Deconvolution of single-cell multi-omics layers reveals regulatory heterogeneity

Longqi Liu(BGI Group (China)), Chuanyu Liu(BGI Group (China)), Andrés Quintero(German Cancer Research Center), Liang Wu(BGI Group (China)), Yue Yuan(BGI Group (China)), Mingyue Wang(BGI Group (China)), Mengnan Cheng(BGI Group (China)), Lizhi Leng(Central South University), Liqin Xu(BGI Group (China)), Guoyi Dong(BGI Group (China)), Rui Li(BGI Group (China)), Yang Liu(BGI Group (China)), Xiaoyu Wei(BGI Group (China)), Jiangshan Xu(BGI Group (China)), Xiaowei Chen(China National GeneBank), Haorong Lu(China National GeneBank), Dongsheng Chen(BGI Group (China)), Quanlei Wang(BGI Group (China)), Qing Zhou(BGI Group (China)), Xinxin Lin(BGI Group (China)), Guibo Li(BGI Group (China)), Shiping Liu(BGI Group (China)), Qi Wang(BGI Group (China)), Hongru Wang(Chinese Academy of Sciences), J. Lynn Fink(BGI Group (China)), Zhengliang Gao(Tongji University), Xin Liu(BGI Group (China)), Yong Hou(BGI Group (China)), Shida Zhu(BGI Group (China)), Huanming Yang(BGI Group (China)), Yunming Ye(Harbin Institute of Technology), Ge Lin(Central South University), Fang Chen(BGI Group (China)), Carl Herrmann(German Cancer Research Center), Roland Eils(Heidelberg University), Zhouchun Shang(BGI Group (China)), Xun Xu(BGI Group (China))
Nature Communications
January 28, 2019
Cited by 252Open Access
Full Text

Abstract

Integrative analysis of multi-omics layers at single cell level is critical for accurate dissection of cell-to-cell variation within certain cell populations. Here we report scCAT-seq, a technique for simultaneously assaying chromatin accessibility and the transcriptome within the same single cell. We show that the combined single cell signatures enable accurate construction of regulatory relationships between cis-regulatory elements and the target genes at single-cell resolution, providing a new dimension of features that helps direct discovery of regulatory patterns specific to distinct cell identities. Moreover, we generate the first single cell integrated map of chromatin accessibility and transcriptome in early embryos and demonstrate the robustness of scCAT-seq in the precise dissection of master transcription factors in cells of distinct states. The ability to obtain these two layers of omics data will help provide more accurate definitions of "single cell state" and enable the deconvolution of regulatory heterogeneity from complex cell populations.


Related Papers

No related papers found

Powered by citation graph analysis