首页> 美国卫生研究院文献>Journal of Genomics >Genetic Diversity of Bovine Major Histocompatibility Complex Class II DRB3 locus in cattle breeds from Asia compared to those from Africa and America
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Genetic Diversity of Bovine Major Histocompatibility Complex Class II DRB3 locus in cattle breeds from Asia compared to those from Africa and America

机译:与来自非洲和美洲的牛相比亚洲主要牛品种中牛主要组织相容性复合体II类DRB3基因座的遗传多样性

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摘要

Genetic polymorphisms and diversity of BoLA-DRB3.2 are essential because of DRB3 gene's function in innate immunity and its association with infectious diseases resistance or tolerance in cattle. The present study was aimed at assessing the level of genetic diversity of DRB3 in the exon 2 (BoLA-DRB3.2) region in African, American and Asian cattle breeds. Amplification of exon 2 in 174 cattle revealed 15 haplotypes. The breeds with the highest number of haplotypes were Brangus (10), Sokoto Gudali (10) and Dajal (9), while the lowest number of haplotypes were found in Holstein and Sahiwal with 4 haplotypes each. Medium Joining network obtained from haplotypic data showed that all haplotypes condensed around a centric area and each sequence (except in H-3, H-51 and H-106) representing almost a specific haplotype. The BoLA-DRB3.2 sequence analyses revealed a non-significant higher rate of non-synonymous (dN) compared to synonymous substitutions (dS). The ratio of dN/dS substitution across the breeds were observed to be greater than one suggesting that variation at the antigen-binding sites is under positive selection; thus increasing the chances of these breeds to respond to wide array of pathogenic attacks. An analysis of molecular variance revealed that 94.01 and 5.99% of the genetic variation was attributable to differences within and among populations, respectively. Generally, results obtained suggest that within breed genetic variation across breeds is higher than between breeds. This genetic information will be important for investigating the relationship between BoLADRB3.2 and diseases in various cattle breeds studied with attendant implication on designing breeding programs that will aim at selecting individual cattle that carry resistant alleles.
机译:BoLA-DRB3.2的遗传多态性和多样性至关重要,因为DRB3基因在先天免疫中具有功能,并且与牛的传染病抗性或耐受性相关。本研究旨在评估非洲,美洲和亚洲牛品种第2外显子(BoLA-DRB3.2)地区DRB3的遗传多样性水平。 174头牛的外显子2扩增显示15个单倍型。单倍型数量最多的品种是Brangus(10),Sokoto Gudali(10)和Dajal(9),而Holstein和Sahiwal的单倍类型数量最少,分别为4种单倍型。从单倍型数据获得的中等连接网络显示,所有单倍型都集中在一个中心区域附近,并且每个序列(H-3,H-51和H-106除外)几乎代表了一个特定的单倍型。 BoLA-DRB3.2序列分析显示,与同义取代(dS)相比,非同义(dN)的发生率更高。整个品种中dN / dS取代的比率大于1,这表明抗原结合位点的变异处于正选择之下。因此增加了这些品种对多种病原体攻击作出反应的机会。分子变异分析表明,遗传变异的94.01和5.99%分别归因于种群内部和种群之间的差异。通常,获得的结果表明,在品种内,不同品种之间的遗传变异高于不同品种之间的遗传变异。这些遗传信息对于研究BoLADRB3.2与各种牛品种的疾病之间的关系非常重要,并伴随着对设计育种计划的意义,该育种计划旨在选择携带抗性等位基因的个体牛。

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