Advanced Medical Technology Center, The First Affiliated Hospital, Zhongshan School of Medicine, Sun Yat-sen University, Guangzhou, China.
Department of Genetics and Biomedical Informatics, Zhongshan School of Medicine, Sun Yat-sen University, Guangzhou, China.
Mol Biol Evol. 2023 May 2;40(5). doi: 10.1093/molbev/msad113.
In the same way that a phylogeny summarizes the evolutionary history of species, a cell lineage tree describes the process of clonal expansion, in which gene expression differences between cells naturally accrue as a result of stochastic partitioning and imperfect expression control. How is functional homeostasis, a key factor in the biological function of any population of cells, maintained in the face of such continuous accumulation of transcriptomic heterogeneity remains largely unresolved. To answer this question, we experimentally determined the single-cell transcriptomes and lineage relationships of up to 50% cells in single-HEK293-seeded colonies. Phylogenetic comparative analyses of the single-cell transcriptomes on the cell lineage tree revealed three lines of evidence for the constrained accumulation of transcriptome heterogeneity among cells, including rapid saturation of transcriptomic heterogeneity upon four cell divisions, reduced expression differences within subtrees closer to expression boundaries, and cofluctuations among genes. Our analyses showcased the applicability of phylogenetic comparative methods in cell lineage trees, demonstrated the constrained accumulation of transcriptomic heterogeneity, and provided novel insight into the functional homeostasis of cell populations.
与系统发育树总结物种进化历史的方式相同,细胞谱系树描述了克隆扩增的过程,在这个过程中,细胞之间的基因表达差异由于随机分割和不完全的表达控制而自然累积。在面对这种转录组异质性的持续积累时,如何维持功能动态平衡(任何细胞群体的生物学功能的关键因素)在很大程度上仍未得到解决。为了回答这个问题,我们在单个 HEK293 接种的菌落中,实验确定了高达 50%细胞的单细胞转录组和谱系关系。对细胞谱系树上的单细胞转录组进行系统发育比较分析,揭示了细胞间转录组异质性累积受到限制的三个证据,包括在四个细胞分裂后转录组异质性迅速饱和,接近表达边界的子树内表达差异减小,以及基因之间的共同波动。我们的分析展示了系统发育比较方法在细胞谱系树中的适用性,证明了转录组异质性的累积受到限制,并为细胞群体的功能动态平衡提供了新的见解。