生物
基因亚型
计算生物学
选择性拼接
RNA剪接
RNA序列
转录组
表型
遗传学
单细胞分析
基因
核糖核酸
细胞
基因表达
作者
Luyi Tian,Jafar S. Jabbari,Rachel Thijssen,Quentin Gouil,Shanika L. Amarasinghe,Hasaru Kariyawasam,Shian Su,Xueyi Dong,Charity W. Law,Alexis Lucattini,Jin D. Chung,Timur Naim,Audrey Chan,Chi Ly,Gordon S. Lynch,James G. Ryall,Casey J. A. Anttila,Hongke Peng,Mary Ann Anderson,Andrew W. Roberts
出处
期刊:
[Cold Spring Harbor Laboratory]
日期:2020-08-10
被引量:33
标识
DOI:10.1101/2020.08.10.243543
摘要
Abstract Alternative splicing shapes the phenotype of cells in development and disease. Long-read RNA-sequencing recovers full-length transcripts but has limited throughput at the single-cell level. Here we developed single-cell full-length transcript sequencing by sampling ( FLT-seq ), together with the computational pipeline FLAMES to overcome these issues and perform isoform discovery and quantification, splicing analysis and mutation detection in single cells. With FLT-seq and FLAMES , we performed the first comprehensive characterization of the full-length isoform landscape in single cells of different types and species and identified thousands of unannotated isoforms. We found conserved functional modules that were enriched for alternative transcript usage in different cell populations, including ribosome biogenesis and mRNA splicing. Analysis at the transcript-level allowed data integration with scATAC-seq on individual promoters, improved correlation with protein expression data and linked mutations known to confer drug resistance to transcriptome heterogeneity. Our methods reveal previously unseen isoform complexity and provide a better framework for multi-omics data integration.
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