Liang Jialong, Cai Wanshi, Sun Zhongsheng
Beijing Institutes of Life Science, Chinese Academy of Sciences, Beijing 100101, China; University of Chinese Academy of Sciences, Beijing 100049, China.
Beijing Institutes of Life Science, Chinese Academy of Sciences, Beijing 100101, China; Institute of Genomic Medicine, Wenzhou Medical University, Wenzhou 325000, China.
J Genet Genomics. 2014 Oct 20;41(10):513-28. doi: 10.1016/j.jgg.2014.09.005. Epub 2014 Oct 18.
Intensively developed in the last few years, single-cell sequencing technologies now present numerous advantages over traditional sequencing methods for solving the problems of biological heterogeneity and low quantities of available biological materials. The application of single-cell sequencing technologies has profoundly changed our understanding of a series of biological phenomena, including gene transcription, embryo development, and carcinogenesis. However, before single-cell sequencing technologies can be used extensively, researchers face the serious challenge of overcoming inherent issues of high amplification bias, low accuracy and reproducibility. Here, we simply summarize the techniques used for single-cell isolation, and review the current technologies used in single-cell genomic, transcriptomic, and epigenomic sequencing. We discuss the merits, defects, and scope of application of single-cell sequencing technologies and then speculate on the direction of future developments.
单细胞测序技术在过去几年中得到了深入发展,如今与传统测序方法相比,在解决生物异质性和生物材料量少等问题方面具有诸多优势。单细胞测序技术的应用深刻改变了我们对一系列生物学现象的理解,包括基因转录、胚胎发育和致癌作用。然而,在单细胞测序技术能够广泛应用之前,研究人员面临着克服高扩增偏差、低准确性和可重复性等固有问题的严峻挑战。在此,我们简要总结用于单细胞分离的技术,并综述单细胞基因组、转录组和表观基因组测序中使用的当前技术。我们讨论了单细胞测序技术的优点、缺陷和应用范围,然后推测了未来的发展方向。