Topological Data Analysis in Time Series: Temporal Filtration and Application to Single-Cell Genomics

04/29/2022
by   Baihan Lin, et al.
25

The absence of a conventional association between the cell-cell cohabitation and its emergent dynamics into cliques during development has hindered our understanding of how cell populations proliferate, differentiate, and compete, i.e. the cell ecology. With the recent advancement of the single-cell RNA-sequencing (RNA-seq), we can potentially describe such a link by constructing network graphs that characterize the similarity of the gene expression profiles of the cell-specific transcriptional programs, and analyzing these graphs systematically using the summary statistics informed by the algebraic topology. We propose the single-cell topological simplicial analysis (scTSA). Applying this approach to the single-cell gene expression profiles from local networks of cells in different developmental stages with different outcomes reveals a previously unseen topology of cellular ecology. These networks contain an abundance of cliques of single-cell profiles bound into cavities that guide the emergence of more complicated habitation forms. We visualize these ecological patterns with topological simplicial architectures of these networks, compared with the null models. Benchmarked on the single-cell RNA-seq data of zebrafish embryogenesis spanning 38,731 cells, 25 cell types and 12 time steps, our approach highlights the gastrulation as the most critical stage, consistent with consensus in developmental biology. As a nonlinear, model-independent, and unsupervised framework, our approach can also be applied to tracing multi-scale cell lineage, identifying critical stages, or creating pseudo-time series.

READ FULL TEXT

page 1

page 2

page 3

page 4

research
12/13/2022

Multiscale topology classifies and quantifies cell types in subcellular spatial transcriptomics

Spatial transcriptomics has the potential to transform our understanding...
research
02/04/2016

Discovering Neuronal Cell Types and Their Gene Expression Profiles Using a Spatial Point Process Mixture Model

Cataloging the neuronal cell types that comprise circuitry of individual...
research
03/15/2019

Linear system identification from ensemble snapshot observations

Developments in transcriptomics techniques have caused a large demand in...
research
04/05/2023

Revolutionizing Single Cell Analysis: The Power of Large Language Models for Cell Type Annotation

In recent years, single cell RNA sequencing has become a widely used tec...
research
01/08/2022

Automatically layout and visualize the biological pathway map with spectral graph theory

The pathway is a biological term that refers to a series of interactions...
research
06/15/2022

Multiscale methods for signal selection in single-cell data

Analysis of single-cell transcriptomics often relies on clustering cells...
research
05/23/2022

Single-cell gene regulatory network analysis for mixed cell populations with applications to COVID-19 single cell data

Gene regulatory network (GRN) refers to the complex network formed by re...

Please sign up or login with your details

Forgot password? Click here to reset