拟南芥胚胎单核分辨率下基因表达的变异

Ping Kao, Michael A. Schon, M. Mosiolek, Michael D. Nodine
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引用次数: 17

摘要

在卵子和精子受精后不久,植物基因组被转录激活,并驱动一系列协调的细胞分裂,形成胚胎发生期间的基本身体计划。早期胚胎细胞彼此之间迅速分化,研究相应的基因表达动态有助于阐明潜在的细胞分化程序。然而,目前的植物胚胎转录组数据要么缺乏细胞特异性信息,要么受到周围非胚胎组织的RNA污染。我们将荧光激活的细胞核分选与单核mRNA测序相结合,在单细胞分辨率下构建拟南芥早期胚胎的基因表达图谱。除了描述细胞特异性转录组外,我们还发现了不同的表观遗传和转录调控机制在新兴胚胎细胞类型中起作用的证据。这些数据集和分析,以及我们设计的方法,有望促进发现植物胚胎中模式形成的分子机制。由单核构建的拟南芥胚胎转录组图谱揭示了细胞特异性表观遗传和转录调控特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Gene expression variation in Arabidopsis embryos at single-nucleus resolution
Soon after fertilization of egg and sperm, plant genomes become transcriptionally activated and drive a series of coordinated cell divisions to form the basic body plan during embryogenesis. Early embryonic cells rapidly diversify from each other, and investigation of the corresponding gene expression dynamics can help elucidate underlying cellular differentiation programs. However, current plant embryonic transcriptome datasets either lack cell-specific information or have RNA contamination from surrounding non-embryonic tissues. We have coupled fluorescence-activated nuclei sorting together with single-nucleus mRNA sequencing to construct a gene expression atlas of Arabidopsis thaliana early embryos at single-cell resolution. In addition to characterizing cell-specific transcriptomes, we found evidence that distinct epigenetic and transcriptional regulatory mechanisms operate across emerging embryonic cell types. These datasets and analyses, as well as the approach we devised, are expected to facilitate the discovery of molecular mechanisms underlying pattern formation in plant embryos. Summary statement A transcriptome atlas of Arabidopsis embryos constructed from single nuclei reveals cell-specific epigenetic and transcriptional regulatory features.
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