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新型分析哈氏腺转录组对两种近交系鸡新城疫病毒的反应。

Novel analysis of the Harderian gland transcriptome response to Newcastle disease virus in two inbred chicken lines.

机构信息

Department of Animal Science, Iowa State University, Ames, Iowa, USA.

Department of Population Health and Reproduction, School of Veterinary Medicine, University of California, Davis, California, USA.

出版信息

Sci Rep. 2018 Apr 26;8(1):6558. doi: 10.1038/s41598-018-24830-0.

Abstract

Behind each eye of the chicken resides a unique lymph tissue, the Harderian gland, for which RNA sequencing (RNA-seq) analysis is novel. We characterized the response of this tissue to Newcastle disease virus (NDV) in two inbred lines with different susceptibility to NDV across three time points. Three-week-old relatively resistant (Fayoumi) and relatively susceptible (Leghorn) birds were inoculated with a high-titered (10EID) La Sota strain of NDV via an oculonasal route. At 2, 6, and 10 days post infection (dpi) Harderian glands were collected and analyzed via RNA-seq. The Fayoumi had significantly more detectable viral transcripts in the Harderian gland at 2 dpi than the Leghorn, but cleared the virus by 6 dpi. At all three time points, few genes were declared differentially expressed (DE) between the challenged and nonchallenged birds, except for the Leghorns at 6 dpi, and these DE genes were predicted to activate an adaptive immune response. Relative to the Leghorn, the Fayoumi was predicted to activate more immune pathways in both challenged and nonchallenged birds suggesting a more elevated immune system in the Fayoumis under homeostatic conditions. Overall, this study helped characterize the function of this important tissue and its response to NDV.

摘要

在鸡的每只眼睛后面都有一个独特的淋巴组织,即哈德腺,对其进行 RNA 测序 (RNA-seq) 分析是新颖的。我们在两个具有不同对新城疫病毒 (NDV) 易感性的近交系中,在三个时间点对该组织对 NDV 的反应进行了表征。将 3 周龄的相对抗性(法尤米)和相对敏感性(来航鸡)鸟类通过眼鼻途径用高滴度(10EID)的 La Sota 株 NDV 接种。在感染后 2、6 和 10 天(dpi)收集哈德腺并通过 RNA-seq 进行分析。在 2dpi 时,法尤米的哈德腺中可检测到的病毒转录本明显多于来航鸡,但在 6dpi 时清除了病毒。在所有三个时间点,除了 6dpi 的来航鸡之外,受挑战和未受挑战的鸟类之间很少有基因被宣布为差异表达 (DE),这些 DE 基因被预测会激活适应性免疫反应。与来航鸡相比,法尤米在受挑战和未受挑战的鸟类中被预测会激活更多的免疫途径,这表明在法尤米中,在稳态条件下免疫系统更为活跃。总体而言,这项研究有助于表征该重要组织的功能及其对 NDV 的反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f69f/5920083/95f9697230fd/41598_2018_24830_Fig1_HTML.jpg

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