核糖核酸
转录组
生物
基因表达
原位杂交
分子生物学
基因
计算生物学
滚动圆复制
结扎
DNA
细胞生物学
基因表达谱
原位
基因分型
信使核糖核酸
遗传学
杂交探针
核糖探针
核酸热力学
核酸酶保护试验
作者
Xueqian Xia,Zhaoxiang Xie,Yu Yang,Yanxiu Liu,Weiyan Ma,Bixuan Zhang,Yueping Huang,Yafang Shi,Hui Lin,Ling-Yu Zhu,Wenhua Li,Lin Chen,Rongqin Ke
出处
期刊:Small methods
[Wiley]
日期:2025-12-02
卷期号:10 (3): e01615-e01615
标识
DOI:10.1002/smtd.202501615
摘要
Spatial transcriptomics has transformed the understanding of gene regulation by enabling high-resolution mapping of RNA molecules within their native cellular and tissue environments. This is typically accomplished by capturing or imaging RNA in situ, thereby preserving spatial context. Here, an in situ RNA imaging method based on split-probe ligation and rolling circle amplification (RCA) for profiling spatial gene expression is introduced. In this approach, split-probes hybridize to adjacent regions of a target RNA fragment and are then enzymatically ligated to form circular DNA templates, which are subsequently amplified via RCA to boost the signal. It is demonstrated that this method enables robust in situ RNA detection and genotyping in both tissue sections and whole-mount tissue samples. By coupling this technique with in situ sequencing, the spatial expression patterns of 82 genes in the kidneys of healthy and diabetic male and female mice are mapped. This analysis reveals distinct localization of Aqp4 in proximal tubules and principal cells of the collecting ducts, and uncovers sex-specific transcriptomic alterations in diabetic kidneys with spatial resolution.
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