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首页> 外文期刊>Veterinary Immunology and Immunopathology >Functional polymorphisms in Toll-like receptor genes for innate immunity in farm animals.
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Functional polymorphisms in Toll-like receptor genes for innate immunity in farm animals.

机译:Toll样受体基因中的功能多态性,可用于农场动物的先天免疫。

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摘要

The exploitation of the genetic factors affecting the health status of farm animals represents an alternative approach to controlling the diseases caused by microbial pathogens. The determination of innate immunity based on the genotype of the germplasm cells is a constraint for specificity but becomes an advantage in breeding schemes. The structural deviations among Toll-like receptors (TLRs), as the most frequently studied innate immunity components, have been documented at all levels, i.e., interspecific, inter- and intravarietal, in the main farm species. The current computational methods facilitate the prediction of the functional consequences of the observed mutations. Subsequently, these predictions can be verified through immunological responsiveness and population-wide association studies. The frequency and haplotype grouping of individual polymorphisms are used to track the origin and selection coefficient as independent indicators of functional changes. The Toll-like receptor variants associated with mastitis and mycobacterial infection have been identified in cattle, consequently, the targeting of these proteins in breeding could contribute to disease control. The range of infections affected by TLR polymorphisms suggests that the improvement of innate resistance is feasible in more species. Thus, the traditional breeds and wild populations should be regarded as the resources of genetic variability accessible for these purposes.
机译:利用影响农场动物健康状况的遗传因素代表了控制微生物病原体引起的疾病的另一种方法。基于种质细胞基因型的先天免疫力的确定是特异性的限制,但在育种方案中成为优势。作为最常研究的先天免疫成分的Toll样受体(TLR)之间的结构变异已在主要农场物种的所有水平(即种间,种间和种内)得到记录。当前的计算方法有助于预测所观察到的突变的功能后果。随后,这些预测可以通过免疫应答和整个人群的关联研究得到证实。各个多态性的频率和单倍型分组用于追踪起源和选择系数,作为功能变化的独立指标。与牛乳腺炎和分枝杆菌感染有关的Toll样受体变体已经在牛中被鉴定出来,因此,在育种中靶向这些蛋白质可能有助于疾病控制。受TLR多态性影响的感染范围表明,先天抗性的改善在更多物种中是可行的。因此,应将传统品种和野生种群视为为此目的可获取的遗传变异资源。

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