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首页> 外文期刊>Physiological genomics >PBMC transcriptomic responses to primary and secondary vaccination differ due to divergent lean growth and antibody titers in a pig model
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PBMC transcriptomic responses to primary and secondary vaccination differ due to divergent lean growth and antibody titers in a pig model

机译:PBMC对一级和二级疫苗接种的转录组反应因猪模型中不同的瘦肉生长和抗体效价而异

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摘要

The genetic relationship between immune responsiveness and performance is not well understood, but a major topic of the evolution of resource allocation and of relevance in human medicine and livestock breeding, for instance. This study aims to show differences of transcript abundance changes during the time intervals before and after two tetanus toxoid (TT) vaccinations in domestic pigs differing in lean growth (LG) and anti-TT-antibody titers (AB) parameters of performance and immunocompetence. During response to the first vaccination all animals had a general decrease in transcript abundances related to various functional pathways as measured by comparative Affymetrix microarray hybridization and Ingenuity Pathway analyses. Low-AB phenotypes had predominantly decreased immune response transcripts. Combined phenotypes high-AB/high-LG had decreased transcripts related to growth factor signaling pathways. However, during the interval after the booster vaccination, high-LG and high-AB animals responded exclusively with increased immune transcripts, such as B-cell receptor signaling and cellular immune response pathways. In addition, high-LG and low-AB animals had predominantly increased transcripts of several cellular immune response pathways. Conversely, low-LG and high-AB animals had few elevated immune transcripts and decreased transcripts related to only two nonimmune-specific pathways. In response to booster vaccination high-LG phenotypes revealed enriched transcripts related to several different immune response pathways, regardless of AB phenotype. Different from the expected impact of AB titers, divergent AB phenotypes did not reflect considerable differences between immune transcripts. However, highly significant differences observed among divergent LG phenotypes suggest the compatibility of high performance and high vaccine responses.
机译:免疫反应性和性能之间的遗传关系尚未被很好地理解,但是例如,资源分配的演变以及与人类医学和牲畜育种相关的一个主要主题。这项研究旨在显示在两次破伤风类毒素(TT)疫苗接种前后,不同时间的瘦肉生长(LG)和抗TT抗体效价(AB)性能和免疫能力参数不同的时间间隔内,转录物丰度变化的差异。在对首次疫苗接种的反应期间,通过比较Affymetrix微阵列杂交和Ingenuity Pathway分析测定,所有动物的与各种功能途径相关的转录本丰度普遍下降。低AB型表型主要降低了免疫应答转录本。高AB /高LG的联合表型具有与生长因子信号通路相关的转录物减少。但是,在加强疫苗接种后的时间间隔内,高LG和高AB动物只对增加的免疫转录本有反应,例如B细胞受体信号传导和细胞免疫应答途径。另外,高LG和低AB的动物主要具有几种细胞免疫应答途径的转录本。相反,低LG和高AB的动物只有很少的两种非免疫特异性途径,其免疫转录本升高,而转录本降低。响应加强疫苗接种,无论LG表型如何,高LG表型均显示与几种不同的免疫反应途径相关的富集转录本。与AB效价的预期影响不同,不同的AB表型没有反映免疫转录本之间的显着差异。但是,在不同的LG表型之间观察到的高度显着差异表明,高性能和高疫苗反应性之间具有兼容性。

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