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大西洋鲑(L.)肝脏的单细胞转录组学揭示了细胞异质性和对 的挑战的免疫反应。

Single cell transcriptomics of Atlantic salmon ( L.) liver reveals cellular heterogeneity and immunological responses to challenge by .

机构信息

The Roslin Institute and Royal (Dick) School of Veterinary Studies, University of Edinburgh, Edinburgh, United Kingdom.

Centre for Inflammation Research, The Queen's Medical Research Institute, Edinburgh BioQuarter, University of Edinburgh, Edinburgh, United Kingdom.

出版信息

Front Immunol. 2022 Aug 24;13:984799. doi: 10.3389/fimmu.2022.984799. eCollection 2022.

Abstract

The liver is a multitasking organ with essential functions for vertebrate health spanning metabolism and immunity. In contrast to mammals, our understanding of liver cellular heterogeneity and its role in regulating immunological status remains poorly defined in fishes. Addressing this knowledge gap, we generated a transcriptomic atlas of 47,432 nuclei isolated from the liver of Atlantic salmon ( L.) contrasting control fish with those challenged with a pathogenic strain of , a problematic bacterial pathogen in global aquaculture. We identified the major liver cell types and their sub-populations, revealing poor conservation of many hepatic cell marker genes utilized in mammals, while identifying novel heterogeneity within the hepatocyte, lymphoid, and myeloid lineages. This included polyploid hepatocytes, multiple T cell populations including γδ T cells, and candidate populations of monocytes/macrophages and dendritic cells. A dominant hepatocyte population radically remodeled its transcriptome following infection to activate the acute phase response and other defense functions, while repressing routine functions such as metabolism. These defense-specialized hepatocytes showed strong activation of genes controlling protein synthesis and secretion, presumably to support the release of acute phase proteins into circulation. The infection response further involved up-regulation of numerous genes in an immune-cell specific manner, reflecting functions in pathogen recognition and killing, antigen presentation, phagocytosis, regulation of inflammation, B cell differentiation and T cell activation. Overall, this study greatly enhances our understanding of the multifaceted role played by liver immune and non-immune cells in host defense and metabolic remodeling following infection and provides many novel cell-specific marker genes to empower future studies of this organ in fishes.

摘要

肝脏是一种具有多种功能的器官,对脊椎动物的健康至关重要,涵盖代谢和免疫功能。与哺乳动物相比,我们对鱼类肝脏细胞异质性及其在调节免疫状态中的作用的认识还很不清楚。为了弥补这一知识空白,我们生成了一个来自大西洋鲑鱼(L.)肝脏的 47432 个核的转录组图谱,这些核来自对照鱼和感染了一种致病性的鲑鱼病原菌的鱼。我们鉴定了主要的肝实质细胞类型及其亚群,揭示了许多在哺乳动物中使用的肝实质细胞标记基因的保守性较差,同时在肝实质细胞、淋巴样细胞和髓样细胞谱系中发现了新的异质性。这包括多倍体肝细胞、多种 γδ T 细胞群体,以及单核细胞/巨噬细胞和树突状细胞的候选群体。感染后,一种主要的肝实质细胞群体彻底重塑其转录组,以激活急性期反应和其他防御功能,同时抑制代谢等常规功能。这些具有防御功能的肝实质细胞强烈激活了控制蛋白质合成和分泌的基因,可能是为了支持急性期蛋白向循环系统的释放。感染反应还涉及许多免疫细胞特异性的基因上调,反映了病原体识别和杀伤、抗原呈递、吞噬作用、炎症调节、B 细胞分化和 T 细胞激活等功能。总的来说,这项研究极大地增强了我们对肝脏免疫和非免疫细胞在感染后宿主防御和代谢重塑中所起的多方面作用的理解,并提供了许多新的细胞特异性标记基因,以增强对鱼类肝脏的未来研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/96f1/9450062/3e434fc8d9b5/fimmu-13-984799-g001.jpg

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