生物
染色质
基因组
黑腹果蝇
嘉雅宠物
遗传学
母子转换
进化生物学
计算生物学
染色体构象捕获
基因组组织
基因组学
支架/基质附着区域
基因表达调控
DNA测序
基因组进化
调节顺序
基因
基因组计划
果蝇属(亚属)
人类基因组
转录调控
后生
组蛋白
转座因子
作者
Noura Maziak,Yuchen Zhang,Fabian Groll,Haley E. Brown,Alla Madich,Yadwinder Kaur,Melissa M. Harrison,Jian Zhou,Juan M. Vaquerizas
出处
期刊:Nature Genetics
[Nature Portfolio]
日期:2026-02-24
卷期号:58 (3): 607-617
被引量:4
标识
DOI:10.1038/s41588-026-02503-3
摘要
How chromatin conformation relates to chromatin state remains a central challenge in genome regulation. Here we present Pico-C, a low-input Micro-C approach that enables high-resolution, temporally resolved three-dimensional genome mapping during early Drosophila embryogenesis. Contrary to a prevailing view of a disorganized genome before zygotic genome activation (ZGA), we uncover a dynamic and ordered emergence of chromatin loops during pre-ZGA nuclear cycles. Spatial autocorrelation analysis points to context-dependent regulatory influences on chromatin. Notably, inhibition of transcriptional elongation has site-specific effects, retaining some early loops while weakening insulation at active promoters, suggesting distinct regulatory dependencies. Machine learning models trained on sequence features identify orthogonal, motif-specific contributions to architecture. Co-depletion of the pioneer factors Zelda and GAF leads to factor-specific perturbations in chromatin architecture, further highlighting a modular regulatory logic in genome establishment. Together, our findings reveal that early genome organization is orchestrated by an interplay of overlapping yet separable regulatory inputs.
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