生物
转录组
谱系(遗传)
细胞命运测定
顶端细胞
细胞生物学
悬液
细胞
遗传学
细胞分化
基因组
电池类型
基因
胚胎
转录因子
合子
胚胎发生
基因表达
作者
Xuemei Zhou,Zhenzhen Liu,Kun Shen,Peng Zhao,Meng‐Xiang Sun
标识
DOI:10.1038/s41467-020-15189-w
摘要
Abstract In Arabidopsis , a zygote undergoes asymmetrical cell division that establishes the first two distinct cell types of early proembryos, apical and basal cells. However, the genome-wide transcriptional activities that guide divergence of apical and basal cell development remain unknown. Here, we present a comprehensive transcriptome analysis of apical and basal cell lineages, uncovering distinct molecular pathways during cell lineage specification. Selective deletion of inherited transcripts and specific de novo transcription contribute to the establishment of cell lineage-specific pathways for cell fate specification. Embryo-related pathways have been specifically activated in apical cell lineage since 1-cell embryo stage, but quick transcriptome remodeling toward suspensor-specific pathways are found in basal cell lineage. Furthermore, long noncoding RNAs and alternative splicing isoforms may be involved in cell lineage specification. This work also provides a valuable lineage-specific transcriptome resource to elucidate the molecular pathways for divergence of apical and basal cell lineages at genome-wide scale.
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