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感染捻转血矛线虫和无特定病原绵羊的皱胃转录组对其的差异反应。

Differential responses of abomasal transcriptome to Haemonchus contortus infection between Haemonchus-selected and Trichostrongylus-selected merino sheep.

机构信息

College of Life Science, Hubei Key Laboratory of Edible Wild Plants Conservation & Utilization, Huangshi Biomedicine Industry and Technology Research Institute Company Limited, Hubei Normal University, Huangshi, Hubei 435002, China.

College of Life Science, Hubei Key Laboratory of Edible Wild Plants Conservation & Utilization, Huangshi Biomedicine Industry and Technology Research Institute Company Limited, Hubei Normal University, Huangshi, Hubei 435002, China; International Medical School, Hebei Foreign Studies University, Shijiazhuang, Hebei 050096, China.

出版信息

Parasitol Int. 2022 Apr;87:102539. doi: 10.1016/j.parint.2022.102539. Epub 2022 Jan 7.

Abstract

Haemonchus contortus is the most prevalent and pathogenic gastrointestinal nematode infecting sheep and goats. The two CSIRO sheep resource flocks, the Haemonchus-selected flock (HSF) and Trichostrongylus-selected flock (TSF) were developed for research on host resistance or susceptibility to gastrointestinal nematode infection. A recent study focused on the gene expression differences between resistant and susceptible sheep within each flock, with lymphatic and gastrointestinal tissues. To identify features in the host transcriptome and understand the molecular differences underlying host resistance to H. contortus between flocks with different selective breeding and genetic backgrounds, we compared the abomasal transcriptomic responses of the resistant or susceptible animals between HSF and TSF flocks. A total of 11 and 903 differentially expressed genes were identified in the innate infection treatment in HSF and TSF flocks between resistant and susceptible sheep respectively, while 52 and 485 genes were identified to be differentially expressed in the acquired infection treatment, respectively. Among them, 294 genes had significantly different gene expression levels between HSF and TSF flock animals within the susceptible sheep by both the innate and acquired infections. Moreover, similar expression patterns of the 294 genes were observed, with 273 genes more highly expressed in HSF and 21 more highly expressed in the TSF within the abomasal transcriptome of the susceptible animals. Gene ontology enrichment of the differentially expressed genes identified in this study predicted the likely differing function between the two flock's susceptible lines in response to H. contortus infection. Nineteen pathways were significantly enriched in both the innate and adaptive immune responses in susceptible animals, which indicated that these pathways likely contribute to the host resistance development to H. contortus infection in susceptible sheep. Biological networks built for the set of genes differentially abundant in susceptible animals identified hub genes of PRKG1, PRKACB, PRKACA, and ITGB1 for the innate immune response, and CALM2, MYL1, COL1A1, ITGB1 and ITGB3 for the adaptive immune response, respectively. Our results offered a quantitative snapshot of host transcriptomic changes induced by H. contortus infection between flocks with different selective breeding and genetic backgrounds and provided novel insights into molecular mechanisms of host resistance.

摘要

捻转血矛线虫是感染绵羊和山羊最普遍和致病性的胃肠道线虫。两个 CSIRO 绵羊资源群,即捻转血矛线虫选择群(HSF)和普通消化道线虫选择群(TSF),是为了研究宿主对胃肠道线虫感染的抗性或易感性而开发的。最近的一项研究集中在每个群体中抗性和易感性绵羊之间的基因表达差异,以及淋巴和胃肠道组织。为了确定宿主转录组中的特征,并了解不同选择性育种和遗传背景下群体之间对捻转血矛线虫的宿主抗性的分子差异,我们比较了 HSF 和 TSF 群体中抗性和易感性动物之间的抗逆性和易感性之间的差异。在 HSF 和 TSF 群体中,分别在固有感染处理中鉴定出 11 个和 903 个差异表达基因,而在获得性感染处理中分别鉴定出 52 个和 485 个差异表达基因。其中,在固有和获得性感染中,294 个基因在 HSF 和 TSF 群体中的易感绵羊之间的基因表达水平有显著差异。此外,在易感动物的胃转录组中,294 个基因表现出相似的表达模式,其中 273 个基因在 HSF 中表达更高,21 个基因在 TSF 中表达更高。本研究中鉴定的差异表达基因的基因本体富集预测了两个群体易感系对捻转血矛线虫感染的可能不同功能。在易感动物的固有和适应性免疫反应中,有 19 个途径显著富集,这表明这些途径可能有助于宿主对捻转血矛线虫感染的抗性发展。为差异丰度易感动物的一组基因构建的生物网络确定了固有免疫反应中 PRKG1、PRKACB、PRKACA 和 ITGB1 的枢纽基因,以及适应性免疫反应中 CALM2、MYL1、COL1A1、ITGB1 和 ITGB3 的枢纽基因。我们的研究结果提供了一个在不同选择性育种和遗传背景下的群体之间由捻转血矛线虫感染引起的宿主转录组变化的定量快照,并为宿主抗性的分子机制提供了新的见解。

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