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Shedding light on large-scale chromatin reorganization in Arabidopsis thaliana.

机译:揭示了拟南芥(Arabidopsis thaliana)中大规模染色质的重组。

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摘要

Plants need to respond quickly and appropriately to various types of light signals from the environment to optimize growth and development. The immediate response to shading, reduced photon flux (low light), and changes in spectral quality involves changes in gene regulation. In the case of more persistent shade, the plant shows a dramatic change in the organization of chromatin. Both plant responses are controlled via photoreceptor signaling proteins. Recently, several studies have revealed similar features of chromatin reorganization in response to various abiotic and biotic signals, while others have unveiled intricate molecular networks of light signaling towards gene regulation. This opinion paper briefly describes the chromatin (de)compaction response from a light-signaling perspective to provide a link between chromatin and the molecular network of photoreceptors and E3 ubiquitin ligase complexes.
机译:植物需要对环境中的各种类型的光信号做出快速,适当的响应,以优化生长和发育。对阴影的立即响应,光子通量的减少(弱光)以及光谱质量的变化涉及基因调控的变化。在更持久的阴影下,植物显示出染色质组织的显着变化。两种植物反应均通过感光信号蛋白控制。最近,有几项研究揭示了响应各种非生物和生物信号的染色质重组的相似特征,而另一些研究则揭示了光信号的复杂分子网络对基因调控。这篇观点文章从光信号的角度简要描述了染色质(去)紧缩反应,以提供染色质与感光器和E3泛素连接酶复合物的分子网络之间的联系。

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