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How Single-Cell Genomics Is Changing Evolutionary and Developmental Biology
Annual Review of Cell and Developmental Biology ( IF 11.3 ) Pub Date : 2017-10-06 00:00:00 , DOI: 10.1146/annurev-cellbio-100616-060818
John C. Marioni 1, 2, 3 , Detlev Arendt 4, 5
Affiliation  

The recent flood of single-cell data not only boosts our knowledge of cells and cell types, but also provides new insight into development and evolution from a cellular perspective. For example, assaying the genomes of multiple cells during development reveals developmental lineage trees—the kinship lineage—whereas cellular transcriptomes inform us about the regulatory state of cells and their gradual restriction in potency—the Waddington lineage. Beyond that, the comparison of single-cell data across species allows evolutionary changes to be tracked at all stages of development from the zygote, via different kinds of stem cells, to the differentiating cells. We discuss recent insights into the evolution of stem cells and initial attempts to reconstruct the evolutionary cell type tree of the mammalian forebrain, for example, by the comparative analysis of neuron types in the mesencephalic floor. These studies illustrate the immense potential of single-cell genomics to open up a new era in developmental and evolutionary research.

中文翻译:


单细胞基因组学如何改变进化生物学和发育生物学

最近的单细胞数据泛滥,不仅增进了我们对细胞和细胞类型的了解,而且从细胞的角度为开发和进化提供了新的见识。例如,在发育过程中分析多个细胞的基因组可揭示发育谱系树(血统谱系),而细胞转录组可告知我们细胞的调控状态及其效力的逐步限制(Waddington谱系)。除此之外,跨物种的单细胞数据的比较允许在从合子到通过不同种类的干细胞到分化细胞的所有发育阶段中追踪进化变化。我们讨论了有关干细胞进化的最新见解以及重建哺乳动物前脑的进化细胞类型树的初步尝试,例如,通过对中脑底神经元类型的比较分析。这些研究说明了单细胞基因组学的巨大潜力,从而为发展和进化研究开辟了一个新时代。

更新日期:2017-10-06
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