Suppr超能文献

马立克氏病抗性和易感近交系鸡中 MDV 诱导的转录组时程变化。

Temporal transcriptome changes induced by MDV in Marek's disease-resistant and -susceptible inbred chickens.

机构信息

Department of Animal & Avian Sciences, University of Maryland, College Park, MD 20742, USA.

出版信息

BMC Genomics. 2011 Oct 12;12:501. doi: 10.1186/1471-2164-12-501.

Abstract

BACKGROUND

Marek's disease (MD) is a lymphoproliferative disease in chickens caused by Marek's disease virus (MDV) and characterized by T cell lymphoma and infiltration of lymphoid cells into various organs such as liver, spleen, peripheral nerves and muscle. Resistance to MD and disease risk have long been thought to be influenced both by genetic and environmental factors, the combination of which contributes to the observed outcome in an individual. We hypothesize that after MDV infection, genes related to MD-resistance or -susceptibility may exhibit different trends in transcriptional activity in chicken lines having a varying degree of resistance to MD.

RESULTS

In order to study the mechanisms of resistance and susceptibility to MD, we performed genome-wide temporal expression analysis in spleen tissues from MD-resistant line 63, susceptible line 72 and recombinant congenic strain M (RCS-M) that has a phenotype intermediate between lines 63 and 72 after MDV infection. Three time points of the MDV life cycle in chicken were selected for study: 5 days post infection (dpi), 10dpi and 21dpi, representing the early cytolytic, latent and late cytolytic stages, respectively. We observed similar gene expression profiles at the three time points in line 63 and RCS-M chickens that are both different from line 72. Pathway analysis using Ingenuity Pathway Analysis (IPA) showed that MDV can broadly influence the chickens irrespective of whether they are resistant or susceptible to MD. However, some pathways like cardiac arrhythmia and cardiovascular disease were found to be affected only in line 72; while some networks related to cell-mediated immune response and antigen presentation were enriched only in line 63 and RCS-M. We identified 78 and 30 candidate genes associated with MD resistance, at 10 and 21dpi respectively, by considering genes having the same trend of expression change after MDV infection in lines 63 and RCS-M. On the other hand, by considering genes with the same trend of expression change after MDV infection in lines 72 and RCS-M, we identified 78 and 43 genes at 10 and 21dpi, respectively, which may be associated with MD-susceptibility.

CONCLUSIONS

By testing temporal transcriptome changes using three representative chicken lines with different resistance to MD, we identified 108 candidate genes for MD-resistance and 121 candidate genes for MD-susceptibility over the three time points. Genes included in our resistance or susceptibility genes lists that are also involved in more than 5 biofunctions, such as CD8α, IL8, USP18, and CTLA4, are considered to be important genes involved in MD-resistance or -susceptibility. We were also able to identify several biofunctions related with immune response that we believe play an important role in MD-resistance.

摘要

背景

马立克氏病(MD)是一种由马立克氏病病毒(MDV)引起的鸡淋巴组织增生性疾病,其特征是 T 细胞淋巴瘤和淋巴细胞浸润到各种器官,如肝、脾、外周神经和肌肉。对 MD 的抗性和疾病风险长期以来一直被认为受到遗传和环境因素的影响,这些因素的组合导致了个体的观察结果。我们假设,在 MDV 感染后,与 MD 抗性或敏感性相关的基因在对 MD 具有不同抗性的鸡系中可能表现出不同的转录活性趋势。

结果

为了研究对 MD 的抗性和敏感性机制,我们对 MD 抗性系 63、易感系 72 和重组近交系 M(RCS-M)的脾脏组织进行了全基因组时间表达分析,后两者在 MDV 感染后表现出介于系 63 和 72 之间的表型。选择 MDV 生命周期中的三个时间点进行研究:感染后 5 天(dpi)、10dpi 和 21dpi,分别代表早期细胞溶解、潜伏和晚期细胞溶解阶段。我们观察到 63 系和 RCS-M 鸡在三个时间点的基因表达谱相似,与 72 系不同。使用 IPA(Ingenuity Pathway Analysis)进行途径分析表明,MDV 可以广泛影响鸡,无论它们对 MD 是否有抗性或敏感性。然而,一些途径,如心律失常和心血管疾病,仅在 72 系中受到影响;而一些与细胞介导的免疫反应和抗原呈递相关的网络仅在 63 系和 RCS-M 中富集。我们通过考虑在 63 系和 RCS-M 中感染 MDV 后具有相同表达变化趋势的基因,在 10 和 21dpi 分别鉴定出 78 个和 30 个与 MD 抗性相关的候选基因。另一方面,通过考虑在 72 系和 RCS-M 中感染 MDV 后具有相同表达变化趋势的基因,在 10 和 21dpi 分别鉴定出 78 个和 43 个可能与 MD 敏感性相关的候选基因。

结论

通过使用三种对 MD 具有不同抗性的代表性鸡系测试时间转录组变化,我们在三个时间点分别鉴定出 108 个与 MD 抗性相关的候选基因和 121 个与 MD 敏感性相关的候选基因。我们的抗性或敏感性基因列表中包含的涉及超过 5 个生物功能的基因,如 CD8α、IL8、USP18 和 CTLA4,被认为是与 MD 抗性或敏感性相关的重要基因。我们还能够确定与免疫反应相关的几个生物功能,我们认为这些功能在 MD 抗性中起着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ac4/3269463/635ecec48a62/1471-2164-12-501-1.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验