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Harnessing longitudinal information to identify genetic variation in tolerance of pigs to Porcine Reproductive and Respiratory Syndrome virus infection

机译:利用纵向信息确定猪对猪繁殖与呼吸综合征病毒感染的耐受性的遗传变异

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摘要

BackgroundHigh resistance (the ability of the host to reduce pathogen load) and tolerance (the ability to maintain high performance at a given pathogen load) are two desirable host traits for producing animals that are resilient to infections. For Porcine Reproductive and Respiratory Syndrome (PRRS), one of the most devastating swine diseases worldwide, studies have identified substantial genetic variation in resistance of pigs, but evidence for genetic variation in tolerance has so far been inconclusive. Resistance and tolerance are usually considered as static traits. In this study, we used longitudinal viremia measurements of PRRS virus infected pigs to define discrete stages of infection based on viremia profile characteristics. These were used to investigate host genetic effects on viral load (VL) and growth at different stages of infection, to quantify genetic variation in tolerance at these stages and throughout the entire 42-day observation period, and to assess whether the single nucleotide polymorphism (SNP) WUR10000125 (WUR) with known large effects on resistance confers significant differences in tolerance.
机译:背景高抗性(宿主降低病原体负荷的能力)和耐受性(在给定的病原体负荷下保持高性能的能力)是生产对感染具有抵抗力的动物的两个理想的宿主特性。对于全球范围内最具破坏力的猪疾病之一-猪繁殖与呼吸综合症(PRRS),研究已经确定了猪抗药性的显着遗传变异,但迄今为止,耐受性遗传变异的证据尚无定论。抗性和耐受性通常被视为静态特征。在这项研究中,我们使用了PRRS病毒感染的猪的纵向病毒血症测量结果,以根据病毒血症的特征确定了离散的感染阶段。这些被用于调查宿主在感染的不同阶段对病毒载量(VL)和生长的遗传效应,以量化在这些阶段以及整个42天观察期耐受性的遗传变异,并评估单核苷酸多态性( SNP)WUR10000125(WUR)具有已知的抗性大影响,可赋予公差显着差异。

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