基因组
染色质
生物
计算生物学
染色体构象捕获
染色体
DNA测序
遗传学
DNA
基因
序列(生物学)
原位
人类基因组
基因表达
物理
增强子
气象学
作者
Andrew C. Payne,Zachary Chiang,Paul Reginato,Sarah Mangiameli,Evan Murray,Chun-Chen Yao,Styliani Markoulaki,Andrew Earl,Ajay Labade,Rudolf Jaenisch,George M. Church,Edward S. Boyden,Jason D. Buenrostro,Fei Chen
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2021-02-25
卷期号:371 (6532)
被引量:182
标识
DOI:10.1126/science.aay3446
摘要
Understanding genome organization requires integration of DNA sequence and three-dimensional spatial context; however, existing genome-wide methods lack either base pair sequence resolution or direct spatial localization. Here, we describe in situ genome sequencing (IGS), a method for simultaneously sequencing and imaging genomes within intact biological samples. We applied IGS to human fibroblasts and early mouse embryos, spatially localizing thousands of genomic loci in individual nuclei. Using these data, we characterized parent-specific changes in genome structure across embryonic stages, revealed single-cell chromatin domains in zygotes, and uncovered epigenetic memory of global chromosome positioning within individual embryos. These results demonstrate how IGS can directly connect sequence and structure across length scales from single base pairs to whole organisms.
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