Zitieren

Anualpec. Anuário da pecuária brasileira. São Paulo: IHS Markit - Agribusiness Intelligence; 2021, p. 35.Search in Google Scholar

Oliveira PA, Ruas JL, Riet-Correa F, Coelho ACB, Santos BL, Marcolongo-Pereira C, Sallis ESV, Schild AL, Oliveira P, Ruas JL, RieT-Correa F, Coelho ACB, Santos BL, Marcolongo-Pereira C, Sallis ESV, Schild AL: Doenças parasitárias em bovinos e ovinos no sul do Brasil: frequência e estimativa de perdas econômicas. Pesq Vet Bras 2017, 37:797-801.Search in Google Scholar

Stotzer ES, Lopes LB, Eckstein C, Moraes MCMM, Rodrigues DS, Bastianetto E: Impacto econômico das doenças parasitárias na pecuária. Revista Brasileira de Higiene e Sanidade Animal 2014, 8:198–221.Search in Google Scholar

Brito LG, Barbieri FS, Rocha RB, Santos APL, Silva RR, Ribeiro ES, Guerrero F, Foil L, Oliveira MCS: Pyrethroid and organophosphate pesticide resistance in field populations of horn fly in Brazil. Med Vet Entomol 2019, 33:121–130.Search in Google Scholar

Soutello RVG, Seno MCZ, Amarante AFT: Anthelmintic resistance in cattle nematodes in northwestern São Paulo State, Brazil. Vet Parasitol 2007, 148: 360–364.Search in Google Scholar

Utech KBW, Wharton RH, Kerr JD: Resistance to Boophilus microplus (Canestrini) in different breeds of cattle. Aust J Agric Res 1978, 29:885–895.Search in Google Scholar

Suarez VH, Busetti MR, Lorenzo RM: Comparative effects of nematode infection on Bos taurus and Bos indicus crossbred calves grazing on Argentina’s Western Pampas. Vet Parasitol 1995, 58:263–271.Search in Google Scholar

Gasbarre LC, Leighton EA, Sonstegard T: Role of the bovine immune system and genome in resistance to gastrointestinal nematodes. Vet Parasitol 2001, 98:51–64.Search in Google Scholar

Biegelmeyer P, Nizoli LQ, Cardoso FF, Dionello, NJL: Aspectos da resistência de bovinos ao carrapato Rhipicephalus (Boophilus) microplus. Archivos de zootecnia 2012, 61:1–11.Search in Google Scholar

Am arante AFT: Resistência genética a helmintos gastrintestinais. In: Simpósio da Sociedade Brasileira de Melhoramento Animal, 2004, Pirassununga–SP. Anais V Simpósio da Sociedade Brasileira de Melhoramento Animal, 2004, 1:10.Search in Google Scholar

Rivas MP, Teixeira ACB, Krepischi ACV: Epigenética: conceito, mecanismos e impacto em doenças humanas. Genética na Escola 2019, 14:14–25.Search in Google Scholar

Blomen VA, Boonstra J: Stable transmission of reversible modifications: maintenance of epigenetic information through the cell cycle. Cell and Mol Life Sci 2011, 68:27–44.Search in Google Scholar

Niciura SCM, Moraes CV, Cruvinel GG, Gainza YA, Albuquerque ACA, Santana RCM, Tholon P, Tizioto PC, Chagas ACS, Esteves SN, Benavides MV, Amarante AFT: Análise genômica da resistência ao monepantel e investigação epigenética em Haemonchus contortus. São Carlos: Embrapa Pecuária Sudeste; 2018, 5-14.Search in Google Scholar

Paiva JT, Resende MDV, Resende RT, Oliveira HR, Silva HT, Caetano GC, Lopes P S, Silva FF: Epigenética: mecanismos, herança e implicações no melhoramento animal. Archivos de zootecnia 2019, 68:304–311.Search in Google Scholar

Fantappie M: Epigenética e memória celular. Revista Carbono 2013, 3:1–5.Search in Google Scholar

Reis AP: Epigenética da asma: revisão. Arquivos de Asma, Alergia e Imunologia 2015, 3:13–18.Search in Google Scholar

Rashid, MH, Stevenson MA, Waenga S, Mirams G, Campbell AJD, Vaughan JL, Jabbar A: Comparison of McMaster and FECPAKG2 methods for counting nematode eggs in the faeces of alpacas. Parasites Vectors 2018, 11:1–4.Search in Google Scholar

Robert FHS, O’Sullivan PJ: Methods for eggs counts and larval cultures for Strongyles infecting the gastrointestinal tract of cattle. Aust J Agric Res 1950, 1:99–102.Search in Google Scholar

Keith R K. The differentiation of the infective larvae of some common nematode parasites of cattle. Aust J Zoo 1953, 1: 223–235.Search in Google Scholar

Ferreira ME, Grattapaglia D. Introdução ao uso de marcadores moleculares em análise genética. Brasília: Embrapa-Cenargen; 1998, 11-204.Search in Google Scholar

Wolf AV, Fuller JB, Goldman EJ, Mahony TD: New refractometric methods for determination of total proteins in serum and in urine. Clinical Chemistry 1962, 8:158–165.Search in Google Scholar

Strumia MM, Sample AB, Hart ED: An improved microhematocrit method. Am J Clin Pathol 1954, 24:1016–1024.Search in Google Scholar

S chalm OW, Carroll EJ. Veterinary hematology. In: Philadelphia: Lea & Febiger;1986, 1277.Search in Google Scholar

Cardoso CP, Silva BF, Trinca LA, Amarante AFT: Resistance against gastrointestinal nematodes in Crioulo Lageano and crossbred Angus cattle in southern Brazil. Vet Parasitol 2013, 192:183–191.Search in Google Scholar

Bassetto CC, Silva BF, Newlands GFJ, Smith WD, Amarante AFT: Protection of calves against Haemonchus placei and Haemonchus contortus after immunization with gut membrane proteins from H. contortus. Parasite Immunol 2011, 33:377–381.Search in Google Scholar

Ferreira DF. Sisvar: a Guide for its Bootstrap procedures in multiple comparisons. Ciênc Agrotec 2014, 38:109–112.Search in Google Scholar

Resende MDV: Selegen–Reml/Blup Sistema estatístico e seleção genética computadorizada via modelos lineares mistos. Colombo: Embrapa Florestas; 2007, 22-351.Search in Google Scholar

Ueno H, Gonçalves PC: Manual Para Diagnóstico das Helmintoses de Ruminantes. Japan International Cooperation Agency; 1998, 1-135.Search in Google Scholar

Bricarello PA, Zaros LG, Coutinho LL, Rocha RA, Kooyman FNJ, De Vries E, Gonçalves JRS, Lima LG, Pires AV, Amarante, AFT: Field study on nematode resistance in Nelore-breed cattle. Vet Parasitol 2007, 148:272–278.Search in Google Scholar

Soutello RVG, Condi GL, Paes F, Fonzar JF: Influência do Parasitismo e da Suplementação Proteica no Desenvolvimento Ponderal de Novilhos Mestiços Angus-Nelore e da Raça Guzerá. Ciências Agrárias e da Saúde 2002, 2:21–27.Search in Google Scholar

Oliveira MCS, Alencar MM, Chagas ACS, Giglioti R, Oliveira HN: Gastrointestinal nematode infection in beef cattle of different genetic groups in Brazil. Vet Parasitol 2009, 166:249–254.Search in Google Scholar

Leighton EA, Murrell KD, Gasbarre LC: Evidence for Genetic Control of nematode egg-shedding rates in calves. J Parasitol 1989, 75:498–504.Search in Google Scholar

Passafaro TL, Carrera JPB, Santos LL, Raidan FSS, Santos DCC, Cardoso EP, Leite RC, Toral FLB: Genetic analysis of resistance to ticks, gastrointestinal nematodes and Eimeria spp. in Nellore cattle. Vet Parasitol 2015, 210:224–234.Search in Google Scholar

Pimentel MN, Fonseca AH: Epidemiologia das helmintoses pulmonares e gastrintestinais de bezerros em região de baixada do Estado do Rio de Janeiro. Pesq Vet Bras 2002, 22:148–152.Search in Google Scholar

Barger IA: Genetic resistance of hosts and its influence on epidemiology. Vet Parasitol 1989, 32:21–35.Search in Google Scholar

Bishop SC, Bairden K, Mckellar QA, Park M, Stear MJ: Genetic parameters for faecal egg count following mixed, natural, predominantly Ostertagia circumcincta infection and relationships with live weight in young lambs. Anim Sci 1996, 63:423–428.Search in Google Scholar

Bisset SA, Vlassof A, Morris CA, Southey BR, Baker RL, Parker AGH: Heritability of and genetic correlations among fecal egg counts and productivity traits in Romney sheep. New Zealand J Agric Res 1992, 35:51–58.Search in Google Scholar

Eady SJ, Woolaston RR, Ponzoni RW, Lewer RP, Raadsma HW, Swan AA: Resistance to nematode parasites in Merino sheep: correlation with production traits. Aust J Agric Res 1998, 49:1201–1212.Search in Google Scholar

Bouix J, Krupinski J, Rezepecki R, Nowosad B, Skrzyzala I, Roborzynski M, Fudalewicz-Niemczyk W, Skalska M, Malczewski A, Gruber L. Genetic resistance to gastrointestinal n ematode parasites in Polish long-wool sheep. Int Parasitol 1998, 28:1797–1804.Search in Google Scholar

Albers GA, Gray GD, Piper LR. Barker JS, Le Jambre LF, Barger IA: The genetics of resistance and resilience to Haemonchus contortus in young merino sheep. Int J Parasitol 1987, 17:1355–1363.Search in Google Scholar

Pinheiro AC, Alves-Branco FPJ, Sapper MFM: Impacto econômico das parasitoses nos países do Mercosul. In: Seminário Brasileiro de Parasitologia Veterinária, 11, Salvador. Anais. Salvador, Colégio Brasileiro de Parasitologia Veterinária 1999, 59–60.Search in Google Scholar

Zocoller MC, Starke WA, Valério Filho WV: Ganho de peso em fêmeas da raça Guzerá tratadas com diferentes épocas de aplicação de anti-helmínticos. In: Seminário Brasileiro de Parasitologia Veterinária, 9., Campo Grande. Anais. Campo Grande: CBPV 1985, 124.Search in Google Scholar

Bianchin I, Honer MR, Nunes SG, Nascimento MA, Curvo JB, Costa FP: Epidemiologia dos nematódeos gastrintestinais em bovinos de corte nos cerrados e o controle estratégico no Brasil. Campo Grande: Embrapa Gado de Corte; 1993, 113.Search in Google Scholar

Neves MRM: Utilização de marcadores fenotípicos para caracterização de ovinos mestiços Santa Inês naturalmente infectados com nematóides gastrintestinais. Sobral: Embrapa Sudeste; 2010.Search in Google Scholar

Bisset SA, Morris CA: Feasibility and implications of breeding sheep for resilience to nematode challenge. Int J Parasitol 1996, 26:857–868.Search in Google Scholar

Basseto CC, Silva BF, Fernandes S, Amarante AFT: Contaminação da pastagem com larvas de nematoides gastrintestinais após o pastejo de ovelhas resistentes ou susceptíveis à verminose. Rev Bras Parasitol Vet 2009, 18:63–68.Search in Google Scholar

Soutello RVG, Rodrigues MGF, Gonçalves JA, Bello H JS, Pavan BE, Ramos ES: Global genomic methylation related to the degree of parasitism in cattle. Sci Rep, 2022, 12:18135.Search in Google Scholar

Araujo RN, Lima WS: Infecções helmínticas em um rebanho leiteiro na região Campo das Vertentes de Minas Gerais. Arq Bras Med Vet e Zootec 2005, 57: 186–196.Search in Google Scholar

Stromberg BE, Gasbarre LC, Waite A, Bechtol DT, Brown MS, Robinson NA, Olson EJ, Newcomb H: Cooperia punctata: effect on cattle productivity. Vet Parasitol 2012, 183: 284–291.Search in Google Scholar

Coles GC, Bauer C, Borgsteede FH, Geerts S, Klei TR, Taylor MA, Waller PJ: World association for the advancement of veterinary parasitology (WAAVP) methods for the detection of anthelmintic resistance in nematodes of veterinary importance. Vet Parasitol 1992, 44:35–44.Search in Google Scholar

O’Kelly JC, Post TB, Bryan RP: The influence of parasitic infestations on metabolism, puberty and first mating performance of heifers grazing in a tropical area. Anim Reprod Sci 1988, 16:177–189.Search in Google Scholar

Kaneko JJ, Harvey WJ, Brus LM: Bioquímica Clínica de Animais Domésticos. Academic Press, Cambridge, MA 1997.Search in Google Scholar

Amarante AFT: Controle de verminose ovina. Revista CFMV 2005, 34:19–30.Search in Google Scholar

Oliveira PA, Ruas JL, Riet-Correa F, Coelho ACB, Santos BL, Marcolongo-Pereira C, Sallis ESV, Schild AL, Oliveira PA, Ruas JL, RieT-Correa F, Coelho ACB, Santos BL, Marcolongo-Pereira C, Sallis ESV, Schild AL: Doenças parasitárias em bovinos e ovinos no sul do Brasil: frequência e estimativa de perdas econômicas. Pesq Vet Bras 2017, 37:797–801.Search in Google Scholar

Kanobana K, Ploeger HW, Vervelde L: Immune expulsion of the trichostrongylid Cooperia oncophora is associated with increased eosinophilia and mucosal IgA. Int J Parasitol 2002, 32:1389–1398.Search in Google Scholar

Cuquerella M, Gómez-Muñhoz MT, Carrera L, Fuente C, Alunda JM: Cross antigenicity among ovine trichotrongyloidea. Preliminary report. Vet Parasitology 1994, 53:243–251.Search in Google Scholar

Niciura SCM, Veríssimo CJ, Gromboni JGG, Rocha MIP, Mello SS, BarbosaCMP, Chiebao DP, Cardoso D, Silva GS, Otsuk IP, Pereira JR, Ambrosio LA, Nardon RF, Ueno TEH, Molento MB: F200Y polymorphism in the β-tubulin gene in field isolates of Haemonchus contortus and risk factors of sheep flock management practices related to anthelmintic resistance. Vet Parasitol 2012, 190:608–612.Search in Google Scholar

Wang L, Su, HZ, Guan LL, Liu JX: Short communication: Relationship of blood DNA methylation rate and milk performance in dairy cows. J Dairy Sci 2019, 102:5208–5211.Search in Google Scholar

Pires VS, Ganzella FAO, Minozzo, Castro LLD, Moncada ADB, Klassen G, Ramos EAS, Molento MB: Epigenetic regulation of SLC11a1 gene in horses infected with cyathostomins. Gene reports 2021, 25:101410.Search in Google Scholar

Jimenez-Sanz A, Quirino CR, Pacheco A, Costa RLD, Costa RLD, Beltrame RT, Rua MAS, Silva RMC, Madella-Oliveira AFM: Relação entre fatores associados às parasitoses gastrointestinais, desempenho e estado fisiológico de ovelhas Santa Inês. Agrotec 2016, 37:88–95.Search in Google Scholar

eISSN:
1820-7448
Sprache:
Englisch
Zeitrahmen der Veröffentlichung:
4 Hefte pro Jahr
Fachgebiete der Zeitschrift:
Medizin, Veterinärmedizin