转录组
表型
计算生物学
生物
功能基因组学
基因组学
体内
代谢组学
基因组
遗传学
生物信息学
基因
基因表达
作者
Marco Breinig,Artem Lomakin,Elyas Heidari,Michael Ritter,Gleb D. Rukhovich,Lio Böse,Luise Butthof,Lena Wendler-Link,Hendrik Wiethoff,Tanja Poth,Felix Sahm,Peter Schirmacher,Oliver Stegle,Moritz Gerstung,Darjus F. Tschaharganeh
标识
DOI:10.1038/s41551-025-01437-1
摘要
Advancing spatially resolved in vivo functional genomes will link complex genetic alterations prevalent in cancer to critical disease phenotypes within tumour ecosystems. To this end, we developed PERTURB-CAST, a method to streamline the identification of perturbations at the tissue level. By adapting RNA-templated ligation probes, PERTURB-CAST leverages commercial 10X Visium spatial transcriptomics to integrate perturbation mapping with transcriptome-wide phenotyping in the same tissue section using a widely available single-readout platform. In addition, we present CHOCOLAT-G2P, a scalable framework designed to study higher-order combinatorial perturbations that mimic tumour heterogeneity. We apply it to investigate tissue-level phenotypic effects of combinatorial perturbations that induce autochthonous mosaic liver tumours.
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