College of Animal Science and Technology, Northeast Agricultural University, Harbin 150030, China.
College of Landscape Architecture, Northeast Forestry University, Harbin 150040, China.
Biomolecules. 2023 Jan 12;13(1):156. doi: 10.3390/biom13010156.
Development from single cells to multicellular tissues and organs involves more than just the exact replication of cells, which is known as differentiation. The primary focus of research into the mechanism of differentiation has been differences in gene expression profiles between individual cells. However, it has predominantly been conducted at low throughput and bulk levels, challenging the efforts to understand molecular mechanisms of differentiation during the developmental process in animals and humans. During the last decades, rapid methodological advancements in genomics facilitated the ability to study developmental processes at a genome-wide level and finer resolution. Particularly, sequencing transcriptomes at single-cell resolution, enabled by single-cell RNA-sequencing (scRNA-seq), was a breath-taking innovation, allowing scientists to gain a better understanding of differentiation and cell lineage during the developmental process. However, single-cell isolation during scRNA-seq results in the loss of the spatial information of individual cells and consequently limits our understanding of the specific functions of the cells performed by different spatial regions of tissues or organs. This greatly encourages the emergence of the spatial transcriptomic discipline and tools. Here, we summarize the recent application of scRNA-seq and spatial transcriptomic tools for developmental biology. We also discuss the limitations of current spatial transcriptomic tools and approaches, as well as possible solutions and future prospects.
从单细胞到多细胞组织和器官的发育不仅仅涉及细胞的精确复制,这被称为分化。分化机制研究的主要重点是单个细胞之间基因表达谱的差异。然而,这项研究主要是在低通量和批量水平上进行的,这使得人们难以理解动物和人类发育过程中分化的分子机制。在过去的几十年中,基因组学的快速方法学进展使得能够在全基因组水平和更精细的分辨率上研究发育过程。特别是,单细胞 RNA 测序 (scRNA-seq) 实现的单细胞分辨率转录组测序是一项令人瞩目的创新,使科学家能够更好地理解发育过程中的分化和细胞谱系。然而,scRNA-seq 过程中的单细胞分离导致了单个细胞的空间信息丢失,从而限制了我们对组织或器官不同空间区域的细胞执行的特定功能的理解。这极大地鼓励了空间转录组学学科和工具的出现。在这里,我们总结了 scRNA-seq 和空间转录组学工具在发育生物学中的最新应用。我们还讨论了当前空间转录组学工具和方法的局限性,以及可能的解决方案和未来展望。