Microbiota-mediated shaping of mouse spleen structure and immune function characterized by scRNA-seq and Stereo-seq

IF 6.6 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of Genetics and Genomics Pub Date : 2023-09-01 DOI:10.1016/j.jgg.2023.04.012
Yin Zhang , Juan Shen , Wei Cheng , Bhaskar Roy , Ruizhen Zhao , Tailiang Chai , Yifei Sheng , Zhao Zhang , Xueting Chen , Weiming Liang , Weining Hu , Qijun Liao , Shanshan Pan , Wen Zhuang , Yangrui Zhang , Rouxi Chen , Junpu Mei , Hong Wei , Xiaodong Fang
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Abstract

Gut microbes exhibit complex interactions with their hosts and shape an organism's immune system throughout its lifespan. As the largest secondary lymphoid organ, the spleen has a wide range of immunological functions. To explore the role of microbiota in regulating and shaping the spleen, we employ scRNA-seq and Stereo-seq technologies based on germ-free (GF) mice to detect differences in tissue size, anatomical structure, cell types, functions, and spatial molecular characteristics. We identify 18 cell types, 9 subtypes of T cells, and 7 subtypes of B cells. Gene differential expression analysis reveals that the absence of microorganisms results in alterations in erythropoiesis within the red pulp region and congenital immune deficiency in the white pulp region. Stereo-seq results demonstrate a clear hierarchy of immune cells in the spleen, including marginal zone (MZ) macrophages, MZ B cells, follicular B cells and T cells, distributed in a well-defined pattern from outside to inside. However, this hierarchical structure is disturbed in GF mice. Ccr7 and Cxcl13 chemokines are specifically expressed in the spatial locations of T cells and B cells, respectively. We speculate that the microbiota may mediate the structural composition or partitioning of spleen immune cells by modulating the expression levels of chemokines.

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微生物群介导的小鼠脾脏结构和免疫功能的形成,以scRNA-seq和Stereo-seq为特征。
肠道微生物与宿主表现出复杂的相互作用,并在其整个生命周期中塑造生物体的免疫系统。脾脏作为最大的次级淋巴器官,具有广泛的免疫功能。为了探索微生物群在调节和塑造脾脏中的作用,我们使用基于无菌(GF)小鼠的scRNA-seq和Stereo-seq技术来检测组织大小、解剖结构、细胞类型、功能和空间分子特征的差异。我们鉴定了18种细胞类型、9种T细胞亚型和7种B细胞亚型。基因差异表达分析显示,微生物的缺乏导致红髓区域内红细胞生成的改变和白髓区域的先天性免疫缺陷。立体序列分析结果表明,脾脏中的免疫细胞层次分明,包括边缘区(MZ)巨噬细胞、MZ B细胞、卵泡B细胞和T细胞,从外到内以明确的模式分布。然而,这种分级结构在GF小鼠中受到干扰。Ccr7和Cxcl13趋化因子分别在T细胞和B细胞的空间位置特异性表达。我们推测,微生物群可能通过调节趋化因子的表达水平来介导脾脏免疫细胞的结构组成或分配。
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来源期刊
Journal of Genetics and Genomics
Journal of Genetics and Genomics 生物-生化与分子生物学
CiteScore
8.20
自引率
3.40%
发文量
4756
审稿时长
14 days
期刊介绍: The Journal of Genetics and Genomics (JGG, formerly known as Acta Genetica Sinica ) is an international journal publishing peer-reviewed articles of novel and significant discoveries in the fields of genetics and genomics. Topics of particular interest include but are not limited to molecular genetics, developmental genetics, cytogenetics, epigenetics, medical genetics, population and evolutionary genetics, genomics and functional genomics as well as bioinformatics and computational biology.
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