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Probe set selection for targeted spatial transcriptomics.

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Peer-reviewed

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Abstract

Targeted spatial transcriptomic methods capture the topology of cell types and states in tissues at single-cell and subcellular resolution by measuring the expression of a predefined set of genes. The selection of an optimal set of probed genes is crucial for capturing the spatial signals present in a tissue. This requires selecting the most informative, yet minimal, set of genes to profile (gene set selection) for which it is possible to build probes (probe design). However, current selections often rely on marker genes, precluding them from detecting continuous spatial signals or new states. We present Spapros, an end-to-end probe set selection pipeline that optimizes both gene set specificity for cell type identification and within-cell type expression variation to resolve spatially distinct populations while considering prior knowledge as well as probe design and expression constraints. We evaluated Spapros and show that it outperforms other selection approaches in both cell type recovery and recovering expression variation beyond cell types. Furthermore, we used Spapros to design a single-cell resolution in situ hybridization on tissues (SCRINSHOT) experiment of adult lung tissue to demonstrate how probes selected with Spapros identify cell types of interest and detect spatial variation even within cell types.

Description

Acknowledgements: We are grateful to all members of the Theis and Ertürk laboratories as well as the discovAIR consortium for frequent discussions of the project. We thank E. Madissoon and K. Meyer for provision and discussion of the scRNA-seq lung reference datasets. We thank P. Barbry for provision of the airway marker list. We thank J. Theelke for testing the probe design pipeline. We thank X. Abalo for helping with tissue sectioning and tissue quality control. We thank W. Timens for histopathological tissue evaluation. This work was supported by the project ‘Virological and immunological determinants of COVID-19 pathogenesis — lessons to get prepared for future pandemics (KA1-Co-02 ‘COVIPA’)’, a grant from the Helmholtz Association’s Initiative and Networking Fund. This project has received funding from the European Union’s Horizon 2020 Research and Innovation Programme under grant agreement 874656.

Journal Title

Nat Methods

Conference Name

Journal ISSN

1548-7091
1548-7105

Volume Title

21

Publisher

Springer Nature

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Except where otherwised noted, this item's license is described as http://creativecommons.org/licenses/by/4.0/
Sponsorship
European Commission Horizon 2020 (H2020) Societal Challenges (874656)

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