植物体细胞胚胎发生的染色质可及性动态和分层转录调控网络结构

Fu-Xiang Wang, Guan-Dong Shang, Lian-Yu Wu, Geng-Zhou Xu, Xin-Yan Zhao, Jia-Wei Wang
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引用次数: 1

摘要

植物体细胞胚发生是指体细胞在不受精的情况下发育成胚胎的现象。它提供了一个强大的系统来生产转基因作物以及获得人工种子。先前的研究表明,体细胞胚胎的形成可以通过生长素处理体细胞组织,特异转录因子的异位过表达或某些染色质修饰蛋白的破坏来实现。然而,生长素如何诱导细胞全能性状态以及转录因子如何触发体细胞胚胎发生尚不清楚。在这里,我们发现生长素通过改变染色质的可及性迅速地重新连接细胞的全能性网络。染色质可及性动力学分析进一步揭示了体细胞胚胎发生的层次基因调控网络。特别是,我们发现外植体的胚胎性质是体细胞重编程的先决条件。在细胞重编程过程中,b3型全能转录因子LEC2通过直接激活早期胚胎模式基因WOX2和WOX3来促进体细胞胚胎的形成。本研究结果揭示了植物生长素促进植物细胞全能性获得的分子机制,并在细胞全能性基因与胚胎发育途径之间建立了直接联系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chromatin Accessibility Dynamics and a Hierarchical Transcriptional Regulatory Network Structure for Plant Somatic Embryogenesis
Plant somatic embryogenesis refers to a phenomenon where embryos develop from somatic cells in the absence of fertilization. It provides a powerful system to produce genetically modified crops as well as to obtain artificial seeds. Previous studies have revealed that somatic embryo formation can be achieved by the treatment of somatic tissues with auxin, ectopic overexpression of a specific transcription factor, or the disruption of certain chromatin-modifying proteins. However, how auxin induces the cell totipotent state and how transcription factors trigger somatic embryogenesis are poorly understood. Here, we show that auxin rapidly rewires the cell totipotency network by altering chromatin accessibility. The analysis of chromatin accessibility dynamics further reveals a hierarchical gene regulatory network underlying somatic embryogenesis. Particularly, we find that the embryonic nature of explants is a prerequisite for somatic cell reprogramming. Upon cell reprogramming, the B3-type totipotent transcription factor LEC2 promotes somatic embryo formation by direct activation of the early embryonic patterning genes WOX2 and WOX3. Our results thus shed light on the molecular mechanism by which auxin promotes the acquisition of plant cell totipotency, and establish a direct link between cell totipotent genes and the embryonic development pathway.
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