475
  • Bliss, C.I., Size factor in the action of arsenic upon silkworm larvae (1936) J Exp Biol, 13, pp. 95-110
  • Bridges, C.M., Semlitsch, R.D., Genetic variation in insecticide tolerance in a population of southern leopard frogs (Rana sphenocephala): Implications for amphibian conservation (2001) Copeia, (1), pp. 7-13
  • Brooks, G.T., Mechanisms of resistance of the adult housefly (Musca domestica) to 'cyclodiene' insecticides (1960) Nature, 186, pp. 96-98
  • Busvine, J., (1971) A Critical Review of the Techniques for Testing Insecticides, , 2nd edn. Commonwealth Agriculture Bureaux, London
  • Calderone, N., Evaluation of Mite-Away-II™ for fall control of Varroa destructor (Acari: Varroidae) in colonies of the honey bee Apis mellifera (Hymenoptera: Apidae) in the northeastern USA (2010) Exp Appl Acarol, 50 (2), pp. 123-132
  • Clarke, G.M., McKenzie, J.A., Developmental stability of insecticide resistant phenotypes in blowfly; a result of canalizing natural selection (1987) Nature, 325 (6102), pp. 345-346. , DOI 10.1038/325345a0
  • Coles, G.C., Drug resistance and drug tolerance in parasites (2006) Trends in Parasitology, 22 (8), p. 348. , DOI 10.1016/j.pt.2006.05.013, PII S1471492206001280
  • Coles, G.C., Kinoti, G.K., Defining resistance in Schistosoma (1997) Parasitol Today, 13, pp. 157-158
  • Damiani, N., Fernandez, N., Maldonado, L., Alvarez, A., Eguaras, M., Marcangeli, J., Bioactivity of propolis from different geographical origins on Varroa destructor (Acari: Varroidae) (2010) Parasitol Res, 107, pp. 31-37
  • Damiani, N., Gende, L., Maggi, M., Palacios, S., Marcangeli, J., Eguaras, M., Repellent and acaricidal effects of botanical extracts on Varroa destructor (2011) Parasitol Res, 108, pp. 79-86
  • Delaplane, K., Berry, J., Skinner, J., Parkman, J.P., Hood, W.M., Integrated pest management against Varroa destructor reduces colony mite levels and delays economic threshold (2005) J Apic Res, 44 (4), pp. 117-122
  • Donzé, G., Guérin, P.M., Behavioral attributes and parental care of Varroa mites parasitizing honey bee brood (1994) Behav Ecol Sociobiol, 34, pp. 305-319
  • Eguaras, M.J., Ruffinengo, S.R., (2006) Estrategias para el Control de Varroa, , Martin, Mar del Plata
  • Hastings, I.M., Watkins, W.M., Tolerance is the key to understanding antimalarial drug resistance (2006) Trends in Parasitology, 22 (2), pp. 71-77. , DOI 10.1016/j.pt.2005.12.011, PII S1471492205003430
  • Hoy, M.A., Pesticide resistance in arthropod natural enemies: Variability and selection responses (1994) Pesticide Resistance in Arthropods, pp. 203-236. , Roush R, Tababshnik B (eds) Academic
  • Imdorf, A., Bogdanov, S., Ochoa, R., Calderone, N., Use of essential oils for the control of Varroa jacobsoni Oud. in honey bee colonies (1999) Apidologie, 30, pp. 2-3
  • Ishaayn, I., Casida, J.E., Pyrethroid esterase(s) may contribute to natural pyrethroid tolerance of larvae of the common green lacewing (1981) Environ Entomol, 10 (5), pp. 681-684
  • Kleinbaum, D., Klein, M., (2002) Survival Analysis: A Self-learning Text, , Springer
  • Lavadinho, L., Variation of adult body weight in Sitophilus granarius (L.) from laboratory cultures (1975) J Stored Prod Res, 11, pp. 33-39
  • Maggi, M., Ruffinengo, S., Damiani, N., Sardella, N., Eguaras, M., First detection of Varroa destructor resistance to coumaphos in Argentina (2009) Exp App Acarol, 47 (4), pp. 317-320
  • Maggi, M., Sardella, N., Ruffinengo, S., Eguaras, M., Morphotypes of Varroa destructor mites in different geographic locations from Argentina (2009) Parasitol Res, 105 (6), p. 1629
  • Maggi, M., Ruffinengo, S., Negri, P., Eguaras, M., Resistance phenomena to amitraz from populations of the ectoparasitic mite Varroa destructor of Argentina (2010) Parasitol Res, 107 (5), pp. 1189-1192
  • Maggi, M., Ruffinengo, S., Gende, L., Sarlo, G., Bailac, P., Ponzi, M., Eguaras, M., Laboratory evaluations of Syzygium aromaticum (L.) Merr. et Perry essential oil against Varroa destructor (2010) J Essent Oil Res, 22 (2), pp. 119-122
  • Maggi, M., Ruffinengo, S., Mendoza, Y., Ojeda, P., Ramallo, G., Floris, I., Eguaras, M., Susceptibility of Varroa destructor (Acari: Varroidae) to synthetic acaricides in Uruguay: Varro a mites' potential to develop acaricide resistance (2011) Parasitol Res, 108 (4), pp. 815-821. , ISSN 0932-0113
  • Marcangeli, J., García, M., Effect of Apis mellifera (Apidae) honeybee brood amount on Oxavar acaricide efficacy against the mite Varroa destructor (Varroidae) (2004) Rev Soc Entomol Arg, 63, pp. 35-38
  • McCullagh, P., Nelder, J.A., (1989) Generalized Linear Models, , 2nd edn. Chapman & Hall, CRC, Boca Raton
  • Milani, N., Examination of the morphometry of populations of Varroa jacobsoni Oudemans resistant and susceptible to taufluvalinate (1996) Redia, 79, pp. 47-56
  • Milani, N., The resistance of Varroa jacobsoni Oud. to acaricides (1999) Apidologie, 30 (2-3), pp. 229-234
  • Montgomery, D.C., Peck, E.A., (1992) Introduction to Linear Regression Analysis, , Wiley, USA
  • Nussey, D.H., Wilson, A.J., Brommer, J.E., The evolutionary ecology of individual phenotypic plasticity in wild populations (2007) Journal of Evolutionary Biology, 20 (3), pp. 831-844. , DOI 10.1111/j.1420-9101.2007.01300.x
  • Oliveira, E.E., Guedes, R.N.C., Totola, M.R., De Marco Jr., P., Competition between insecticide-susceptible and -resistant populations of the maize weevil, Sitophilus zeamais (2007) Chemosphere, 69 (1), pp. 17-24. , DOI 10.1016/j.chemosphere.2007.04.077, PII S0045653507006029
  • Onstad, D., (2008) Insecticide Resistance Management: Biology, Economics and Prediction, , Academic
  • Overgaard, H.J., (2006) Malaria Mosquito Resistance to Agricultural Insecticides: Risk Area Mapping in Thailand, , http://www.iwmi.cgiar.org/publications/IWMI_Research_Reports/PDF/pub103/ RR103.pdf
  • Peng, Y., Fang, Y., Xu, S., Ge, L., The resistance mechanism of the Asian honeybee, Apis cerana, to an ectoparasitic mite, Varroa jacobsoni (1987) J Inv Pathol, 49, pp. 54-60
  • Pigliucci, M., Evolution of phenotypic plasticity: Where are we going now? (2005) Trends in Ecology and Evolution, 20 (9), pp. 481-486. , DOI 10.1016/j.tree.2005.06.001, PII S0169534705001722
  • Poulin, R., (1998) Evolutionary Ecology of Parasites from Individuals to Communities, , Chapman & Hall
  • (2009) R: A Language and Environment for Statistical Computing. R Foundation for Statistical Computing, , http://www.Rproject.org, Vienna, Austria. ISBN 3-900051-07-0
  • Ritter, W., Varroa disease of the honeybee Apis mellifera (1981) Bee World, 62, pp. 141-153
  • Robertson, J.L., Preisler, H.K., (1992) Pesticide Bioassays with Arthropods, , CRC, Boca Raton
  • Stearns, S.C., (1992) The Evolution of Life Histories, , Oxford University Press, Oxford
  • Timchalk, C., Poet, T.S., Kousba, A.A., Age-dependent pharmacokinetic and pharmacodynamic response in preweanling rats following oral exposure to the organophosphorus insecticide chlorpyrifos (2006) Toxicology, 220 (1), pp. 13-25. , DOI 10.1016/j.tox.2005.11.011, PII S0300483X05005640
  • Tremolada, P., Bernardinelli, I., Colombo, M., Spreafico, M., Vighi, M., Coumaphos distribution in the hive ecosystem: Case study for modeling applications (2004) Ecotoxicology, 13 (6), pp. 589-601. , DOI 10.1023/B:ECTX.0000037193.28684.05
  • Valles, S.M., Oi, F.M., Wagner, T., Brenner, R.J., Toxicity and in vitro metabolism of t-permethrin in eastern subterranean termite (Isoptera: Rhinotermitidae) (2000) J Econ Entomol, 93, pp. 1259-1264
  • Via, S., Gomulkiewicz, R., De Jong, G., Scheiner, S.M., Schlichting, D., Van Tienderen, P.H., Adaptive phenotypic plasticity: Consensus and controversy (1995) Trends Ecol Evol, 10, pp. 212-317
  • Way, J., The effect of body weight on the resistance to insecticides of the last-instar larva of Diataraxia oleracea L., the tomato moth (1954) Ann App Biol, 41 (1), pp. 77-87
  • West-Eberhard, M.J., Phenotypic plasticity and the origins of diversity (1989) Ann Rev Ecol Syst, 20, pp. 249-278
  • Yarahmadi, F., Moassadegh, M.S., Soleymannejadian, E., Saber, M.S., Shishehbor, P., Assessment of acute toxicity of abamectin, spinosad and chlorpyrifos to Thrips tabaci lindeman (Thysanoptera: Thripidae) on sweet pepper by using two bioassay techniques (2009) Asian J Biol Sci, 2, pp. 81-87
  • Yu, S.J., Age variation in insecticide susceptibility and detoxification capacity of fall armyworm (Lepidoptera: Noctuidae) larva (1983) J Econ Entomol, 76 (2), pp. 219-222

Citas:

---------- APA ----------
Maggi, M., Peralta, L., Ruffinengo, S., Fuselli, S. & Eguaras, M. (2012) . Body size variability of Varroa destructor and its role in acaricide tolerance. Parasitology Research, 110(6), 2333-2340.
http://dx.doi.org/10.1007/s00436-011-2768-7
---------- CHICAGO ----------
Maggi, M., Peralta, L., Ruffinengo, S., Fuselli, S., Eguaras, M. "Body size variability of Varroa destructor and its role in acaricide tolerance" . Parasitology Research 110, no. 6 (2012) : 2333-2340.
http://dx.doi.org/10.1007/s00436-011-2768-7
---------- MLA ----------
Maggi, M., Peralta, L., Ruffinengo, S., Fuselli, S., Eguaras, M. "Body size variability of Varroa destructor and its role in acaricide tolerance" . Parasitology Research, vol. 110, no. 6, 2012, pp. 2333-2340.
http://dx.doi.org/10.1007/s00436-011-2768-7
---------- VANCOUVER ----------
Maggi, M., Peralta, L., Ruffinengo, S., Fuselli, S., Eguaras, M. Body size variability of Varroa destructor and its role in acaricide tolerance. Parasitol. Res. 2012;110(6):2333-2340.
http://dx.doi.org/10.1007/s00436-011-2768-7