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利用等位基因特异性表达和肉鸡与蛋鸡中的差异表达比较和对比马立克氏病病毒感染后基因和生物途径的反应。

Comparison and contrast of genes and biological pathways responding to Marek's disease virus infection using allele-specific expression and differential expression in broiler and layer chickens.

机构信息

Department of Animal Science, Purdue University, West Lafayette, IN 47907, USA.

出版信息

BMC Genomics. 2013 Jan 30;14:64. doi: 10.1186/1471-2164-14-64.

Abstract

BACKGROUND

Marek's disease (MD) is a commercially important neoplastic disease of chickens caused by the Marek's disease virus (MDV), a naturally occurring oncogenic alphaherpesvirus. Enhancing MD genetic resistance is desirable to augment current vaccines and other MD control measures. High throughput sequencing was used to profile splenic transcriptomes from individual F1 progeny infected with MDV at 4 days of age from both outbred broilers (meat-type) and inbred layer (egg-type) chicken lines that differed in MD genetic resistance. The resulting information was used to identify SNPs, genes, and biological pathways exhibiting allele-specific expression (ASE) in response to MDV infection in each type of chicken. In addition, we compared and contrasted the results of pathway analyses (ASE and differential expression (DE)) between chicken types to help inform on the biological response to MDV infection.

RESULTS

With 7 individuals per line and treatment group providing high power, we identified 6,132 single nucleotide polymorphisms (SNPs) in 4,768 genes and 4,528 SNPs in 3,718 genes in broilers and layers, respectively, that exhibited ASE in response to MDV infection. Furthermore, 548 and 434 genes in broilers and layers, respectively, were found to show DE following MDV infection. Comparing the datasets, only 72 SNPs and 850 genes for ASE and 20 genes for DE were common between the two bird types. Although the chicken types used in this study were genetically different, at the pathway level, both TLR receptor and JAK/STAT signaling pathways were enriched as well as exhibiting a high proportion of ASE genes, especially at the beginning of both above mentioned regulatory pathways.

CONCLUSIONS

RNA sequencing with adequate biological replicates is a powerful approach to identify high confidence SNPs, genes, and pathways that are associated with transcriptional response to MDV infection. In addition, the SNPs exhibiting ASE in response to MDV infection provide a strong foundation for determining the extent to which variation in expression influences MD incidence plus yield genetic markers for genomic selection. However, given the paucity of overlap among ASE SNP sets (broilers vs. layers), it is likely that separate screens need to be incorporated for each population. Finally, comparison of gene lists obtained between these two diverse chicken types indicate the TLR and JAK/STAT signaling are conserved when responding to MDV infection and may be altered by selection of genes exhibiting ASE found at the start of each pathway.

摘要

背景

马立克氏病(MD)是一种由马立克氏病病毒(MDV)引起的鸡的重要肿瘤性疾病,MDV 是一种自然发生的致癌性α疱疹病毒。增强 MD 的遗传抗性是增强当前疫苗和其他 MD 控制措施的理想选择。高通量测序用于分析来自 4 日龄感染 MDV 的 F1 后代的脾脏转录组,这些 F1 后代来自在 MD 遗传抗性方面存在差异的外种肉鸡(肉用型)和近交层鸡(蛋用型)品系。所得信息用于鉴定 SNP、基因和生物途径,这些 SNP、基因和生物途径在 MDV 感染时表现出等位基因特异性表达(ASE)。此外,我们比较和对比了鸡种之间通路分析(ASE 和差异表达(DE))的结果,以帮助了解对 MDV 感染的生物学反应。

结果

每条线和处理组有 7 个个体,提供了很高的功率,我们在肉鸡和层鸡中分别鉴定出 4768 个基因中的 6132 个单核苷酸多态性(SNP)和 3718 个基因中的 4528 个 SNP,这些 SNP 对 MDV 感染有 ASE 反应。此外,肉鸡和层鸡分别有 548 和 434 个基因在 MDV 感染后表现出 DE。比较数据集,只有 72 个 SNP 和 850 个基因用于 ASE 和 20 个基因用于 DE 在两种鸟类类型之间是共同的。尽管本研究中使用的鸡种在遗传上有所不同,但在通路水平上,TLR 受体和 JAK/STAT 信号通路均被富集,并且表现出高比例的 ASE 基因,尤其是在上述两个调节通路的开始时。

结论

使用足够的生物学重复进行 RNA 测序是一种强大的方法,可以鉴定与 MDV 感染的转录反应相关的高可信度 SNP、基因和途径。此外,对 MDV 感染有 ASE 反应的 SNP 为确定表达变化对 MD 发病率的影响程度以及为基因组选择提供遗传标记提供了坚实的基础。然而,鉴于 ASE SNP 集(肉鸡与层鸡)之间的重叠很少,很可能需要为每个群体分别纳入单独的筛选。最后,对这两种不同鸡种之间获得的基因列表进行比较表明,当对 MDV 感染做出反应时,TLR 和 JAK/STAT 信号通路是保守的,并且可能会因起始于每个通路的 ASE 基因的选择而改变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c13e/3599046/add8cf08e68b/1471-2164-14-64-1.jpg

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