器官发生
胰腺
内分泌系统
表观遗传学
祖细胞
干细胞
肠内分泌细胞
人口
发育生物学
DNA甲基化
胚胎干细胞
计算生物学
基因
祖细胞
生物信息学
转录因子
细胞生物学
生物
遗传学
脊椎动物
斑马鱼
基因表达调控
清脆的
小型猪
细胞分化
基因表达
细胞命运测定
PDX1型
后生
进化生物学
基因表达谱
胚胎发生
作者
Kaiyuan Yang,Hannah Spitzer,Michael Sterr,Karin Hrovatin,Sean de la O,Xinghao Zhang,Eunike Sawitning Ayu Setyono,Minhaz Ud-Dean,Thomas Walzthoeni,Krzysztof Flisikowski,Tatiana Flisikowska,Angelika Schnieke,Katharina Scheibner,James M. Wells,Julie B. Sneddon,Barbara Keßler,Eckhard Wolf,Elisabeth Kemter,Fabian J. Theis,Heiko Lickert
标识
DOI:10.1038/s41467-025-64774-4
摘要
Human pancreas development remains incompletely characterized due to restricted sample access. We investigate whether pigs resemble humans in pancreas development, offering a complementary large-animal model. As pig pancreas organogenesis is unexplored, we first annotate developmental hallmarks throughout its 114-day gestation. Building on this, we construct a pig single-cell multiome pancreas atlas across all trimesters. Cross-species comparisons reveal pigs resemble humans more closely than mice in developmental tempo, epigenetic and transcriptional regulation, and gene regulatory networks. This further extends to progenitor dynamics and endocrine fate acquisition. Transcription factors regulated by NEUROG3, the endocrine master regulator, are over 50% conserved between pig and human, many being validated in human stem cell models. Notably, we uncover that during embryonic development, emerging beta-cell heterogeneity coincides with a species-conserved primed endocrine cell (PEC) population alongside NEUROG3-expressing cells. Overall, our work lays the foundation for comparative investigations and offers unprecedented insights into evolutionarily conserved pancreas organogenesis mechanisms across animal models.
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