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      Fibroblastic reticular cell lineage convergence in Peyer’s patches governs intestinal immunity

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          Abstract

          Fibroblastic reticular cells (FRCs) determine the organization of lymphoid organs and control immune cell interactions. While the cellular and molecular mechanisms underlying of FRC differentiation in lymph nodes and the splenic white pulp have been elaborated to some extent, in Peyer’s patches (PPs) they remain elusive. Using a combination of single-cell transcriptomics and cell fate-mapping in advanced mouse models, we found that PP formation in the mouse embryo is initiated by an expansion of perivascular FRC precursors, followed by FRC differentiation from subepithelial progenitors. Single-cell transcriptomics and cell fate-mapping confirmed the convergence of perivascular and subepithelial FRC lineages. Furthermore, lineage-specific loss and gain-of-function approaches revealed that the two FRC lineages synergistically direct PP organization, maintain intestinal microbiome homeostasis and control anti-coronavirus immune responses in the gut. Collectively, this study reveals a distinct mosaic patterning program that generates key stromal cell infrastructures for the control of intestinal immunity.

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          Most cited references63

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          The SILVA ribosomal RNA gene database project: improved data processing and web-based tools

          SILVA (from Latin silva, forest, http://www.arb-silva.de) is a comprehensive web resource for up to date, quality-controlled databases of aligned ribosomal RNA (rRNA) gene sequences from the Bacteria, Archaea and Eukaryota domains and supplementary online services. The referred database release 111 (July 2012) contains 3 194 778 small subunit and 288 717 large subunit rRNA gene sequences. Since the initial description of the project, substantial new features have been introduced, including advanced quality control procedures, an improved rRNA gene aligner, online tools for probe and primer evaluation and optimized browsing, searching and downloading on the website. Furthermore, the extensively curated SILVA taxonomy and the new non-redundant SILVA datasets provide an ideal reference for high-throughput classification of data from next-generation sequencing approaches.
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            Reproducible, interactive, scalable and extensible microbiome data science using QIIME 2

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              Comprehensive Integration of Single-Cell Data

              Single-cell transcriptomics has transformed our ability to characterize cell states, but deep biological understanding requires more than a taxonomic listing of clusters. As new methods arise to measure distinct cellular modalities, a key analytical challenge is to integrate these datasets to better understand cellular identity and function. Here, we develop a strategy to "anchor" diverse datasets together, enabling us to integrate single-cell measurements not only across scRNA-seq technologies, but also across different modalities. After demonstrating improvement over existing methods for integrating scRNA-seq data, we anchor scRNA-seq experiments with scATAC-seq to explore chromatin differences in closely related interneuron subsets and project protein expression measurements onto a bone marrow atlas to characterize lymphocyte populations. Lastly, we harmonize in situ gene expression and scRNA-seq datasets, allowing transcriptome-wide imputation of spatial gene expression patterns. Our work presents a strategy for the assembly of harmonized references and transfer of information across datasets.
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                Author and article information

                Journal
                100941354
                Nat Immunol
                Nat Immunol
                Nature immunology
                1529-2908
                1529-2916
                04 February 2021
                01 April 2021
                11 March 2021
                06 April 2021
                : 22
                : 4
                : 510-519
                Affiliations
                [1 ]Institute for Bioinnovation, BSRC “Alexander Fleming”, Vari, Greece
                [2 ]Institute of Immunobiology, Kantonsspital St. Gallen, St. Gallen, Switzerland
                [3 ]Institute of Experimental Immunology, University of Zürich, Zürich, Switzerland
                [4 ]Department of Physiology, Medical School, National and Kapodistrian University of Athens
                Author notes
                [# ]Corresponding authors: George Kollias, kollias@ 123456fleming.gr and Burkhard Ludewig, burkhard.ludewig@ 123456kssg.ch .
                [*]

                equal contribution of first authors

                [+]

                equal contribution of last authors

                Article
                EMS115903
                10.1038/s41590-021-00894-5
                7610542
                33707780
                e5f275ce-1613-4ed1-ae18-79c652e32abb

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                Categories
                Article

                Immunology
                peyer’s patch fibroblastic reticular cells,pp-frc,frc lineages,t cell zone reticular cells,marginal zone reticular cells,follicular dendritic cells,lymphoid tissue organizer cells

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