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Genetic Variations of TAP1 Gene Exon 3 Affects Gene Expression and Escherichia coli F18 Resistance in Piglets

机译:TAP1基因外显子3的遗传变异影响仔猪的基因表达和大肠杆菌F18抗性

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摘要

Firstly, our research group identified Sutai pigs’ phenotypes that exhibited extreme resistance and susceptibility to the Escherichia coli F18 respectively, and then eight ETEC (Enterotoxigenic Escherichia coli) F18-resistant piglets and eight ETEC F18-sensitive piglets were selected. Then, the TAP1 (Transporter associated with antigen processing) mRNA relative expression levels were analyzed in 11 tissues of the resistant and susceptible phenotypes. Simultaneously, we detected the genetic variations in exon 3 of the TAP1 gene and evaluated the TAP1 mRNA expression levels among the different genotype pigs to study the effects of the genetic variation on gene expression, and the E. coli F18 resistance. The results revealed higher expression levels in the resistant genotypes than that in the susceptible genotypes in 11 tissues, with significant differences in the spleen, lymph node, lung, thymus, duodenum and jejunum. Furthermore, a G729A mutation was identified in the TAP1 gene exon 3, and this mutation deviates from Hardy-Weinberg equilibrium (p < 0.01). The TAP1 mRNA levels in GG genotype were significantly higher than that in the other two genotypes, with significant differences in the liver, lung, kidney, thymus, lymph node, duodenum and jejunum tissues. We speculated that high expression of the TAP1 gene might confer resistance against the E. coli F18, the G729A mutation had a significant effect on the mRNA expression, and individuals with the GG genotype possessed a stronger ability to resist the E. coli F18 infection.
机译:首先,我们的研究小组确定了苏泰猪分别对大肠杆菌F18表现出极强抗性和易感性的表型,然后选择了8株抗ETEC(肠毒素性大肠杆菌)F18的仔猪和8株对ETEC F18敏感的仔猪。然后,在耐药和易感表型的11个组织中分析了TAP1(与抗原加工相关的转运蛋白)mRNA相对表达水平。同时,我们检测了TAP1基因第3外显子的遗传变异,并评估了不同基因型猪之间的TAP1 mRNA表达水平,以研究遗传变异对基因表达和大肠杆菌F18抗性的影响。结果显示,在11个组织中,抗性基因型的表达水平高于易感基因型的表达水平,脾脏,淋巴结,肺,胸腺,十二指肠和空肠有显着差异。此外,在TAP1基因外显子3中鉴定出G729A突变,并且该突变偏离了Hardy-Weinberg平衡(p <0.01)。 GG基因型中的TAP1 mRNA水平显着高于其他两种基因型,在肝,肺,肾,胸腺,淋巴结,十二指肠和空肠组织中差异显着。我们推测,TAP1基因的高表达可能赋予了对大肠杆菌F18的抗性,G729A突变对mRNA表达有显着影响,并且具有GG基因型的个体具有更强的抵抗大肠杆菌F18感染的能力。

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