Avalia??o do perfil prot?ico da postura de f?meas de Rhipicephalus microplus infectadas por Metarhizium anisopliae.

Detalhes bibliográficos
Autor(a) principal: G?lo, Patr?cia Silva
Data de Publicação: 2011
Tipo de documento: Dissertação
Idioma: por
Título da fonte: Biblioteca Digital de Teses e Dissertações da UFRRJ
Texto Completo: https://tede.ufrrj.br/jspui/handle/jspui/2725
Resumo: Rhipicephalus microplus ticks are an important research target because it causes severe economic losses. Parasite control, in general, is based on the use of chemical acaricides. Entomopathogenic fungi are potential candidates as biocontrol agents due to its dispersibility, its ability to penetrate through the arthropods?s cuticle and the relatively specificity to arthropods, contributing to the preservation of non-target organisms. Therefore, studies of fungal infection mechanism and of the effects of the infection on oocytes maturation and on nutrients availability to the embryo are aspects demanded to be explored for further comprehension of the fungi infection, as well as, the ticks? defense mechanisms. These investigations would significantly contribute to advances in tick control. The present study evaluates possible changes in the protein profile of eggs layed by R. microplus females infected with the entomopathogenic fungus Metarhizium anisopliae s.l. Ma 959 isolate. Bioassay was composed by five groups: four groups treated with M. anisopliae s.l. and one control group. Each group lead 50 females. Ticks were immersed in 1 ml of 0.1% Tween 80 aqueous conidial suspension at 1?108, 1 ? 107, 1 ? 106 or 1 ? 105 conidia ml?1 for three minutes. The control group was immersed in 1 ml of 0.1% Tween 80 aqueous solution with no conidia. Eggs were separated daily, for the first ten days of oviposition and stored at ? 20?C. Egg masses were separately homogenized, ground with lyses buffer and centrifuged. The protein content of supernatant was determined by the method of Lowry with modifications. Samples were analyzed through a 12%-polyacrylamide electrophoresis gel under denaturing conditions (SDS-PAGE). There was no significant (p ? 0.05) difference in the total protein content between the eggs from infected and non-infected groups. Nineteen protein bands were observed on the SDS-PAGE. No difference was observed in the bands profile between the control and the infected groups. In adition, no differences was observed in the profiles of groups treated with different concentrations of conidia. Eggs from females infected with the highest fungal concentration or from non-infected females were used for HPLC analysis. Samples were pre-purified by solid phase extraction. Elution steps were performed with 5, 40, and 80% acetonitrile (ACN). Samples were then submitted to a HPLC using an analytic C18 reverse-phase column. The antimicrobial activity of samples collected by HPLC was tested against Candida albicans and M. anisopliae s.l. Nine samples reduced C. albicans growth over than 35%. The fraction with the highest antimicrobial activity to C. albicans was collected from eggs from day 8 of oviposition of infected engorged females. This fraction was pre-purified in 5% of ACN, caused 80.94% reduction of growth of C. albicans and was not observed in any other chromatogram. There was no antimicrobial activity against M. anisopliae s.l. The present study reportes, for the first time, induced response in eggs from R. microplus females infected by the entomopathogenic fungus M. anisopliae s.l.
id UFRRJ-1_b90e4a078451faa45cf69bed412cba95
oai_identifier_str oai:localhost:jspui/2725
network_acronym_str UFRRJ-1
network_name_str Biblioteca Digital de Teses e Dissertações da UFRRJ
repository_id_str
spelling Bittencourt, V?nia Rita Elias Pinheiro505.198.676-53http://lattes.cnpq.br/3888832724995864Salles, Cristiane Martins Cardoso deFernandes, Everton Kort KampPontes, Emerson Guedes058.507.577-83http://lattes.cnpq.br/3935275742919097G?lo, Patr?cia Silva2019-05-27T14:59:25Z2011-08-19G?LO, Patr?cia Silva. Avalia??o do perfil prot?ico da postura de f?meas de Rhipicephalus microplus infectadas por Metarhizium anisopliae. 2011. 71 f. Disserta??o (Programa de P?s-Gradua??o em Ci?ncias Veterin?rias) - Universidade Federal Rural do Rio de Janeiro, Serop?dica.https://tede.ufrrj.br/jspui/handle/jspui/2725Rhipicephalus microplus ticks are an important research target because it causes severe economic losses. Parasite control, in general, is based on the use of chemical acaricides. Entomopathogenic fungi are potential candidates as biocontrol agents due to its dispersibility, its ability to penetrate through the arthropods?s cuticle and the relatively specificity to arthropods, contributing to the preservation of non-target organisms. Therefore, studies of fungal infection mechanism and of the effects of the infection on oocytes maturation and on nutrients availability to the embryo are aspects demanded to be explored for further comprehension of the fungi infection, as well as, the ticks? defense mechanisms. These investigations would significantly contribute to advances in tick control. The present study evaluates possible changes in the protein profile of eggs layed by R. microplus females infected with the entomopathogenic fungus Metarhizium anisopliae s.l. Ma 959 isolate. Bioassay was composed by five groups: four groups treated with M. anisopliae s.l. and one control group. Each group lead 50 females. Ticks were immersed in 1 ml of 0.1% Tween 80 aqueous conidial suspension at 1?108, 1 ? 107, 1 ? 106 or 1 ? 105 conidia ml?1 for three minutes. The control group was immersed in 1 ml of 0.1% Tween 80 aqueous solution with no conidia. Eggs were separated daily, for the first ten days of oviposition and stored at ? 20?C. Egg masses were separately homogenized, ground with lyses buffer and centrifuged. The protein content of supernatant was determined by the method of Lowry with modifications. Samples were analyzed through a 12%-polyacrylamide electrophoresis gel under denaturing conditions (SDS-PAGE). There was no significant (p ? 0.05) difference in the total protein content between the eggs from infected and non-infected groups. Nineteen protein bands were observed on the SDS-PAGE. No difference was observed in the bands profile between the control and the infected groups. In adition, no differences was observed in the profiles of groups treated with different concentrations of conidia. Eggs from females infected with the highest fungal concentration or from non-infected females were used for HPLC analysis. Samples were pre-purified by solid phase extraction. Elution steps were performed with 5, 40, and 80% acetonitrile (ACN). Samples were then submitted to a HPLC using an analytic C18 reverse-phase column. The antimicrobial activity of samples collected by HPLC was tested against Candida albicans and M. anisopliae s.l. Nine samples reduced C. albicans growth over than 35%. The fraction with the highest antimicrobial activity to C. albicans was collected from eggs from day 8 of oviposition of infected engorged females. This fraction was pre-purified in 5% of ACN, caused 80.94% reduction of growth of C. albicans and was not observed in any other chromatogram. There was no antimicrobial activity against M. anisopliae s.l. The present study reportes, for the first time, induced response in eggs from R. microplus females infected by the entomopathogenic fungus M. anisopliae s.l.Os danos econ?micos causados pelo carrapato Rhipicephalus microplus faz desse parasito um importante alvo de pesquisas. O seu controle ? realizado, principalmente, com acaricidas qu?micos. A utiliza??o de fungos para controlar carrapatos ? uma escolha interessante uma vez que os fungos apresentam boa capacidade de dispers?o, capacidade de penetrar via cut?cula dos carrapatos e algumas cepas espec?ficas para artr?podes, contribuindo para a preserva??o de organismos n?o-alvo. Estudos relacionados ao processo de infec??o f?ngica, sua repercuss?o na matura??o dos o?citos e disponibiliza??o de nutrientes para o embri?o s?o aspectos importantes para se compreender melhor os efeitos desta infec??o em carrapatos, contribuindo para avan?o no controle deste ectoparasito. Dentro deste contexto, o presente trabalho avaliou as poss?veis altera??es no perfil proteico da postura de f?meas de R. microplus infectadas com o fungo entomopatog?nico Metarhizium anisopliae s.l. Cinco grupos (quatro tratados com M. anisopliae s.l. e um grupo controle), contendo 50 f?meas cada, foram utilizados no bioensaio que consistiu na imers?o das f?meas nas concentra??es conidiais (1 ? 108, 1 ? 107, 1 ? 106 ou 1 ? 105 con?dios/mL) ou em ?gua destilada est?ril acrescida de Tween 80 0,1% (grupo controle) por tr?s minutos. A postura di?ria de cada grupo foi separada e armazenada individualmente, durante 10 dias. Essas massas de ovos foram homogeneizadas separadamente, maceradas em tamp?o de lise celular e centrifugadas. O conte?do prot?ico do sobrenadante foi determinado pelo m?todo de Lowry modificado. O perfil proteico da postura di?ria foi analisado por SDS-PAGE 12. N?o houve diferen?a estatisticamente significativa (p ? 0,05) quando o conte?do proteico do grupo controle foi comparado com o dos grupos tratados. Na an?lise dos g?is foram evidenciadas 19 bandas prot?icas. N?o foi observada diferen?a no perfil de bandas entre o grupo controle e os grupos tratados, bem como na compara??o entre os perfis dos grupos tratados. Uma an?lise cromatogr?fica foi realizada para avalia??o das poss?veis diferen?as entre os pept?deos presentes na postura de f?meas do grupo tratado com 1 ? 108 con?dios/mL e o grupo controle. Cada amostra foi pr?-purificada em tr?s concentra??es de acetonitrila (ACN) (5, 40 e 80%). Ap?s concentradas, foram submetidas ? Cromatografia l?quida de alta efici?ncia (CLAE) utilizando uma coluna anal?tica de fase reversa tipo C18. A atividade antimicrobiana das fra??es coletadas foi testada contra Candida albicans e M. anisopliae s.l. Nove amostras reduziram o crescimento de C. albicans em mais de 35%. O pico que apresentou maior atividade antimicrobiana contra a levedura pertenceu ao oitavo dia de postura do grupo infectado. Este pico resultou da pr?-purifica??o em 5% de ACN e n?o foi observado em nenhum outro cromatograma. Este pico foi respons?vel por, em m?dia, 80,94% de redu??o no crescimento da levedura. N?o houve atividade microbiana destas amostras contra M. anisopliae s.l. O presente trabalho reporta, pela primeira vez, resposta induzida na postura de f?meas de R. microplus infectadas com o fungo entomopatog?nico M. anisopliae s.l.Submitted by Sandra Pereira (srpereira@ufrrj.br) on 2019-05-27T14:59:25Z No. of bitstreams: 1 2011 - Patr?cia Silva G?lo.pdf: 1269316 bytes, checksum: 4373eb243e7790604490409b8a47d598 (MD5)Made available in DSpace on 2019-05-27T14:59:25Z (GMT). No. of bitstreams: 1 2011 - Patr?cia Silva G?lo.pdf: 1269316 bytes, checksum: 4373eb243e7790604490409b8a47d598 (MD5) Previous issue date: 2011-08-19Coordena??o de Aperfei?oamento de Pessoal de N?vel Superior, CAPES, Brasil.application/pdfhttps://tede.ufrrj.br/retrieve/9908/2011%20-%20Patr%c3%adcia%20Silva%20G%c3%b4lo.pdf.jpghttps://tede.ufrrj.br/retrieve/15924/2011%20-%20Patr%c3%adcia%20Silva%20G%c3%b4lo.pdf.jpghttps://tede.ufrrj.br/retrieve/22230/2011%20-%20Patr%c3%adcia%20Silva%20G%c3%b4lo.pdf.jpghttps://tede.ufrrj.br/retrieve/28612/2011%20-%20Patr%c3%adcia%20Silva%20G%c3%b4lo.pdf.jpghttps://tede.ufrrj.br/retrieve/35044/2011%20-%20Patr%c3%adcia%20Silva%20G%c3%b4lo.pdf.jpghttps://tede.ufrrj.br/retrieve/41546/2011%20-%20Patr%c3%adcia%20Silva%20G%c3%b4lo.pdf.jpghttps://tede.ufrrj.br/retrieve/47882/2011%20-%20Patr%c3%adcia%20Silva%20G%c3%b4lo.pdf.jpghttps://tede.ufrrj.br/retrieve/54274/2011%20-%20Patr%c3%adcia%20Silva%20G%c3%b4lo.pdf.jpgporUniversidade Federal Rural do Rio de JaneiroPrograma de P?s-Gradua??o em Ci?ncias Veterin?riasUFRRJBrasilInstituto de Veterin?riaALONSO-DIAZ, M.A., GARCIA, L., GALINDO-VELASCO, E., LEZAMA-GUTIERREZ, R., ANGEL SAHAGUN, C.A., RODRIGUEZ-VIVAS, R.I., FRAGOSO-SANCHEZ, H. Evaluation of Metarhizium anisopliae (Hyphomycetes) for the control of Boophilus microplus (Acari : Ixodidae) on naturally infested cattle in the Mexican tropics. Veterinary Parasitology, v. 147, n. 3-4, p. 336-340, 2007. ALVES, S.B. Controle Microbiano de Insetos. 2? ed. Piracicaba: FEALQ, 1998. 1163p. ANGELO, I.C.; FERNANDES, E.K.K.; BAHIENSE, T.C.; PERINOTTO, W.M.S.; MORAES, A.P.R.; TERRA, A.L.M.; BITTENCOURT, V.R.E.P.; Efficiency of Lecanicillium lecanii to control the tick Rhipicephalus microplus. Veterinary Parasitology, v. 172, n. 3-4, p. 317-322, 2010a. ANGELO, I.C.; GOLO, P.S.; CAMARGO, M.G.; KLUCK, G.E.G.; FOLY, E. BITTENCOURT, V.R.E.P. Haemolymph protein and lipid profile of Rhipicephalus (Boophilus) microplus infected by fungi. Transboundary and Emerging Diseases, v. 57, n. 1-2, p. 79-83, 2010b. ANGELO, I.C. Avalia??o dos perfis prot?ico e lip?dico na resposta de Rhipicephalus microplus ? infec??o com fungos. 2011. 143p. Tese (Doutorado em Ci?ncias Veterin?rias, Parasitologia Animal)-Universidade Federal Rural do Rio de Janeiro, Serop?dica, 2011. ARRIETA, M.C.; LESKIW, B.K.; KAUFMAN, W.R. Antimicrobial activity in the egg wax of the African cattle tick Amblyomma hebraeum (Acari: Ixodidae). Experimental and Applied Acarology, v. 39, n. 3-4, p. 297-313, 2006. BAHIENSE, T.C.; FERNANDES, E.K.K.; BITTENCOURT, V.R.E.P. Compatibility of the fungus Metarhizium anisopliae and deltamethrin to control a resistant strain of Boophilus microplus tick. Veterinary Parasitology , v. 141, n. 3-4, p. 319-324, 2006. BAHIENSE, T.C.; FERNANDES, E.K.K.; ANGELO, I.C.; PERINOTTO, W.M.S.; BITTENCOURT, V.R.E.P. Avalia??o do potencial de controle biol?gico de Metarhizium anisopliae sobre Boophilus microplus em teste de est?bulo. Revista Brasileira de Parasitologia Veterin?ria, v. 16, n. 4, 243-245, 2007. BALASHOV, Y.S. Bloodsucking Ticks (Ixodoidea) ? Vectors of Diseases of Man and Animals. (English translation) ed H. Hoogsraal & R. J. Tatchell. Miscellaneous Publications of the Entomological Society of America, 1968, 376p. BEYS DA SILVA, W.O.; SANTI, L.; BERGER, M; PINTO A.F.M.; GUIMAR?ES J.A.; SCHRANK, A.; VAINSTEIN, M.H. Characterization of a spore surface lipase from the biocontrol agent Metarhizium anisopliae. Process Biochemistry, v. 44, p. 829-834, 2009. BEYS DA SILVA, W.O.; SANTI, L.; SCHRANK, A.; VAINSTEIN, M.H. Metarhizium anisopliae lipolytic activity plays a pivotal role in Rhipicephalus (Boophilus) microplus infection. British Mycological Society, v. 114, p. 10-15, 2010. 36 BIDOCHKA, M.J.; SMALL, C.L.; SPIRONELLO, M. Recombination within sympatric cryptic species of the insect pathogenic fungus Metarhizium anisopliae. Environmental Microbiology, v.7, n. 9, p.1361-1368, 2005. BISCHOFF, J.F.; REHNER, S.A.; HUMBER, R.A. A multilocus phylogeny of the Metarhizium anisopliae lineage. Mycologia, v.101, n. 4, p.512-530, 2009. BITTENCOURT, V.R.E.P.; MASSARD, C.L.; LIMA, A.F. Uso do fungo Metarhizium anisopliae (Metschnikoff, 1879) Sorokin, 1883, no controle do carrapato Boophilus microplus (Canestrini, 1887). Arquivo da Universidade Rural do Rio de Janeiro, v.15, n.2, p.197-202, 1992. BITTENCOURT, V.R.E.P.; MASSARD, C.L.; LIMA, A.F. A??o do fungo Metarhizium anisopliae sobre a fase n?o parasit?ria do ciclo biol?gico de Boophilus microplus. Revista Universidade Rural, S?ries Ci?ncias da Vida, v. 16, n. 1-2, p. 49-55, 1994. BITTENCOURT, V.R.E.P.; MASSARD, C.L.; LIMA, A.F. Din?mica da infec??o do fungo Metarhizium anisopliae (Metschnikoff, 1879) Sorokin, 1883, sobre o carrapato Boophilus microplus (Canestrini, 1887). Revista da Universidade Rural, S?rie Ci?ncias da Vida, v. 17, n. 1, p. 83-88, 1995. BITTENCOURT, V.R.E.P.; PERALVA, S.L.E.S.; VIEGAS, E.C.; ALVES, S.B. Avalia??oo dos efeitos do contato de Beauveria bassiana (Bals.) Vuill. com ovos e larvas de Boophilus microplus (Canestrini, 1887) (Acari: Ixodidae). Revista Brasileira de Parasitologia Veterin?ria, v.5, n. 2, p. 81-84, 1996. BITTENCOURT, V.R.E.P.; MASCARENHAS, A.G.; FACCINI, J.L.H. Mecanismo de infec??o do fungo Metarhizium anisopliae no carrapato Boophilus microplus em condi??es experimentais. Ci?ncia Rural, Santa Maria, v. 29, n. 2, p. 351-354, 1999. BRAZ, G.R.C.; COELHO H.S.L.; MASUDA, H.; OLIVEIRA, P.L. A missing metabolic pathway in the cattle tick Boophilus microplus. Current Biology, v. 9, n. 13, p. 703-706, 1999. CARVALHO, T.D.; BORELLI, I.C. Controle de carrapatos em bovinos. Revista cient?fica eletr?nica de medicina veterin?ria. 2008 Acesso http://www.revista.inf.br/veterinaria10/revisao/edic-vi-n10-RL22.pdf Dezembro 2010. CASTRO, A.B.A.; BITTENCOURT, V.R.E.P.; DAEMON, E.; VIEGAS, E.C. Efic?cia do fungo Metarhizium anisopliae sobre o carrapato Boophilus microplus em teste de est?bulo. Revista da Universidade Rural, S?rie Ci?ncias da Vida, Serop?dica, v.19, n.1-2, p.73-82, 1997. CERAUL, S.M.; SONENSHINE D.E.; HYNES, W.L. Resistance of the tick Dermacentor variabilis (Acari: Ixodidae) following challenge with the bacterium Escherichia coli (Enterobacteriales: Enterobacteriaceae). Journal of Medical Entomology, v. 39, n. 2, p. 376?378, 2002. 37 CHANDLER, D.; DAVIDSON, G.; PELL, J.K.; BALL, B.V.; SHAW, K.; SUNDERLAND, K.D. Fungal biocontrol of Acari. Biocontrol Science and Technology, v. 10, n. 4, p. 357-384, 2000. CHINZEI, Y.; CHINO, H.; TAKAHASHI, K. Purification and properties of vitellogenin and vitellin from a tick, Ornithodoros moubata. Journal of Comparative Physiology, v.152B, n. 1, p.13-21, 1983. CHINZEI, Y.; YANO, I. Fat body is the site of vitellogenin synthesis in the soft tick, Ornithodoros moubata, Journal of Comparative Phisiology, v. 155B, n. 6, p. 671-678, 1985. CORZO, G.; REVAH, S. Production and characteristics of the lipase from Yarrowia lipolytica 681. Bioresource Technology, v. 70, n. 2, p. 173?180, 1999. COSTA, A.L. Bioecologia de Boophilus microplus (Canestrini, 1887) (Acarina:Ixodidae) no estado do Rio de Janeiro: oviposi??o e sazonalidade. Considera??es preliminares. 1982. 48p. Mestrado (Mestrado em Ci?ncias Veterin?rias, Parasitologia Animal)-Universidade Federal Rural do Rio de Janeiro, Serop?dica, 1982. COSTA, G.L.; SARQUIS, M.I.M.; MORAES, A.M.L.; BITTENCOURT, V.R.E.P. Isolation of Beauveria bassiana and Metarhizium anisopliae var. anisopliae from Boophilus microplus tick (Canestrini, 1887), in Rio de Janeiro State, Brazil. Mycopathologia, v. 154, n. 4, p. 207-209, 2002. D?AZ, M.P.; MAC?AS, A.F.; NAVARRO, S.R.; TORRE, M. Mecanismo de acci?n de los hongos entomopat?genos. Interciencia, v. 31, n. 12, p. 856-860, 2006. DUMAS, C.; RAVALLEC, M.; MATHA, V.; VEY, A. Comparative study of the cytological aspects of the mode of action of destruxins and other peptidic fungal metabolites on target epithelial cells. Journal of Invertebrate Pathology, v. 67, n. 2, p. 137-146, 1996. EGGENBERGER, L.R.; LAMOREAUX, W.J.; COONS, L.B. Hemocytic encapsulation of implants in the tick Dermacentor variabilis. Experimental and Applied Acarology, v. 9, n. 279-287, 1990. ESTEVES, E.; FOGA?A, A. C.; MALDONADO, R.; SILVA, F.D.; MANSO, P.P.A.; PELAJO-MACHADO, M.; VALLE, D.; DAFFRE, S. Antimicrobial activity in the tick Rhipicephalus (Boophilus) microplus eggs: Cellular localization and temporal expression of microplusin during oogenesis and embryogenesis. Developmental & Comparative Immunology, v. 33, n. 8, p. 913-919, 2009. FARIA, M.R.; WRAIGHT, S.P. Mycoinsecticides and Mycoacaricides: A comprehensive list with worldwide coverage and international classification of formulation types. Biological Control, v. 43, n. 3, p. 237-256, 2007. 38 FERNANDES, E.K.K.; COSTA, G.L.; SOUZA, E.J.; MORAES, A.M.L.; BITTENCOURT, V.R.E.P. Beauveria bassiana isolated from engorged females and tested against eggs and larvae of Boophilus microplus (Acari: Ixodidae). Journal of Basic Microbiology, v. 43, n. 5, p. 393-398, 2003. FERNANDES, E.K.K.; BITTENCOURT, V.R.E.P. Entomopathogenic fungi against South American tick species. Experimental and Applied Acarology, v. 46, n. 1-4, p.71-93, 2008. FERNANDES, ?.K.K.; KEYSER, C.A.; CHONG, J.P.; RANGEL, D.E.N.; MILLER, M.P.; ROBERTS, D.W. Characterization of Metarhizium species and varieties based on molecular analysis, heat tolerance and cold activity. Journal of Applied Microbiology, v.108, n. 1, p.115-128, 2010. FOGACA, A.C.; DA SILVA P.I.; TERESA J.R.M.; MIRANDA M.; BIANCHI, A.G.; MIRANDA, A.; RIBOLLA, P.E.M.; DAFFRE, S. Antimicrobial activity of a bovine hemoglobin fragment in the tick Boophilus microplus. Journal of Biological Chemistry, v. 274, n. 36, p. 25330-25334, 1999. FOGACA, A.C.; LORENZINI, D.M.; KAKU, L.M.; ESTEVES, E.; BULET, P.; DAFFRE, S. Cysteine-rich antimicrobial peptides of three cattle tick Boophilus microplus: isolation, structural characterization and tissue expression profile. Developmental & Comparative Immunology, v. 28, n. 3, p. 191-200, 2004. FOGACA, A.C.; ALMEIDA, I.C.; EBERLIN, M.N.; TANAKA, A.S.; BULET, P.; DAFFRE, S. Ixodidin, a novel antimicrobial peptide from the hemocytes of the cattle tick Boophilus microplus with inhibitory activity against serine proteinases. Peptides, 27, n. 4, p. 667-674, 2006. FURLONG, J. Controle do carrapato dos bovinos na regi?o Sudeste do Brasil. Caderno T?cnico da Escola de Veterin?ria UFMG, Belo Horizonte, n.8, p.49-61, 1993. GEORGE, J.E.; POUND, J.M.; DAVEY, R.B. Chemical control of ticks on cattle and the resistance of these parasites to acaricides. Parasitology, v. 129, n. S1, p. S353-S366, 2004. GONZALES, J.C. O carrapato do boi: vida, resist?ncia e controle. S?o Paulo: Mestre Jou, 1974. 101p. GRISI, L.; MASSARD, C.L.; MOYA-BORJA, G.E.; PEREIRA, J.B. Impacto econ?mico das principais ectoparasitoses em bovinos no Brasil. A Hora Veterin?ria, v. 21, n. 125, p. 8-10, 2002. HAWKSWORTH, D.L. Micologist?s handbook. 2?ed. England, Kew Surrey: CAB Press, 1977. 231p. HYNES, W. L.; CERAUL, S.M.; TODD, S.M.; SEGUIN, K.C.; SONENSHINE, D.E. A defensin-like gene expressed in the black-legged tick, Ixodes scapularis. Medical and Veterinary Entomology, v. 19, n. 4, p. 339-344, 2005. 39 HOFFMANN, J.A. The immune response of Drosophila. Nature, v. 426, n. 6962, p. 33-38, 2003. HORN, S.C.; ARTECHE, C.C.P. Situa??o parasit?ria da pecu?ria no Brasil. A hora Veterin?ria, v. 4, n. 23, p. 12-32, 1985. HU Q.; AN X.; JIN F.; FREED S.; REN S. Toxicities of destruxins against Bemisia tabaci and its natural enemy Serangium japonicum. Toxicon, v. 53, n. 1, p. 115-121, 2009. JARROLD, S.L.; MOORE, D.; POTTER, U.; CHARNLEY, A.K. The contribution of surface waxes to pre-penetration growth of an entomopathogenic fungus on host cuticle. Mycological Research, v. 111, p. 240-249, 2007. JOHNS, R.; SONENSHINE, D.E.; HYNES, W.L. Control of bacterial infections in the hard tick Dermacentor variabilis (Acari: Ixodidae): evidence for the existence of antimicrobial proteins in tick hemolymph. Journal of Medical Entomology, v. 35, n. 4, p. 458-464, 1998. JOHNS, R.; SONENSHINE, D.E.; HYNES, W.L. Identification of a defensin from the hemolymph of the American dog tick, Dermacentor variabilis. Insect Biochemistry and Molecular Biology, v. 31, n. 9, p. 857-865, 2001. LAEMMLI, U.K. Cleavage of structural proteins during the assembly of the head of bacteriphage T4. Nature, v. 227, n. 5259, p. 680-685, 1970. LEAL, A.T.; FREITAS, D.R.J. Perspectivas para o controle bovino. Acta Scientiae Veterinariae. v. 31, n. 1, 2003. LEMAITRE, B.; REICHHART, J.; HOFFMANN, J. Drosophila host defense: differential induction of antimicrobial peptide genes after infection by various classes of microorganisms. Proceedings of the National Academy of Sciences. USA, v. 94, n. 26, p.14614-14619, 1997. LEMAITRE, B.; HOFFMANN, J. The host defense of Drosophila melanogaster Annual Review of Immunology, v.25, p.697-743, 2007. LIMA, C.A.; SASAKI, S.D.; TANAKA, A.S. Bmcystatin, a cysteine proteinase inhibitor characterized from the tick Boophilus microplus. Biochemical and Biophysical Research Communications, v. 347, n.1, p. 44-50, 2006. LOGULLO, C.; DA SILVA VAZ, I.; SORGINE, M.H.F.; PAIVA-SILVA, G.O.; FARIA, F.S.; ZINGALI, R.B.; DE LIMA, M.F.R.; ABREU, L.; FIALHO OLIVEIRA, E.; ALVES, E.W.; MASUDA, H.; GONZALES, J.C.; MASUDA, A.; OLIVEIRA, P.L. Isolation of na aspartic proteinase percursor from the egg of a hard tick, Boophilus microplus. Parasitology, v. 116, n. 6, p. 525-532, 1998. LOGULLO, C.; MORAES, J.; DANSA-PETRETSKI, M.; VAZJR, I.S.; MASUDA, A.; SORGINE, M.H.F.; BRAZ, G.R.; MASUDA, H.; OLIVEIRA, P.L. Binding and storage of heme by vitellin from the cattle tick, Boophilus microplus. Insect Biochemistry and Molecular Biology, v. 32, n. 12, p. 1805-1811, 2002. 40 LOWRY, O.H.; ROSEBROUGH, N.J.; FARR, A.L.; RANDALL, R.J. Protein measurement with the folin phenol reagent. The Journal of Biological Chemistry, v. 193, p. 265-275, 1971. LUZ, C.; TIGANO, M.S.; SILVA, I.G.; CORDEIRO, C.M.T.; ALJANABI, S.M. Selection of Beauveria bassiana and Metarhizium anisopliae isolates to control Triatoma infestans. Mem?rias do Instituto Oswaldo Cruz, v. 93, n. 6, p. 839-846, 1998. MAIA, M.M.D.; HEASLEY, A; CAMARGO DE MORAIS, M.M.; MELO, E.H.M.; MORAIS JR, M.A.; LEDINGHAM, W.M.; LIMA FILHO, J.L. Effect of culture conditions on lipase production by Fusarium solani in batch fermentation. Bioresource Technology, v. 76, n. 1, p. 23?27, 2001. MARMARAS. V.J.; LAMPROPOULOU, M. Regulators and signalling in insect haemocyte immunity. Cellular Signalling, v.21, n. 2, p.186-195, 2009. MAYA-MONTEIRO, C.M.; DAFFRE, S.; LOGULLO, C.; LARA, F.A.; ALVES, E.W.; CAPURRO, M.L.; ZINGALI, R.; OLIVEIRA, P.L. HeLp, a heme lipoprotein from the hemolymph of the cattle tick, Boophilus microplus. Journal of Biological Chemistry, v. 275, n. 47, p. 36584?36589, 2000. MELO, D.R.; REIS, R.C.S; BITTENCOURT, V.R.E.P. Patogenicidade in vitro do fungo Metarhizium anisoplaie (Metschinikoff, 1879) Sorokin, 1883, sobre o carrapato Boophilus microplus (Canestrini, 1887). Revista Brasileira de Parasitologia Veteirn?ria, v. 15, n.4, p. 157-162, 2006. MENT D.; GINDIN G.; SOROKER, V.; GLAZER, I.; ROT, A.; SAMISH, M. Metarhizium anisopliae conidial responses to lipids from tick cuticle and tick mammalian host surface. Journal of Invertebrate Pathology, v. 103, n. 2, p. 132-139, 2010. MOINO JR, A.M.; ALVES, S.B. Efeito de imidacloprid e fipronil sobre Bauveria bassiana e Metarhizium anisopliae e no comportamento e limpeza de Heterotermes tenuis. Anais da Sociedade Entomol?gica do Brasil, v. 10, n. 4, p. 611-619, 1998. MONTEIRO, S.G.; BITTENCOURT, V.R.E.P.; DAEMON, E.; FACCINI, J.L.H. Pathogenicity under laboratory conditions of the fungi Beauveria bassiana and Metarhizium anisopliae on larvae of the tick Rhipicephalus sanguineus (Acari: Ixodidae). Revista Brasileira de Parasitologia Veterin?ria, v. 7, n. 2, p. 113-116, 1998. MOOKHERJEE, N.; HANCOCK, R.E. Cationic host defence peptides: innate immune regulatory peptides as a novel approach for treating infections. Cellular and Molecular Life Sciences, v. 64, n.7-8, p. 922-933, 2007 MULLER, U.; VOGEL, P.; ALBER, G.; SCHAUB, G. The Innate Immune System of Mammals and Insects. Egesten A, Schmidt A, Herwald H (eds): Trends in Innate Immunity. Contributions to Microbiology. Basel, Karger, v. 15, p. 21-44, 2008. 41 NAKAJIMA, Y.; VAN DER GOES VAN NATERS-YASUI, A.; TAYLOR, D.; YAMAKAWA, M. Antibacterial peptide defensin is involved in midgut immunity of the soft tick, Ornithodoros moubata. Insect Molecular Biology, v. 11, n. 6, p. 611-618, 2002. MURREL, A.; BARKER, S.C. Synonymy of Boophilus Curtice, 1891 with Rhipicephalus Koch, 1844 (Acari: Ixodidae). Systematic Parasitology. v. 56, p. 169-172, 2003. PAI?O, J.C.V.; MONTEIRO, A.C.; KRONKA, S.N. Susceptibility of the cattle tick Boophilus microplus (Acari: Ixodidae) to isolates of the fungus Beauveria bassiana. World Journal of Microbiology and Biochemistry, v. 17, n. 3, p. 245-251, 2001a. PAI?O, J.C.V.; MONTEIRO, A.C.; KRONKA, S.N. Compatibilidade de Metarhizium anisopliae com carrapaticidas qu?micos utilizados no controle de Boophilus microplus (Acari: Ixodidae). In: SIMPOSIO DE CONTROLE BIOL?GICO, 7, 2001b, Po?os de Caldas, Anais. Minas Gerais, 2001, p. 117. PAI?O, J.C.V.; MONTEIRO, A.C.; KRONKA, S.N. Desempenho de Metarhizium anisopliae submetidos a diferentes doses de carrapaticidas qu?micos usados no controle de Boophilus microplus (Acari:Ixodide). In: SIMPOSIO DE CONTROLE BIOL?GICO, 7, 2001c, Po?os de Caldas, Anais. Minas Gerais, 2001, p. 160. PAL, S.; ST LEGER, R.J.; WU, L.P. Fungal Peptide Destruxin A Plays a Specific Role in Suppressing the Innate Immune Response in Drosophila melanogaster. The Journal of Biological Chemistry, v. 282 n. 12, p. 8969?8977, 2007. PEDRINI, N.; CRESPO, R.; JU?REZ, M.P. Biochemistry of insect epicuticle degradation by entomopathogenic fungi. Comparative Biochemistry and Physiology Part C: Toxicology and Pharmacology, v. 146, n. 1-2, p. 124-137, 2007. PEREIRA, L.S.; OLIVEIRA, P.L.; BARJA-FIDALGO, C.; DAFFRE, S. Production of reactive oxygen species by hemocytes from the cattle tick Boophilus microplus. Experimental Parasitology, v. 99, n. 2, p. 66?72, 2001. PEREIRA, M.C. Boophilus microplus: Revis?o taxion?mica e morfo-biol?gica. 1980. 126f. Tese (Mestrado)- Universidade de S?o Paulo, S?o Paulo. 1980. PERINOTTO, W.M.S. A??o dos fungos Beauveria bassiana e Metarhizium anisopliae sobre diferentes cepas do carrapato Boophilus microplus. 2010. 47p. Disserta??o (Mestrado em Ci?ncias Veterin?rias, Parasitologia Animal) - Universidade Federal Rural do Rio de Janeiro, Serop?dica, 2010. POSADAS, J.; LECUONA, R. Selection of native isolates of Beauveria bassiana (Ascomycetes: Clavicipitaceae) for the microbial control of Rhipicephalus (Boophilus) microplus (Acari: Ixodidae). Journal of Medical Entomology, v. 46, n. 2, p. 284-291, 2009. RAIA, V. A. Avalia??o quantitativa e qualitativa das prote?nas dos ovos de Rhipicephalus (Boophilus) microplus e Rhipicephalus (Rhipicephalus) sanguineus (Acari: 42 Ixodidae) durante a oviposi??o e embriog?nse. 2007. 44p. Disserta??o (Mestrado em Ci?ncias Veterin?rias, Parasitologia Animal) - Universidade Federal Rural do Rio de Janeiro, Serop?dica, 2007. RELINER, S.A.; MINNIS, A.M.; SUNG, G.; LUANGSA-ARD, J.J.; DEVOTTO, L.; HUMBER, R.A. Phylogeny and systematics of the anamorphic, entomopathogenic genus Beauveria. Mycologia. In press: d?i 10.3852/10-302 REIS, R.C.S.; MELO, D.R.; SOUZA, E.J.; BITTENCOURT, V.R.E.P. A??o in vitro dos fungos Beauveria bassiana (Bals) Vuill e Metarhizium anisopliae (Metsch) Sorok sobre ninfas e adultos de Amblyomma cajennense (Fabricius, 1787) (Acari: Ixodidae). Arquivo Brasileiro de Medicina Veterin?ria e Zootecnia, v. 53, n. 5, p. 544-547, 2001. RITTER, S.W., TYRREL, R.M. The heme synthesis and degradation pathways: role in oxidant sensitivity. Free Radical Biology and Medicine, v. 28, n. , p. 289-30, 2000. RIVALIER, E.; SEYDEL, S. Nouveau procede de culture sur lames g?los?s appliqu? al??tude microscopique de champignos deteignes. Annals of Parasitology, v.10, n.5, p.444-452, 1932. RODRIGUES, J.; BRAYNER, F.A.; ALVES, L.C; DIXIT, R.; BARILLAS-MURY, C. Hemocyte differentiation mediates innate immune memory in Anopheles gambiae mosquitoes. Science, v.329, n. 5997, p.1353-1355, 2010. ROSELL-DAVIS, R.; COONS, L.B. Relationship between feding, mating, vitellogenin production and vitellogenesis in the tick Dermacentor variabilis. Experimental and Applied Acarology, v. 7, n. 1, p. 95-105, 1989. ROSELL-DAVIS, R.; COONS, L.B. Purification and partial characterization of vitellin from the eggs of the hard tick, Dermacentor variabilis. Insect Biochemistry, v. 21, n. 8, p. 871-885, 1991. SAITO, K. C.; BECHARA, G.H.; NUNES, E.T.; OLIVEIRA, P.R.; DENARDI, S.E.; MATHIAS, M. I. C. Morphological, histological, and ultrastructural studies of the ovary of the cattle-tick Boophilus microplus (Canestrini, 1887) (Acari: Ixodidae). Veterinary Parasitology, v. 129, n. 3-4, p. 299 ? 311, 2005. SAMBROOK, J.; RUSSEL, D.W. Molecular cloning: a laboratory manual. 3rd ed. New York: Cold Spring Harbor Laboratory Press, 2001. p. A8.1-A8.55. SAMISH, M.; REHACEK, J. Pathogens and predators of ticks and their potential in biological control. Annual Review of Entomology, v. 44, p. 159-182, 1999. SAMISH, M.; GINSBERG, H.; GLASER, I. Biological control of ticks. Parasitology, v.129, n. S1, p. S389-S403, 2004. SAMPAIO, I. B. M. Estat?stica Aplicada ? Experimenta??o Animal. 3. ed -reimpress?o. Belo Horizonte: FEPMVZ- Editora, 2010. 264p. ISBN 85-87144-07-3 43 SANTI, L.; SILVA, W.O.B.; BERGER, M.; GUIMAR?ES, J.A.; SCHRANK, A.; VAINSTEIN, M.H. Conidial surface proteins of Metarhizium anisopliae: Source of activities related with toxic effects, host penetration and pathogenesis. Toxicon, v. 55, p. 874-880, 2010. SCHRANK, A.; VAINSTEIN, M.H. Metarhizium anisopliae enzymes and toxins. Toxicon, v. 56, n. 7, p. 1267-1274, 2010. SEIXAS, A.; DOS SANTOS, P.C.; VELLOSO, F.F.; DA SILVA VAZ JR. I.; MASUDA, A.; HORN, F.; TERMIGNONI, C. A Boophilus microplus vitellin-degrading cysteine endopeptidase. Parasitology, v. 126, n. 2, p. 155-163, 2003. SILVA, S.B.; SAVASTANO, G.; BITTENCOURT, V.R.E.P. Tipos celulares envolvidos na resposta imune de f?meas ingurgitadas de Boophilus mcroplus inoculadas com Metarhizium anisopliae e Penicillium sp. Revista Brasileira de Parasitologia Veterin?ria, v.15, n.3, p.129-131, 2006. SILVA, W.O.B.; MITIDIERI, S.; SCHRANK, A.; VAINSTEIN, M.H. Production and extraction of an extracellular lipase from the entomopathogenic fungus Metarhizium anisopliae. Process Biochemistry, v. 40, n. 1, p. 321-326, 2005. SONENSHINE, D.E. Biology of ticks. Old Dominion University, Norfolk, Virginia. Oxford University Press, 1991. 447 p. v. 1. ISBN 0-19-505910. SONENSHINE, D.E.; HYNES, W.L.; CERAUL, S.M.; MITCHELL, R.; BENZINE, T. Host blood proteins and peptides in the midgut of the tick Dermacentor variabilis contribute to bacterial control. Experimental & Applied Acarology, v. 36, n. 3, p. 207-223, 2005. SONENSHINE, D.E.; HYNES, W.L. Molecular characterization and related aspects of the innate immune response in ticks. Frontiers in Bioscience, v. 13, n. 18, p. 7046-7063, 2008. SORGINE, M.H.F.; LOGULLO, C.; ZINGALI, R.B.; PAIVA-SILVA, G.O.; JULIANO, L.; OLIVEIRA, P.L. A heme-binding aspartic proteinase from the eggs of the hard tick Boophilus microplus. The Journal of Biological Chemistry, v. 275, n. 37, p. 28659?28665, 2000. ST LEGER, R.J.; GOETTEL, M.; ROBERTS, D.W.; STAPLES, R.C. Prepenetration events during infection of host cuticle by Metarhizium anisopliae. Journal of Invertebrate Pathology, v. 58, n. 2, p. 168-179, 1991. SUTHERST, R.W.; MAYWALD, G.F.; KERR, J.D.; STEGEMAN, D.A. The effect of cattle tick (Boophilus microplus) on the growth of Bos indicus X B. taurus Steers. Australian Journal of Agricultural Research, v. 34, n. 3, p. 317-327, 1983. TAYLOR, D. Innate Immunity in Ticks: A review. Journal of the Acarological Society of Japan, v. 15, n. 2, p. 109-127, 2006. 44 VALENZUELA, J.G.; FRANCISCHETTI, I.M.; PHAM, V.M.; GARFIELD, M.K.; MATER, T.N.; RIBEIRO, J.M. Exploring the sialome of the tick Ixodes scapularis. Journal of Experimental Biology, v. 205, n. 18, p. 2843-2864, 2002. VASTA, G.R.; MARCHALONIS, J.J. Humoral recognition factors in the arthropoda. The specificity of chelicerate serum lectins. Integrative and Comparative Biology, v. 23, n. 1, p. 157-171, 1983. WHARTON, R.H. Acaricide resistance and cattle tick control. Australian Veterinary Journal, v. 43, p. 394-398, 1967. WOHLK?NIG, A.; HUET, J.; LOOZE, Y.; WINTJENS, R. Structural relationships in the lysozyme superfamily: significant evidence for glycoside hydrolase signature motifs. PloS One, v. 5, n. 11, p. e15388, 2010. ZIMMERMANN, G. Review on safety of the entomopathogenic fungi Beauveria bassiana and Beauveria brongniartii. Biocontrol Science and Technology, v. 9, n. 5-6, p. 553-596, 2007a. ZIMMERMANN, G. Review on safety of the entomopathogenic fungus Metarhizium anisopliae. Biocontrol Science and Technology, v. 17, n. 9, p. 879-920, 2007b. ZHOU, J.; UEDA, M.; UMEMIYA, R.; BATTSETSEG, B.; BOLDBAATAR, D.; XUAN, X.; FUJISAKI, K. A secreted cystatin from the tick Haemaphysalis longicornis and its distinct expression patterns in relation to innate immunity. Insect Biochemistry and Molecular Biology, v. 36, n. 7, p. 527-535, 2006.fungos entomopatog?nicoscarrapatosatividade antimicrobianaovosentomopathogenic fungiticksantimicrobial activityeggsMedicina Veterin?riaAvalia??o do perfil prot?ico da postura de f?meas de Rhipicephalus microplus infectadas por Metarhizium anisopliae.Protein profile of eggs from Rhipicephalus microplus ticks infected by Metarhizium anisopliae.info:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/masterThesisinfo:eu-repo/semantics/openAccessreponame:Biblioteca Digital de Teses e Dissertações da UFRRJinstname:Universidade Federal Rural do Rio de Janeiro (UFRRJ)instacron:UFRRJTHUMBNAIL2011 - Patr?cia Silva G?lo.pdf.jpg2011 - Patr?cia Silva G?lo.pdf.jpgimage/jpeg1943http://localhost:8080/tede/bitstream/jspui/2725/18/2011+-+Patr%C3%ADcia+Silva+G%C3%B4lo.pdf.jpgcc73c4c239a4c332d642ba1e7c7a9fb2MD518TEXT2011 - Patr?cia Silva G?lo.pdf.txt2011 - Patr?cia Silva G?lo.pdf.txttext/plain138206http://localhost:8080/tede/bitstream/jspui/2725/17/2011+-+Patr%C3%ADcia+Silva+G%C3%B4lo.pdf.txtd269b5c2cc30d257a02f150c7998268bMD517ORIGINAL2011 - Patr?cia Silva G?lo.pdf2011 - Patr?cia Silva G?lo.pdfapplication/pdf1269316http://localhost:8080/tede/bitstream/jspui/2725/2/2011+-+Patr%C3%ADcia+Silva+G%C3%B4lo.pdf4373eb243e7790604490409b8a47d598MD52LICENSElicense.txtlicense.txttext/plain; charset=utf-82089http://localhost:8080/tede/bitstream/jspui/2725/1/license.txt7b5ba3d2445355f386edab96125d42b7MD51jspui/27252022-07-21 10:16:56.866oai:localhost: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Biblioteca Digital de Teses e Dissertaçõeshttps://tede.ufrrj.br/PUBhttps://tede.ufrrj.br/oai/requestbibliot@ufrrj.br||bibliot@ufrrj.bropendoar:2022-07-21T13:16:56Biblioteca Digital de Teses e Dissertações da UFRRJ - Universidade Federal Rural do Rio de Janeiro (UFRRJ)false
dc.title.por.fl_str_mv Avalia??o do perfil prot?ico da postura de f?meas de Rhipicephalus microplus infectadas por Metarhizium anisopliae.
dc.title.alternative.eng.fl_str_mv Protein profile of eggs from Rhipicephalus microplus ticks infected by Metarhizium anisopliae.
title Avalia??o do perfil prot?ico da postura de f?meas de Rhipicephalus microplus infectadas por Metarhizium anisopliae.
spellingShingle Avalia??o do perfil prot?ico da postura de f?meas de Rhipicephalus microplus infectadas por Metarhizium anisopliae.
G?lo, Patr?cia Silva
fungos entomopatog?nicos
carrapatos
atividade antimicrobiana
ovos
entomopathogenic fungi
ticks
antimicrobial activity
eggs
Medicina Veterin?ria
title_short Avalia??o do perfil prot?ico da postura de f?meas de Rhipicephalus microplus infectadas por Metarhizium anisopliae.
title_full Avalia??o do perfil prot?ico da postura de f?meas de Rhipicephalus microplus infectadas por Metarhizium anisopliae.
title_fullStr Avalia??o do perfil prot?ico da postura de f?meas de Rhipicephalus microplus infectadas por Metarhizium anisopliae.
title_full_unstemmed Avalia??o do perfil prot?ico da postura de f?meas de Rhipicephalus microplus infectadas por Metarhizium anisopliae.
title_sort Avalia??o do perfil prot?ico da postura de f?meas de Rhipicephalus microplus infectadas por Metarhizium anisopliae.
author G?lo, Patr?cia Silva
author_facet G?lo, Patr?cia Silva
author_role author
dc.contributor.advisor1.fl_str_mv Bittencourt, V?nia Rita Elias Pinheiro
dc.contributor.advisor1ID.fl_str_mv 505.198.676-53
dc.contributor.advisor1Lattes.fl_str_mv http://lattes.cnpq.br/3888832724995864
dc.contributor.advisor-co1.fl_str_mv Salles, Cristiane Martins Cardoso de
dc.contributor.referee1.fl_str_mv Fernandes, Everton Kort Kamp
dc.contributor.referee2.fl_str_mv Pontes, Emerson Guedes
dc.contributor.authorID.fl_str_mv 058.507.577-83
dc.contributor.authorLattes.fl_str_mv http://lattes.cnpq.br/3935275742919097
dc.contributor.author.fl_str_mv G?lo, Patr?cia Silva
contributor_str_mv Bittencourt, V?nia Rita Elias Pinheiro
Salles, Cristiane Martins Cardoso de
Fernandes, Everton Kort Kamp
Pontes, Emerson Guedes
dc.subject.por.fl_str_mv fungos entomopatog?nicos
carrapatos
atividade antimicrobiana
ovos
topic fungos entomopatog?nicos
carrapatos
atividade antimicrobiana
ovos
entomopathogenic fungi
ticks
antimicrobial activity
eggs
Medicina Veterin?ria
dc.subject.eng.fl_str_mv entomopathogenic fungi
ticks
antimicrobial activity
eggs
dc.subject.cnpq.fl_str_mv Medicina Veterin?ria
description Rhipicephalus microplus ticks are an important research target because it causes severe economic losses. Parasite control, in general, is based on the use of chemical acaricides. Entomopathogenic fungi are potential candidates as biocontrol agents due to its dispersibility, its ability to penetrate through the arthropods?s cuticle and the relatively specificity to arthropods, contributing to the preservation of non-target organisms. Therefore, studies of fungal infection mechanism and of the effects of the infection on oocytes maturation and on nutrients availability to the embryo are aspects demanded to be explored for further comprehension of the fungi infection, as well as, the ticks? defense mechanisms. These investigations would significantly contribute to advances in tick control. The present study evaluates possible changes in the protein profile of eggs layed by R. microplus females infected with the entomopathogenic fungus Metarhizium anisopliae s.l. Ma 959 isolate. Bioassay was composed by five groups: four groups treated with M. anisopliae s.l. and one control group. Each group lead 50 females. Ticks were immersed in 1 ml of 0.1% Tween 80 aqueous conidial suspension at 1?108, 1 ? 107, 1 ? 106 or 1 ? 105 conidia ml?1 for three minutes. The control group was immersed in 1 ml of 0.1% Tween 80 aqueous solution with no conidia. Eggs were separated daily, for the first ten days of oviposition and stored at ? 20?C. Egg masses were separately homogenized, ground with lyses buffer and centrifuged. The protein content of supernatant was determined by the method of Lowry with modifications. Samples were analyzed through a 12%-polyacrylamide electrophoresis gel under denaturing conditions (SDS-PAGE). There was no significant (p ? 0.05) difference in the total protein content between the eggs from infected and non-infected groups. Nineteen protein bands were observed on the SDS-PAGE. No difference was observed in the bands profile between the control and the infected groups. In adition, no differences was observed in the profiles of groups treated with different concentrations of conidia. Eggs from females infected with the highest fungal concentration or from non-infected females were used for HPLC analysis. Samples were pre-purified by solid phase extraction. Elution steps were performed with 5, 40, and 80% acetonitrile (ACN). Samples were then submitted to a HPLC using an analytic C18 reverse-phase column. The antimicrobial activity of samples collected by HPLC was tested against Candida albicans and M. anisopliae s.l. Nine samples reduced C. albicans growth over than 35%. The fraction with the highest antimicrobial activity to C. albicans was collected from eggs from day 8 of oviposition of infected engorged females. This fraction was pre-purified in 5% of ACN, caused 80.94% reduction of growth of C. albicans and was not observed in any other chromatogram. There was no antimicrobial activity against M. anisopliae s.l. The present study reportes, for the first time, induced response in eggs from R. microplus females infected by the entomopathogenic fungus M. anisopliae s.l.
publishDate 2011
dc.date.issued.fl_str_mv 2011-08-19
dc.date.accessioned.fl_str_mv 2019-05-27T14:59:25Z
dc.type.status.fl_str_mv info:eu-repo/semantics/publishedVersion
dc.type.driver.fl_str_mv info:eu-repo/semantics/masterThesis
format masterThesis
status_str publishedVersion
dc.identifier.citation.fl_str_mv G?LO, Patr?cia Silva. Avalia??o do perfil prot?ico da postura de f?meas de Rhipicephalus microplus infectadas por Metarhizium anisopliae. 2011. 71 f. Disserta??o (Programa de P?s-Gradua??o em Ci?ncias Veterin?rias) - Universidade Federal Rural do Rio de Janeiro, Serop?dica.
dc.identifier.uri.fl_str_mv https://tede.ufrrj.br/jspui/handle/jspui/2725
identifier_str_mv G?LO, Patr?cia Silva. Avalia??o do perfil prot?ico da postura de f?meas de Rhipicephalus microplus infectadas por Metarhizium anisopliae. 2011. 71 f. Disserta??o (Programa de P?s-Gradua??o em Ci?ncias Veterin?rias) - Universidade Federal Rural do Rio de Janeiro, Serop?dica.
url https://tede.ufrrj.br/jspui/handle/jspui/2725
dc.language.iso.fl_str_mv por
language por
dc.relation.references.por.fl_str_mv ALONSO-DIAZ, M.A., GARCIA, L., GALINDO-VELASCO, E., LEZAMA-GUTIERREZ, R., ANGEL SAHAGUN, C.A., RODRIGUEZ-VIVAS, R.I., FRAGOSO-SANCHEZ, H. Evaluation of Metarhizium anisopliae (Hyphomycetes) for the control of Boophilus microplus (Acari : Ixodidae) on naturally infested cattle in the Mexican tropics. Veterinary Parasitology, v. 147, n. 3-4, p. 336-340, 2007. ALVES, S.B. Controle Microbiano de Insetos. 2? ed. Piracicaba: FEALQ, 1998. 1163p. ANGELO, I.C.; FERNANDES, E.K.K.; BAHIENSE, T.C.; PERINOTTO, W.M.S.; MORAES, A.P.R.; TERRA, A.L.M.; BITTENCOURT, V.R.E.P.; Efficiency of Lecanicillium lecanii to control the tick Rhipicephalus microplus. Veterinary Parasitology, v. 172, n. 3-4, p. 317-322, 2010a. ANGELO, I.C.; GOLO, P.S.; CAMARGO, M.G.; KLUCK, G.E.G.; FOLY, E. BITTENCOURT, V.R.E.P. Haemolymph protein and lipid profile of Rhipicephalus (Boophilus) microplus infected by fungi. Transboundary and Emerging Diseases, v. 57, n. 1-2, p. 79-83, 2010b. ANGELO, I.C. Avalia??o dos perfis prot?ico e lip?dico na resposta de Rhipicephalus microplus ? infec??o com fungos. 2011. 143p. Tese (Doutorado em Ci?ncias Veterin?rias, Parasitologia Animal)-Universidade Federal Rural do Rio de Janeiro, Serop?dica, 2011. ARRIETA, M.C.; LESKIW, B.K.; KAUFMAN, W.R. Antimicrobial activity in the egg wax of the African cattle tick Amblyomma hebraeum (Acari: Ixodidae). Experimental and Applied Acarology, v. 39, n. 3-4, p. 297-313, 2006. BAHIENSE, T.C.; FERNANDES, E.K.K.; BITTENCOURT, V.R.E.P. Compatibility of the fungus Metarhizium anisopliae and deltamethrin to control a resistant strain of Boophilus microplus tick. Veterinary Parasitology , v. 141, n. 3-4, p. 319-324, 2006. BAHIENSE, T.C.; FERNANDES, E.K.K.; ANGELO, I.C.; PERINOTTO, W.M.S.; BITTENCOURT, V.R.E.P. Avalia??o do potencial de controle biol?gico de Metarhizium anisopliae sobre Boophilus microplus em teste de est?bulo. Revista Brasileira de Parasitologia Veterin?ria, v. 16, n. 4, 243-245, 2007. BALASHOV, Y.S. Bloodsucking Ticks (Ixodoidea) ? Vectors of Diseases of Man and Animals. (English translation) ed H. Hoogsraal & R. J. Tatchell. Miscellaneous Publications of the Entomological Society of America, 1968, 376p. BEYS DA SILVA, W.O.; SANTI, L.; BERGER, M; PINTO A.F.M.; GUIMAR?ES J.A.; SCHRANK, A.; VAINSTEIN, M.H. Characterization of a spore surface lipase from the biocontrol agent Metarhizium anisopliae. Process Biochemistry, v. 44, p. 829-834, 2009. BEYS DA SILVA, W.O.; SANTI, L.; SCHRANK, A.; VAINSTEIN, M.H. Metarhizium anisopliae lipolytic activity plays a pivotal role in Rhipicephalus (Boophilus) microplus infection. British Mycological Society, v. 114, p. 10-15, 2010. 36 BIDOCHKA, M.J.; SMALL, C.L.; SPIRONELLO, M. Recombination within sympatric cryptic species of the insect pathogenic fungus Metarhizium anisopliae. Environmental Microbiology, v.7, n. 9, p.1361-1368, 2005. BISCHOFF, J.F.; REHNER, S.A.; HUMBER, R.A. A multilocus phylogeny of the Metarhizium anisopliae lineage. Mycologia, v.101, n. 4, p.512-530, 2009. BITTENCOURT, V.R.E.P.; MASSARD, C.L.; LIMA, A.F. Uso do fungo Metarhizium anisopliae (Metschnikoff, 1879) Sorokin, 1883, no controle do carrapato Boophilus microplus (Canestrini, 1887). Arquivo da Universidade Rural do Rio de Janeiro, v.15, n.2, p.197-202, 1992. BITTENCOURT, V.R.E.P.; MASSARD, C.L.; LIMA, A.F. A??o do fungo Metarhizium anisopliae sobre a fase n?o parasit?ria do ciclo biol?gico de Boophilus microplus. Revista Universidade Rural, S?ries Ci?ncias da Vida, v. 16, n. 1-2, p. 49-55, 1994. BITTENCOURT, V.R.E.P.; MASSARD, C.L.; LIMA, A.F. Din?mica da infec??o do fungo Metarhizium anisopliae (Metschnikoff, 1879) Sorokin, 1883, sobre o carrapato Boophilus microplus (Canestrini, 1887). Revista da Universidade Rural, S?rie Ci?ncias da Vida, v. 17, n. 1, p. 83-88, 1995. BITTENCOURT, V.R.E.P.; PERALVA, S.L.E.S.; VIEGAS, E.C.; ALVES, S.B. Avalia??oo dos efeitos do contato de Beauveria bassiana (Bals.) Vuill. com ovos e larvas de Boophilus microplus (Canestrini, 1887) (Acari: Ixodidae). Revista Brasileira de Parasitologia Veterin?ria, v.5, n. 2, p. 81-84, 1996. BITTENCOURT, V.R.E.P.; MASCARENHAS, A.G.; FACCINI, J.L.H. Mecanismo de infec??o do fungo Metarhizium anisopliae no carrapato Boophilus microplus em condi??es experimentais. Ci?ncia Rural, Santa Maria, v. 29, n. 2, p. 351-354, 1999. BRAZ, G.R.C.; COELHO H.S.L.; MASUDA, H.; OLIVEIRA, P.L. A missing metabolic pathway in the cattle tick Boophilus microplus. Current Biology, v. 9, n. 13, p. 703-706, 1999. CARVALHO, T.D.; BORELLI, I.C. Controle de carrapatos em bovinos. Revista cient?fica eletr?nica de medicina veterin?ria. 2008 Acesso http://www.revista.inf.br/veterinaria10/revisao/edic-vi-n10-RL22.pdf Dezembro 2010. CASTRO, A.B.A.; BITTENCOURT, V.R.E.P.; DAEMON, E.; VIEGAS, E.C. Efic?cia do fungo Metarhizium anisopliae sobre o carrapato Boophilus microplus em teste de est?bulo. Revista da Universidade Rural, S?rie Ci?ncias da Vida, Serop?dica, v.19, n.1-2, p.73-82, 1997. CERAUL, S.M.; SONENSHINE D.E.; HYNES, W.L. Resistance of the tick Dermacentor variabilis (Acari: Ixodidae) following challenge with the bacterium Escherichia coli (Enterobacteriales: Enterobacteriaceae). Journal of Medical Entomology, v. 39, n. 2, p. 376?378, 2002. 37 CHANDLER, D.; DAVIDSON, G.; PELL, J.K.; BALL, B.V.; SHAW, K.; SUNDERLAND, K.D. Fungal biocontrol of Acari. Biocontrol Science and Technology, v. 10, n. 4, p. 357-384, 2000. CHINZEI, Y.; CHINO, H.; TAKAHASHI, K. Purification and properties of vitellogenin and vitellin from a tick, Ornithodoros moubata. Journal of Comparative Physiology, v.152B, n. 1, p.13-21, 1983. CHINZEI, Y.; YANO, I. Fat body is the site of vitellogenin synthesis in the soft tick, Ornithodoros moubata, Journal of Comparative Phisiology, v. 155B, n. 6, p. 671-678, 1985. CORZO, G.; REVAH, S. Production and characteristics of the lipase from Yarrowia lipolytica 681. Bioresource Technology, v. 70, n. 2, p. 173?180, 1999. COSTA, A.L. Bioecologia de Boophilus microplus (Canestrini, 1887) (Acarina:Ixodidae) no estado do Rio de Janeiro: oviposi??o e sazonalidade. Considera??es preliminares. 1982. 48p. Mestrado (Mestrado em Ci?ncias Veterin?rias, Parasitologia Animal)-Universidade Federal Rural do Rio de Janeiro, Serop?dica, 1982. COSTA, G.L.; SARQUIS, M.I.M.; MORAES, A.M.L.; BITTENCOURT, V.R.E.P. Isolation of Beauveria bassiana and Metarhizium anisopliae var. anisopliae from Boophilus microplus tick (Canestrini, 1887), in Rio de Janeiro State, Brazil. Mycopathologia, v. 154, n. 4, p. 207-209, 2002. D?AZ, M.P.; MAC?AS, A.F.; NAVARRO, S.R.; TORRE, M. Mecanismo de acci?n de los hongos entomopat?genos. Interciencia, v. 31, n. 12, p. 856-860, 2006. DUMAS, C.; RAVALLEC, M.; MATHA, V.; VEY, A. Comparative study of the cytological aspects of the mode of action of destruxins and other peptidic fungal metabolites on target epithelial cells. Journal of Invertebrate Pathology, v. 67, n. 2, p. 137-146, 1996. EGGENBERGER, L.R.; LAMOREAUX, W.J.; COONS, L.B. Hemocytic encapsulation of implants in the tick Dermacentor variabilis. Experimental and Applied Acarology, v. 9, n. 279-287, 1990. ESTEVES, E.; FOGA?A, A. C.; MALDONADO, R.; SILVA, F.D.; MANSO, P.P.A.; PELAJO-MACHADO, M.; VALLE, D.; DAFFRE, S. Antimicrobial activity in the tick Rhipicephalus (Boophilus) microplus eggs: Cellular localization and temporal expression of microplusin during oogenesis and embryogenesis. Developmental & Comparative Immunology, v. 33, n. 8, p. 913-919, 2009. FARIA, M.R.; WRAIGHT, S.P. Mycoinsecticides and Mycoacaricides: A comprehensive list with worldwide coverage and international classification of formulation types. Biological Control, v. 43, n. 3, p. 237-256, 2007. 38 FERNANDES, E.K.K.; COSTA, G.L.; SOUZA, E.J.; MORAES, A.M.L.; BITTENCOURT, V.R.E.P. Beauveria bassiana isolated from engorged females and tested against eggs and larvae of Boophilus microplus (Acari: Ixodidae). Journal of Basic Microbiology, v. 43, n. 5, p. 393-398, 2003. FERNANDES, E.K.K.; BITTENCOURT, V.R.E.P. Entomopathogenic fungi against South American tick species. Experimental and Applied Acarology, v. 46, n. 1-4, p.71-93, 2008. FERNANDES, ?.K.K.; KEYSER, C.A.; CHONG, J.P.; RANGEL, D.E.N.; MILLER, M.P.; ROBERTS, D.W. Characterization of Metarhizium species and varieties based on molecular analysis, heat tolerance and cold activity. Journal of Applied Microbiology, v.108, n. 1, p.115-128, 2010. FOGACA, A.C.; DA SILVA P.I.; TERESA J.R.M.; MIRANDA M.; BIANCHI, A.G.; MIRANDA, A.; RIBOLLA, P.E.M.; DAFFRE, S. Antimicrobial activity of a bovine hemoglobin fragment in the tick Boophilus microplus. Journal of Biological Chemistry, v. 274, n. 36, p. 25330-25334, 1999. FOGACA, A.C.; LORENZINI, D.M.; KAKU, L.M.; ESTEVES, E.; BULET, P.; DAFFRE, S. Cysteine-rich antimicrobial peptides of three cattle tick Boophilus microplus: isolation, structural characterization and tissue expression profile. Developmental & Comparative Immunology, v. 28, n. 3, p. 191-200, 2004. FOGACA, A.C.; ALMEIDA, I.C.; EBERLIN, M.N.; TANAKA, A.S.; BULET, P.; DAFFRE, S. Ixodidin, a novel antimicrobial peptide from the hemocytes of the cattle tick Boophilus microplus with inhibitory activity against serine proteinases. Peptides, 27, n. 4, p. 667-674, 2006. FURLONG, J. Controle do carrapato dos bovinos na regi?o Sudeste do Brasil. Caderno T?cnico da Escola de Veterin?ria UFMG, Belo Horizonte, n.8, p.49-61, 1993. GEORGE, J.E.; POUND, J.M.; DAVEY, R.B. Chemical control of ticks on cattle and the resistance of these parasites to acaricides. Parasitology, v. 129, n. S1, p. S353-S366, 2004. GONZALES, J.C. O carrapato do boi: vida, resist?ncia e controle. S?o Paulo: Mestre Jou, 1974. 101p. GRISI, L.; MASSARD, C.L.; MOYA-BORJA, G.E.; PEREIRA, J.B. Impacto econ?mico das principais ectoparasitoses em bovinos no Brasil. A Hora Veterin?ria, v. 21, n. 125, p. 8-10, 2002. HAWKSWORTH, D.L. Micologist?s handbook. 2?ed. England, Kew Surrey: CAB Press, 1977. 231p. HYNES, W. L.; CERAUL, S.M.; TODD, S.M.; SEGUIN, K.C.; SONENSHINE, D.E. A defensin-like gene expressed in the black-legged tick, Ixodes scapularis. Medical and Veterinary Entomology, v. 19, n. 4, p. 339-344, 2005. 39 HOFFMANN, J.A. The immune response of Drosophila. Nature, v. 426, n. 6962, p. 33-38, 2003. HORN, S.C.; ARTECHE, C.C.P. Situa??o parasit?ria da pecu?ria no Brasil. A hora Veterin?ria, v. 4, n. 23, p. 12-32, 1985. HU Q.; AN X.; JIN F.; FREED S.; REN S. Toxicities of destruxins against Bemisia tabaci and its natural enemy Serangium japonicum. Toxicon, v. 53, n. 1, p. 115-121, 2009. JARROLD, S.L.; MOORE, D.; POTTER, U.; CHARNLEY, A.K. The contribution of surface waxes to pre-penetration growth of an entomopathogenic fungus on host cuticle. Mycological Research, v. 111, p. 240-249, 2007. JOHNS, R.; SONENSHINE, D.E.; HYNES, W.L. Control of bacterial infections in the hard tick Dermacentor variabilis (Acari: Ixodidae): evidence for the existence of antimicrobial proteins in tick hemolymph. Journal of Medical Entomology, v. 35, n. 4, p. 458-464, 1998. JOHNS, R.; SONENSHINE, D.E.; HYNES, W.L. Identification of a defensin from the hemolymph of the American dog tick, Dermacentor variabilis. Insect Biochemistry and Molecular Biology, v. 31, n. 9, p. 857-865, 2001. LAEMMLI, U.K. Cleavage of structural proteins during the assembly of the head of bacteriphage T4. Nature, v. 227, n. 5259, p. 680-685, 1970. LEAL, A.T.; FREITAS, D.R.J. Perspectivas para o controle bovino. Acta Scientiae Veterinariae. v. 31, n. 1, 2003. LEMAITRE, B.; REICHHART, J.; HOFFMANN, J. Drosophila host defense: differential induction of antimicrobial peptide genes after infection by various classes of microorganisms. Proceedings of the National Academy of Sciences. USA, v. 94, n. 26, p.14614-14619, 1997. LEMAITRE, B.; HOFFMANN, J. The host defense of Drosophila melanogaster Annual Review of Immunology, v.25, p.697-743, 2007. LIMA, C.A.; SASAKI, S.D.; TANAKA, A.S. Bmcystatin, a cysteine proteinase inhibitor characterized from the tick Boophilus microplus. Biochemical and Biophysical Research Communications, v. 347, n.1, p. 44-50, 2006. LOGULLO, C.; DA SILVA VAZ, I.; SORGINE, M.H.F.; PAIVA-SILVA, G.O.; FARIA, F.S.; ZINGALI, R.B.; DE LIMA, M.F.R.; ABREU, L.; FIALHO OLIVEIRA, E.; ALVES, E.W.; MASUDA, H.; GONZALES, J.C.; MASUDA, A.; OLIVEIRA, P.L. Isolation of na aspartic proteinase percursor from the egg of a hard tick, Boophilus microplus. Parasitology, v. 116, n. 6, p. 525-532, 1998. LOGULLO, C.; MORAES, J.; DANSA-PETRETSKI, M.; VAZJR, I.S.; MASUDA, A.; SORGINE, M.H.F.; BRAZ, G.R.; MASUDA, H.; OLIVEIRA, P.L. Binding and storage of heme by vitellin from the cattle tick, Boophilus microplus. Insect Biochemistry and Molecular Biology, v. 32, n. 12, p. 1805-1811, 2002. 40 LOWRY, O.H.; ROSEBROUGH, N.J.; FARR, A.L.; RANDALL, R.J. Protein measurement with the folin phenol reagent. The Journal of Biological Chemistry, v. 193, p. 265-275, 1971. LUZ, C.; TIGANO, M.S.; SILVA, I.G.; CORDEIRO, C.M.T.; ALJANABI, S.M. Selection of Beauveria bassiana and Metarhizium anisopliae isolates to control Triatoma infestans. Mem?rias do Instituto Oswaldo Cruz, v. 93, n. 6, p. 839-846, 1998. MAIA, M.M.D.; HEASLEY, A; CAMARGO DE MORAIS, M.M.; MELO, E.H.M.; MORAIS JR, M.A.; LEDINGHAM, W.M.; LIMA FILHO, J.L. Effect of culture conditions on lipase production by Fusarium solani in batch fermentation. Bioresource Technology, v. 76, n. 1, p. 23?27, 2001. MARMARAS. V.J.; LAMPROPOULOU, M. Regulators and signalling in insect haemocyte immunity. Cellular Signalling, v.21, n. 2, p.186-195, 2009. MAYA-MONTEIRO, C.M.; DAFFRE, S.; LOGULLO, C.; LARA, F.A.; ALVES, E.W.; CAPURRO, M.L.; ZINGALI, R.; OLIVEIRA, P.L. HeLp, a heme lipoprotein from the hemolymph of the cattle tick, Boophilus microplus. Journal of Biological Chemistry, v. 275, n. 47, p. 36584?36589, 2000. MELO, D.R.; REIS, R.C.S; BITTENCOURT, V.R.E.P. Patogenicidade in vitro do fungo Metarhizium anisoplaie (Metschinikoff, 1879) Sorokin, 1883, sobre o carrapato Boophilus microplus (Canestrini, 1887). Revista Brasileira de Parasitologia Veteirn?ria, v. 15, n.4, p. 157-162, 2006. MENT D.; GINDIN G.; SOROKER, V.; GLAZER, I.; ROT, A.; SAMISH, M. Metarhizium anisopliae conidial responses to lipids from tick cuticle and tick mammalian host surface. Journal of Invertebrate Pathology, v. 103, n. 2, p. 132-139, 2010. MOINO JR, A.M.; ALVES, S.B. Efeito de imidacloprid e fipronil sobre Bauveria bassiana e Metarhizium anisopliae e no comportamento e limpeza de Heterotermes tenuis. Anais da Sociedade Entomol?gica do Brasil, v. 10, n. 4, p. 611-619, 1998. MONTEIRO, S.G.; BITTENCOURT, V.R.E.P.; DAEMON, E.; FACCINI, J.L.H. Pathogenicity under laboratory conditions of the fungi Beauveria bassiana and Metarhizium anisopliae on larvae of the tick Rhipicephalus sanguineus (Acari: Ixodidae). Revista Brasileira de Parasitologia Veterin?ria, v. 7, n. 2, p. 113-116, 1998. MOOKHERJEE, N.; HANCOCK, R.E. Cationic host defence peptides: innate immune regulatory peptides as a novel approach for treating infections. Cellular and Molecular Life Sciences, v. 64, n.7-8, p. 922-933, 2007 MULLER, U.; VOGEL, P.; ALBER, G.; SCHAUB, G. The Innate Immune System of Mammals and Insects. Egesten A, Schmidt A, Herwald H (eds): Trends in Innate Immunity. Contributions to Microbiology. Basel, Karger, v. 15, p. 21-44, 2008. 41 NAKAJIMA, Y.; VAN DER GOES VAN NATERS-YASUI, A.; TAYLOR, D.; YAMAKAWA, M. Antibacterial peptide defensin is involved in midgut immunity of the soft tick, Ornithodoros moubata. Insect Molecular Biology, v. 11, n. 6, p. 611-618, 2002. MURREL, A.; BARKER, S.C. Synonymy of Boophilus Curtice, 1891 with Rhipicephalus Koch, 1844 (Acari: Ixodidae). Systematic Parasitology. v. 56, p. 169-172, 2003. PAI?O, J.C.V.; MONTEIRO, A.C.; KRONKA, S.N. Susceptibility of the cattle tick Boophilus microplus (Acari: Ixodidae) to isolates of the fungus Beauveria bassiana. World Journal of Microbiology and Biochemistry, v. 17, n. 3, p. 245-251, 2001a. PAI?O, J.C.V.; MONTEIRO, A.C.; KRONKA, S.N. Compatibilidade de Metarhizium anisopliae com carrapaticidas qu?micos utilizados no controle de Boophilus microplus (Acari: Ixodidae). In: SIMPOSIO DE CONTROLE BIOL?GICO, 7, 2001b, Po?os de Caldas, Anais. Minas Gerais, 2001, p. 117. PAI?O, J.C.V.; MONTEIRO, A.C.; KRONKA, S.N. Desempenho de Metarhizium anisopliae submetidos a diferentes doses de carrapaticidas qu?micos usados no controle de Boophilus microplus (Acari:Ixodide). In: SIMPOSIO DE CONTROLE BIOL?GICO, 7, 2001c, Po?os de Caldas, Anais. Minas Gerais, 2001, p. 160. PAL, S.; ST LEGER, R.J.; WU, L.P. Fungal Peptide Destruxin A Plays a Specific Role in Suppressing the Innate Immune Response in Drosophila melanogaster. The Journal of Biological Chemistry, v. 282 n. 12, p. 8969?8977, 2007. PEDRINI, N.; CRESPO, R.; JU?REZ, M.P. Biochemistry of insect epicuticle degradation by entomopathogenic fungi. Comparative Biochemistry and Physiology Part C: Toxicology and Pharmacology, v. 146, n. 1-2, p. 124-137, 2007. PEREIRA, L.S.; OLIVEIRA, P.L.; BARJA-FIDALGO, C.; DAFFRE, S. Production of reactive oxygen species by hemocytes from the cattle tick Boophilus microplus. Experimental Parasitology, v. 99, n. 2, p. 66?72, 2001. PEREIRA, M.C. Boophilus microplus: Revis?o taxion?mica e morfo-biol?gica. 1980. 126f. Tese (Mestrado)- Universidade de S?o Paulo, S?o Paulo. 1980. PERINOTTO, W.M.S. A??o dos fungos Beauveria bassiana e Metarhizium anisopliae sobre diferentes cepas do carrapato Boophilus microplus. 2010. 47p. Disserta??o (Mestrado em Ci?ncias Veterin?rias, Parasitologia Animal) - Universidade Federal Rural do Rio de Janeiro, Serop?dica, 2010. POSADAS, J.; LECUONA, R. Selection of native isolates of Beauveria bassiana (Ascomycetes: Clavicipitaceae) for the microbial control of Rhipicephalus (Boophilus) microplus (Acari: Ixodidae). Journal of Medical Entomology, v. 46, n. 2, p. 284-291, 2009. RAIA, V. A. Avalia??o quantitativa e qualitativa das prote?nas dos ovos de Rhipicephalus (Boophilus) microplus e Rhipicephalus (Rhipicephalus) sanguineus (Acari: 42 Ixodidae) durante a oviposi??o e embriog?nse. 2007. 44p. Disserta??o (Mestrado em Ci?ncias Veterin?rias, Parasitologia Animal) - Universidade Federal Rural do Rio de Janeiro, Serop?dica, 2007. RELINER, S.A.; MINNIS, A.M.; SUNG, G.; LUANGSA-ARD, J.J.; DEVOTTO, L.; HUMBER, R.A. Phylogeny and systematics of the anamorphic, entomopathogenic genus Beauveria. Mycologia. In press: d?i 10.3852/10-302 REIS, R.C.S.; MELO, D.R.; SOUZA, E.J.; BITTENCOURT, V.R.E.P. A??o in vitro dos fungos Beauveria bassiana (Bals) Vuill e Metarhizium anisopliae (Metsch) Sorok sobre ninfas e adultos de Amblyomma cajennense (Fabricius, 1787) (Acari: Ixodidae). Arquivo Brasileiro de Medicina Veterin?ria e Zootecnia, v. 53, n. 5, p. 544-547, 2001. RITTER, S.W., TYRREL, R.M. The heme synthesis and degradation pathways: role in oxidant sensitivity. Free Radical Biology and Medicine, v. 28, n. , p. 289-30, 2000. RIVALIER, E.; SEYDEL, S. Nouveau procede de culture sur lames g?los?s appliqu? al??tude microscopique de champignos deteignes. Annals of Parasitology, v.10, n.5, p.444-452, 1932. RODRIGUES, J.; BRAYNER, F.A.; ALVES, L.C; DIXIT, R.; BARILLAS-MURY, C. Hemocyte differentiation mediates innate immune memory in Anopheles gambiae mosquitoes. Science, v.329, n. 5997, p.1353-1355, 2010. ROSELL-DAVIS, R.; COONS, L.B. Relationship between feding, mating, vitellogenin production and vitellogenesis in the tick Dermacentor variabilis. Experimental and Applied Acarology, v. 7, n. 1, p. 95-105, 1989. ROSELL-DAVIS, R.; COONS, L.B. Purification and partial characterization of vitellin from the eggs of the hard tick, Dermacentor variabilis. Insect Biochemistry, v. 21, n. 8, p. 871-885, 1991. SAITO, K. C.; BECHARA, G.H.; NUNES, E.T.; OLIVEIRA, P.R.; DENARDI, S.E.; MATHIAS, M. I. C. Morphological, histological, and ultrastructural studies of the ovary of the cattle-tick Boophilus microplus (Canestrini, 1887) (Acari: Ixodidae). Veterinary Parasitology, v. 129, n. 3-4, p. 299 ? 311, 2005. SAMBROOK, J.; RUSSEL, D.W. Molecular cloning: a laboratory manual. 3rd ed. New York: Cold Spring Harbor Laboratory Press, 2001. p. A8.1-A8.55. SAMISH, M.; REHACEK, J. Pathogens and predators of ticks and their potential in biological control. Annual Review of Entomology, v. 44, p. 159-182, 1999. SAMISH, M.; GINSBERG, H.; GLASER, I. Biological control of ticks. Parasitology, v.129, n. S1, p. S389-S403, 2004. SAMPAIO, I. B. M. Estat?stica Aplicada ? Experimenta??o Animal. 3. ed -reimpress?o. Belo Horizonte: FEPMVZ- Editora, 2010. 264p. ISBN 85-87144-07-3 43 SANTI, L.; SILVA, W.O.B.; BERGER, M.; GUIMAR?ES, J.A.; SCHRANK, A.; VAINSTEIN, M.H. Conidial surface proteins of Metarhizium anisopliae: Source of activities related with toxic effects, host penetration and pathogenesis. Toxicon, v. 55, p. 874-880, 2010. SCHRANK, A.; VAINSTEIN, M.H. Metarhizium anisopliae enzymes and toxins. Toxicon, v. 56, n. 7, p. 1267-1274, 2010. SEIXAS, A.; DOS SANTOS, P.C.; VELLOSO, F.F.; DA SILVA VAZ JR. I.; MASUDA, A.; HORN, F.; TERMIGNONI, C. A Boophilus microplus vitellin-degrading cysteine endopeptidase. Parasitology, v. 126, n. 2, p. 155-163, 2003. SILVA, S.B.; SAVASTANO, G.; BITTENCOURT, V.R.E.P. Tipos celulares envolvidos na resposta imune de f?meas ingurgitadas de Boophilus mcroplus inoculadas com Metarhizium anisopliae e Penicillium sp. Revista Brasileira de Parasitologia Veterin?ria, v.15, n.3, p.129-131, 2006. SILVA, W.O.B.; MITIDIERI, S.; SCHRANK, A.; VAINSTEIN, M.H. Production and extraction of an extracellular lipase from the entomopathogenic fungus Metarhizium anisopliae. Process Biochemistry, v. 40, n. 1, p. 321-326, 2005. SONENSHINE, D.E. Biology of ticks. Old Dominion University, Norfolk, Virginia. Oxford University Press, 1991. 447 p. v. 1. ISBN 0-19-505910. SONENSHINE, D.E.; HYNES, W.L.; CERAUL, S.M.; MITCHELL, R.; BENZINE, T. Host blood proteins and peptides in the midgut of the tick Dermacentor variabilis contribute to bacterial control. Experimental & Applied Acarology, v. 36, n. 3, p. 207-223, 2005. SONENSHINE, D.E.; HYNES, W.L. Molecular characterization and related aspects of the innate immune response in ticks. Frontiers in Bioscience, v. 13, n. 18, p. 7046-7063, 2008. SORGINE, M.H.F.; LOGULLO, C.; ZINGALI, R.B.; PAIVA-SILVA, G.O.; JULIANO, L.; OLIVEIRA, P.L. A heme-binding aspartic proteinase from the eggs of the hard tick Boophilus microplus. The Journal of Biological Chemistry, v. 275, n. 37, p. 28659?28665, 2000. ST LEGER, R.J.; GOETTEL, M.; ROBERTS, D.W.; STAPLES, R.C. Prepenetration events during infection of host cuticle by Metarhizium anisopliae. Journal of Invertebrate Pathology, v. 58, n. 2, p. 168-179, 1991. SUTHERST, R.W.; MAYWALD, G.F.; KERR, J.D.; STEGEMAN, D.A. The effect of cattle tick (Boophilus microplus) on the growth of Bos indicus X B. taurus Steers. Australian Journal of Agricultural Research, v. 34, n. 3, p. 317-327, 1983. TAYLOR, D. Innate Immunity in Ticks: A review. Journal of the Acarological Society of Japan, v. 15, n. 2, p. 109-127, 2006. 44 VALENZUELA, J.G.; FRANCISCHETTI, I.M.; PHAM, V.M.; GARFIELD, M.K.; MATER, T.N.; RIBEIRO, J.M. Exploring the sialome of the tick Ixodes scapularis. Journal of Experimental Biology, v. 205, n. 18, p. 2843-2864, 2002. VASTA, G.R.; MARCHALONIS, J.J. Humoral recognition factors in the arthropoda. The specificity of chelicerate serum lectins. Integrative and Comparative Biology, v. 23, n. 1, p. 157-171, 1983. WHARTON, R.H. Acaricide resistance and cattle tick control. Australian Veterinary Journal, v. 43, p. 394-398, 1967. WOHLK?NIG, A.; HUET, J.; LOOZE, Y.; WINTJENS, R. Structural relationships in the lysozyme superfamily: significant evidence for glycoside hydrolase signature motifs. PloS One, v. 5, n. 11, p. e15388, 2010. ZIMMERMANN, G. Review on safety of the entomopathogenic fungi Beauveria bassiana and Beauveria brongniartii. Biocontrol Science and Technology, v. 9, n. 5-6, p. 553-596, 2007a. ZIMMERMANN, G. Review on safety of the entomopathogenic fungus Metarhizium anisopliae. Biocontrol Science and Technology, v. 17, n. 9, p. 879-920, 2007b. ZHOU, J.; UEDA, M.; UMEMIYA, R.; BATTSETSEG, B.; BOLDBAATAR, D.; XUAN, X.; FUJISAKI, K. A secreted cystatin from the tick Haemaphysalis longicornis and its distinct expression patterns in relation to innate immunity. Insect Biochemistry and Molecular Biology, v. 36, n. 7, p. 527-535, 2006.
dc.rights.driver.fl_str_mv info:eu-repo/semantics/openAccess
eu_rights_str_mv openAccess
dc.format.none.fl_str_mv application/pdf
dc.publisher.none.fl_str_mv Universidade Federal Rural do Rio de Janeiro
dc.publisher.program.fl_str_mv Programa de P?s-Gradua??o em Ci?ncias Veterin?rias
dc.publisher.initials.fl_str_mv UFRRJ
dc.publisher.country.fl_str_mv Brasil
dc.publisher.department.fl_str_mv Instituto de Veterin?ria
publisher.none.fl_str_mv Universidade Federal Rural do Rio de Janeiro
dc.source.none.fl_str_mv reponame:Biblioteca Digital de Teses e Dissertações da UFRRJ
instname:Universidade Federal Rural do Rio de Janeiro (UFRRJ)
instacron:UFRRJ
instname_str Universidade Federal Rural do Rio de Janeiro (UFRRJ)
instacron_str UFRRJ
institution UFRRJ
reponame_str Biblioteca Digital de Teses e Dissertações da UFRRJ
collection Biblioteca Digital de Teses e Dissertações da UFRRJ
bitstream.url.fl_str_mv http://localhost:8080/tede/bitstream/jspui/2725/18/2011+-+Patr%C3%ADcia+Silva+G%C3%B4lo.pdf.jpg
http://localhost:8080/tede/bitstream/jspui/2725/17/2011+-+Patr%C3%ADcia+Silva+G%C3%B4lo.pdf.txt
http://localhost:8080/tede/bitstream/jspui/2725/2/2011+-+Patr%C3%ADcia+Silva+G%C3%B4lo.pdf
http://localhost:8080/tede/bitstream/jspui/2725/1/license.txt
bitstream.checksum.fl_str_mv cc73c4c239a4c332d642ba1e7c7a9fb2
d269b5c2cc30d257a02f150c7998268b
4373eb243e7790604490409b8a47d598
7b5ba3d2445355f386edab96125d42b7
bitstream.checksumAlgorithm.fl_str_mv MD5
MD5
MD5
MD5
repository.name.fl_str_mv Biblioteca Digital de Teses e Dissertações da UFRRJ - Universidade Federal Rural do Rio de Janeiro (UFRRJ)
repository.mail.fl_str_mv bibliot@ufrrj.br||bibliot@ufrrj.br
_version_ 1797220061640916992