Literature DB >> 18573126

Association of BLV infection profiles with alleles of the BoLA-DRB3.2 gene.

M A Juliarena1, M Poli, L Sala, C Ceriani, S Gutierrez, G Dolcini, E M Rodríguez, B Mariño, C Rodríguez-Dubra, E N Esteban.   

Abstract

Bovine leukaemia virus (BLV) causes lymphosarcoma and persistent lymphocytosis (PL). Some MHC class II gene polymorphisms have been associated with resistance and susceptibility to the development of lymphosarcoma and PL, as well as with a reduced number of circulating BLV-infected lymphocytes. Previously, 230 BLV-infected Holstein cattle were classified into two infection profiles characterized by low and high proviral loads (LPL and HPL respectively). Here, the influence of the polymorphism at the BoLA-DRB3.2* gene of these animals was examined. After genotyping, the association between the BoLA-DRB3.2* alleles and the BLV infection profile was determined as the odds ratio (OR). Two subtypes of allele *11 were identified (ISAG*0901 and *0902). Allele ISAG*0902 showed a stronger association with the LPL profile (OR = 8.24; P < 0.0001) than allele *11 itself (OR = 5.82; P < 0.0001). Allele ISAG*1701 (*12) also showed significant association with the LPL profile (OR = 3.46; P < 0.0055). Only one allele, ISAG*1501 or 03 (*16), showed significant association with HPL (OR = 0.36; P < 0.0005). The DRB3.2* alleles were assigned to three categories: resistant (R), susceptible (S) and neutral (N). Based on their DRB3 genotypes, cattle were classified as homozygous or heterozygous. The RR and RN genotypes were associated with the LPL profile, while the SS and NS genotypes were associated with the HPL profile. The RS genotype could not be associated with any particular profile. Our results show that allele ISAG*0902 appears to be the best BLV resistance marker in Holstein cattle.

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Year:  2008        PMID: 18573126     DOI: 10.1111/j.1365-2052.2008.01750.x

Source DB:  PubMed          Journal:  Anim Genet        ISSN: 0268-9146            Impact factor:   3.169


  28 in total

1.  Association between BoLA-DRB3 and somatic cell count in Holstein cattle from Argentina.

Authors:  L R Baltian; M V Ripoli; S Sanfilippo; S N Takeshima; Y Aida; G Giovambattista
Journal:  Mol Biol Rep       Date:  2012-04-25       Impact factor: 2.316

2.  Microarray analysis of differential gene expression profiles in blood cells of naturally BLV-infected and uninfected Holstein-Friesian cows.

Authors:  P Brym; S Kamiński
Journal:  Mol Biol Rep       Date:  2016-11-03       Impact factor: 2.316

3.  Identification of splice variants, targeted microRNAs and functional single nucleotide polymorphisms of the BOLA-DQA2 gene in dairy cattle.

Authors:  Qinlei Hou; Jinming Huang; Zhihua Ju; Qiuling Li; Liming Li; Changfa Wang; Tao Sun; Lingling Wang; Minghai Hou; Suqin Hang; Jifeng Zhong
Journal:  DNA Cell Biol       Date:  2011-11-15       Impact factor: 3.311

4.  Cytokine TNF-α and its receptors TNFRI and TNFRII play a key role in the in vitro proliferative response of BLV infected animals.

Authors:  Pamela Anahí Lendez; Lucía Martinez-Cuesta; María Victoria Nieto Farias; Guillermina Laura Dolcini; María Carolina Ceriani
Journal:  Vet Res Commun       Date:  2021-08-27       Impact factor: 2.459

5.  Relationship of persistent lymphocytosis, antibody titers, and proviral load with expression of interleukin-12, interferon-γ, interleukin-2, interleukin-4, interleukin-10, and transforming growth factor-β in cows infected with bovine leukemia virus from a high-prevalence dairy complex.

Authors:  Ernesto Marin-Flamand; Diana Michele Araiza-Hernandez; Alejandro Vargas-Ruiz; Ignacio Carlos Rangel-Rodríguez; Lilia A González-Tapia; Hugo Ramírez-Álvarez; Ruperto Javier Hernández-Balderas; Lucía Angélica García-Camacho
Journal:  Can J Vet Res       Date:  2022-10       Impact factor: 0.897

Review 6.  Preventive and therapeutic strategies for bovine leukemia virus: lessons for HTLV.

Authors:  Sabrina M Rodríguez; Arnaud Florins; Nicolas Gillet; Alix de Brogniez; María Teresa Sánchez-Alcaraz; Mathieu Boxus; Fanny Boulanger; Gerónimo Gutiérrez; Karina Trono; Irene Alvarez; Lucas Vagnoni; Luc Willems
Journal:  Viruses       Date:  2011-07-19       Impact factor: 5.048

7.  Association Between BoLA-DRB3.2 Polymorphism and Bovine Papillomavirus Infection for Bladder Tumor Risk in Podolica Cattle.

Authors:  Maria Longeri; Valeria Russo; Maria Giuseppina Strillacci; Antonella Perillo; Michela Carisetti; Maria Cristina Cozzi; Benedetto Neola; Sante Roperto
Journal:  Front Vet Sci       Date:  2021-06-09

8.  The major histocompatibility complex in bovines: a review.

Authors:  Jyotsna Dhingra Behl; N K Verma; Neha Tyagi; Priyanka Mishra; Rahul Behl; B K Joshi
Journal:  ISRN Vet Sci       Date:  2012-05-28

9.  The complete genomic sequence of an in vivo low replicating BLV strain.

Authors:  Syamalima Dube; Lynn Abbott; Dipak K Dube; Guillermina Dolcini; Silvina Gutierrez; Carolina Ceriani; Marcela Juliarena; Jorge Ferrer; Raisa Perzova; Bernard J Poiesz
Journal:  Virol J       Date:  2009-08-03       Impact factor: 4.099

10.  Massive depletion of bovine leukemia virus proviral clones located in genomic transcriptionally active sites during primary infection.

Authors:  Nicolas A Gillet; Gerónimo Gutiérrez; Sabrina M Rodriguez; Alix de Brogniez; Nathalie Renotte; Irene Alvarez; Karina Trono; Luc Willems
Journal:  PLoS Pathog       Date:  2013-10-03       Impact factor: 6.823

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