Qian Nianchao, Weinstein Joshua A
Department of Medicine, Section of Genetic Medicine, University of Chicago.
Pritzker School of Molecular Engineering, University of Chicago.
bioRxiv. 2023 Aug 14:2023.08.11.553025. doi: 10.1101/2023.08.11.553025.
Lymphatic, nervous, and tumoral tissues, among others, exhibit physiology that emerges from three-dimensional interactions between genetically unique cells. A technology capable of volumetrically imaging transcriptomes, genotypes, and morphologies in a single de novo measurement would therefore provide a critical view into the biological complexity of living systems. Here we achieve this by extending DNA microscopy, an imaging modality that encodes a spatio-genetic map of a specimen via a massive distributed network of DNA molecules inside it, to three dimensions and multiple length scales in developing zebrafish embryos.
淋巴组织、神经组织和肿瘤组织等,与其他组织一样,展现出源自基因独特细胞之间三维相互作用的生理学特征。因此,一种能够在单次从头测量中对转录组、基因型和形态进行三维成像的技术,将为深入了解生命系统的生物复杂性提供关键视角。在这里,我们通过将DNA显微镜技术扩展到三维和多个长度尺度,在发育中的斑马鱼胚胎中实现了这一点。DNA显微镜技术是一种成像方式,它通过样本内部大量分布式DNA分子网络对样本的空间遗传图谱进行编码。