nnSVG: scalable identification of spatially variable genes using nearest-neighbor Gaussian processes

Author:

Weber Lukas M.ORCID,Saha Arkajyoti,Datta AbhirupORCID,Hansen Kasper D.ORCID,Hicks Stephanie C.ORCID

Abstract

AbstractFeature selection to identify spatially variable genes or other biologically informative genes is a key step during analyses of spatially-resolved transcriptomics data. Here, we propose nnSVG, a scalable approach to identify spatially variable genes based on nearest-neighbor Gaussian processes. Our method (i) identifies genes that vary in expression continuously across the entire tissue or withina prioridefined spatial domains, (ii) uses gene-specific estimates of length scale parameters within the Gaussian process models, and (iii) scales linearly with the number of spatial locations. We demonstrate the performance of our method using experimental data from several technological platforms and simulations. A software implementation is available athttps://bioconductor.org/packages/nnSVG.

Publisher

Cold Spring Harbor Laboratory

Reference53 articles.

1. Visualization and analysis of gene expression in tissue sections by spatial transcriptomics

2. 10x Genomics. 10x Genomics Visium Spatial Gene Expression Solution. (Website), 2021.

3. Slide-seq: A scalable technology for measuring genome-wide expression at high spatial resolution

4. Highly sensitive spatial transcriptomics at near-cellular resolution with Slide-seqV2;Nature Biotechnology,2020

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