Spatiotemporal transcriptomic atlas of mouse organogenesis using DNA nanoball-patterned arrays.

Ao Chen(BGI Group (China)), Sha Liao(BGI Group (China)), Mengnan Cheng(BGI Group (China)), Kailong Ma(BGI Group (China)), Liang Wu(BGI Group (China)), Yiwei Lai(BGI Group (China)), Xiaojie Qiu(Howard Hughes Medical Institute), Jin Min Yang(BGI Group (China)), Jiangshan Xu(BGI Group (China)), Shijie Hao(BGI Group (China)), Xin Wang(BGI Group (China)), Huifang Lü(BGI Group (China)), Xi Chen(BGI Group (China)), Xing Liu(BGI Group (China)), Xin Huang(BGI Group (China)), Li Zhao(BGI Group (China)), Hong Yan(BGI Group (China)), Yujia Jiang(BGI Group (China)), Jian Peng(BGI Group (China)), Shuai Liu(BGI Group (China)), Mengzhe Shen(BGI Group (China)), Chuanyu Liu(BGI Group (China)), Quanshui Li(BGI Group (China)), Yue Yuan(BGI Group (China)), Wei, Xiaoyu(BGI Group (China)), Huiwen Zheng(BGI Group (China)), Feng, Weimin(BGI Group (China)), Zhifeng Wang(BGI Group (China)), Liu, Yang(BGI Group (China)), Zhaohui Wang(BGI Group (China)), Yang, Yunzhi(BGI Group (China)), Haitao Xiang(BGI Group (China)), Lei Han(BGI Group (China)), Baoming Qin(Chinese Academy of Sciences), Peng-Cheng Guo(Chinese Academy of Sciences), Lai, Guangyao(Institució Catalana de Recerca i Estudis Avançats), Muñoz-Cánoves, Pura(Guangzhou Regenerative Medicine and Health Guangdong Laboratory), Maxwell, Patrick H(Chinese Academy of Sciences), Jean Paul Thiery(BGI Group (China)), Wu, Qing-Feng(BGI Group (China)), Fuxiang Zhao(BGI Group (China)), Chen, Bichao(BGI Group (China)), Mei Li(BGI Group (China)), Dai, Xi(China National GeneBank), Wang, Shuai(China National GeneBank), Haoyan Kuang(BGI Group (China)), Junhou Hui(BGI Group (China)), Wang, Liqun(BGI Group (China)), Fei, Ji-Feng(BGI Group (China)), Ou Wang(BGI Group (China)), Wei, Xiaofeng(BGI Group (China)), Haorong Lu(University of Copenhagen), Bo Wang(University of Oxford), Shiping Liu(Science for Life Laboratory), Gu, Ying(Science for Life Laboratory), Ming Ni(BGI Group (China)), Wenwei Zhang(BGI Group (China)), Feng Mu(BGI Group (China)), Ye Yin(BGI Group (China)), Huanming Yang(BGI Group (China)), Michael Lisby, Richard J. Cornall, Jan Mulder, Mathias Uhlén, Miguel A. Esteban, Yuxiang Li, Longqi Liu, Xun Xu, Jian Wang
Apollo (University of Cambridge)
May 12, 2022
Cited by 157Open Access
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Abstract

Spatially resolved transcriptomic technologies are promising tools to study complex biological processes such as mammalian embryogenesis. However, the imbalance between resolution, gene capture, and field of view of current methodologies precludes their systematic application to analyze relatively large and three-dimensional mid- and late-gestation embryos. Here, we combined DNA nanoball (DNB)-patterned arrays and in situ RNA capture to create spatial enhanced resolution omics-sequencing (Stereo-seq). We applied Stereo-seq to generate the mouse organogenesis spatiotemporal transcriptomic atlas (MOSTA), which maps with single-cell resolution and high sensitivity the kinetics and directionality of transcriptional variation during mouse organogenesis. We used this information to gain insight into the molecular basis of spatial cell heterogeneity and cell fate specification in developing tissues such as the dorsal midbrain. Our panoramic atlas will facilitate in-depth investigation of longstanding questions concerning normal and abnormal mammalian development.


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