Wenzhou Key Laboratory of Biophysics, Wenzhou Institute, University of Chinese Academy of Sciences, Wenzhou, Zhejiang 325001, China.
Oujiang Laboratory (Zhejiang Lab for Regenerative Medicine, Vision and Brain Health), Wenzhou, Zhejiang 325001, China.
Nucleic Acids Res. 2024 Jun 24;52(11):6114-6128. doi: 10.1093/nar/gkae340.
Inferring the developmental potential of single cells from scRNA-Seq data and reconstructing the pseudo-temporal path of cell development are fundamental but challenging tasks in single-cell analysis. Although single-cell transcriptional diversity (SCTD) measured by the number of expressed genes per cell has been widely used as a hallmark of developmental potential, it may lead to incorrect estimation of differentiation states in some cases where gene expression does not decrease monotonously during the development process. In this study, we propose a novel metric called single-cell transcriptional complexity (SCTC), which draws on insights from the economic complexity theory and takes into account the sophisticated structure information of scRNA-Seq count matrix. We show that SCTC characterizes developmental potential more accurately than SCTD, especially in the early stages of development where cells typically have lower diversity but higher complexity than those in the later stages. Based on the SCTC, we provide an unsupervised method for accurate, robust, and transferable inference of single-cell pseudotime. Our findings suggest that the complexity emerging from the interplay between cells and genes determines the developmental potential, providing new insights into the understanding of biological development from the perspective of complexity theory.
从 scRNA-Seq 数据推断单细胞的发育潜能,并重建细胞发育的伪时间路径,是单细胞分析中的基本但具有挑战性的任务。尽管单细胞转录多样性(SCTD),即通过每个细胞表达的基因数量来衡量,已被广泛用作发育潜能的标志,但在某些情况下,当基因表达在发育过程中不是单调下降时,它可能会导致分化状态的错误估计。在这项研究中,我们提出了一种新的度量标准,称为单细胞转录复杂性(SCTC),它借鉴了经济复杂性理论的见解,并考虑了 scRNA-Seq 计数矩阵的复杂结构信息。我们表明,SCTC 比 SCTD 更能准确地描述发育潜能,尤其是在细胞通常具有比后期阶段更低的多样性但更高的复杂性的早期发育阶段。基于 SCTC,我们提供了一种用于单细胞伪时间准确、稳健和可转移推断的无监督方法。我们的研究结果表明,细胞和基因之间相互作用产生的复杂性决定了发育潜能,从复杂性理论的角度为理解生物发育提供了新的见解。