School of Natural Sciences, Department of Zoology, Trinity College Dublin, The University of Dublin, Dublin 2, Ireland.
MRC Human Genetics Unit, Institute of Cancer and Genetics, University of Edinburgh, Crewe Road, Edinburgh EH4 2XU, UK.
Development. 2022 Aug 15;149(16). doi: 10.1242/dev.200312.
Wnt signalling controls patterning and differentiation across many tissues and organs of the developing embryo through temporally and spatially restricted expression of multi-gene families encoding ligands, receptors, pathway modulators and intracellular components. Here, we report an integrated analysis of key genes in the 3D space of the mouse embryo across multiple stages of development. We applied a method for 3D/3D image transformation to map all gene expression patterns to a single reference embryo for each stage, providing both visual analysis and volumetric mapping allowing computational methods to interrogate the combined expression patterns. We identify territories where multiple Wnt and Fzd genes are co-expressed and cross-compare all patterns, including all seven Wnt paralogous gene pairs. The comprehensive analysis revealed regions in the embryo where no Wnt or Fzd gene expression is detected, and where single Wnt genes are uniquely expressed. This work provides insight into a previously unappreciated level of organisation of expression patterns, as well as presenting a resource that can be utilised further by the research community for whole-system analysis.
Wnt 信号通过在发育胚胎的许多组织和器官中时空限制表达多基因家族编码配体、受体、途径调节剂和细胞内成分来控制模式形成和分化。在这里,我们报告了对多个发育阶段的小鼠胚胎三维空间中关键基因的综合分析。我们应用了一种三维/三维图像转换方法,将所有基因表达模式映射到每个阶段的单个参考胚胎上,提供了可视化分析和体积映射,允许计算方法研究组合表达模式。我们确定了多个 Wnt 和 Fzd 基因共表达的区域,并对所有模式进行交叉比较,包括所有七个 Wnt 基因的同源基因对。全面的分析揭示了胚胎中没有 Wnt 或 Fzd 基因表达的区域,以及单个 Wnt 基因独特表达的区域。这项工作提供了对表达模式以前未被认识的组织水平的深入了解,并提供了一个资源,研究社区可以进一步用于整个系统分析。