首页> 外文期刊>Journal of dairy science >Antibody Response Against Three Widespread Bovine Viruses Is Not Impaired In Holstein Cattle Carrying Bovine Leukocyte Antigen Drb3.2 Alleles Associated With Bovine Leukemia Virus Resistance
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Antibody Response Against Three Widespread Bovine Viruses Is Not Impaired In Holstein Cattle Carrying Bovine Leukocyte Antigen Drb3.2 Alleles Associated With Bovine Leukemia Virus Resistance

机译:在携带牛白细胞抗原Drb3.2等位基因与牛白血病病毒抗性相关的荷斯坦牛中,对三种广谱牛病毒的抗体应答没有受到损害

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Due to the wide dissemination of bovine leukemia virus (BLV) infection among dairy cattle, control and eradication programs based on serological detection of infected cattle and subsequent culling face a major economic task. In Argentina, genetic selection of cattle carrying alleles of the bovine leukocyte antigen (BoLA) DRB3.2 gene associated with BLV-infection resistance, like *0902, emerges as the best additional tool toward controlling virus spread. A potential risk in expanding or segregating BoLA selected populations of cattle is that it might increase susceptibility to other common viruses. Special concern raises the strong association found between low proviral load and low antibody titer against major BLV structural proteins. This phenomenon might depend on host genetic factors influencing other viruses requiring, unlike BLV, strong and long-lasting humoral immune response to prevent infection. In this study, we demonstrate that there is no association among neutralizing antibody titers against foot and mouth disease virus, bovine viral diarrhea virus, or bovine herpesvirus type 1 and polymorphism of the BoLA DRB3.2 gene. Conversely, there is strong association between BoLA DRB3.2~*0902 and low antibody titers against 2 BLV structural proteins-env gp51 and gag p24-to date, the best BLV resistance marker. There is also significant association between low antibody titers against gp51 and p24 and BoLA DRB3.2~*1701 and low antibody titers against p24 and BoLA DRB3.2~*1101 or 02. Our data suggest that increasing BoLA-selected BLV-resistant cattle or segregating BoLA-associated alleles to BLV susceptibility would not affect the resistance or the predisposition to bovine viral diarrhea virus, bovine herpesvirus type 1, or foot and mouth disease virus infection.
机译:由于奶牛中牛白血病病毒(BLV)感染的广泛传播,基于对感染牛进行血清学检测和随后的剔除的控制和根除计划面临着重大的经济任务。在阿根廷,携带与BLV感染抗性相关的牛白细胞抗原(BoLA)DRB3.2等位基因的牛的遗传选择成为控制病毒传播的最佳附加工具。在BoLA选定的牛群中进行扩展或隔离的潜在风险是,它可能会增加对其他常见病毒的易感性。特别引起关注的是,在低的前病毒载量和针对主要BLV结构蛋白的抗体效价低之间存在着很强的联系。这种现象可能取决于影响其他病毒的宿主遗传因素,与BLV不同,该病毒需要强大而持久的体液免疫反应来预防感染。在这项研究中,我们证明针对口蹄疫病毒,牛病毒性腹泻病毒或1型牛疱疹病毒的中和抗体滴度与BoLA DRB3.2基因的多态性之间没有关联。相反,迄今为止,BoLA DRB3.2〜* 0902与针对2种BLV结构蛋白env gp51和gag p24的低抗体滴度之间存在强关联,而BLV结构蛋白是迄今为止最好的BLV抗性标记。针对gp51和p24和BoLA DRB3.2〜* 1701的低抗体滴度与针对p24和BoLA DRB3.2〜* 1101或02的低抗体滴度之间也存在显着关联。我们的数据表明,对BoLA选择的抗BLV的牛数量增加或将与BoLA相关的等位基因与BLV易感性分离不会影响对牛病毒性腹泻病毒,1型牛疱疹病毒或手足口病病毒感染的抵抗力或易感性。

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