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Spatial Analysis of Single Fiber Cells of the Developing Ocular Lens Reveals Regulated Heterogeneity of Gene Expression

机译:显影眼晶状体的单纤维细胞的空间分析揭示了基因表达的受管制异质性

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摘要

Summary: The developing eye lens presents an exceptional paradigm for spatial transcriptomics. It is composed of highly organized long, slender transparent fiber cells, which differentiate from the edges of the anterior epithelium of the lens (equator), attended by high expression of crystallins, which generates transparency. Every fiber cell, therefore, is an optical unit whose refractive properties derive from its gene activity. Here, we probe this tangible relationship between the gene activity and the phenotype by studying the expression of all known 17 crystallins and 77 other non-crystallin genes in single fiber cells isolated from three states/regions of differentiation, allowing us to follow molecular progression at the single-cell level. The data demonstrate highly variable gene activity in cortical fibers, interposed between the nascent and the terminally differentiated fiber cell transcription. These data suggest that the so-called stochastic, highly heterogeneous gene activity is a regulated intermediate in the realization of a functional phenotype. : Cell Biology; Developmental Biology; Omics; Biological Sciences Research Methodologies Subject Areas: Cell Biology, Developmental Biology, Omics, Biological Sciences Research Methodologies
机译:摘要:制定眼睛晶状体提出了空间转录一个特殊的范例。它是由高度组织长的,细长透明纤维细胞,其区分的透镜(赤道)的前上皮边缘,通过高表达晶状的,其产生透明度出席。每一根纤维细胞,因此,是一种光学部件,其折射特性从它的基因活性派生。在这里,我们通过研究所有已知的表达探测基因活性和表型之间的这种有形关系17个晶状体和在从三个状态中分离单纤维细胞77等非晶体基因/分化的区域,使我们能够遵循分子进展在在单细胞水平。数据皮质纤维,新生的和终末分化的细胞纤维转录之间展示出高度可变的基因的活性。这些数据表明,在所谓的随机的,高度异质基因活性是在实现了功能性表型的调整的中间。 : 细胞生物学;发展生物学; omics;生物科学研究方法论学科领域:细胞生物学,发育生物学,组学,生物科学方法论研究

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