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首页> 外文期刊>The New Phytologist >Light behind the curtain: photoregulation of nuclear architecture and chromatin dynamics in plants
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Light behind the curtain: photoregulation of nuclear architecture and chromatin dynamics in plants

机译:幕后的光:植物中核结构和染色质动力学的光调节

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摘要

Light is a powerful stimulus regulating many aspects of plant development and phenotypic plasticity. Plants sense light through the action of specialized photoreceptor protein families that absorb different wavelengths and intensities of light. Recent discoveries in the area of photobiology have uncovered photoreversible changes in nuclear organization correlated with transcriptional regulation patterns that lead to de-etiolation and photoacclimation. Novel signalling components bridging photoreceptor activation with chromatin remodelling and regulation of gene expression have been discovered. Moreover, coregulated gene loci have been shown to relocate to the nuclear periphery in response to light. The study of photoinduced changes in nuclear architecture is a flourishing area leading to major discoveries that will allow us to better understand how highly conserved mechanisms underlying genomic reprogramming are triggered by environmental and endogenous stimuli. This review aims to discuss fundamental and innovative reports demonstrating how light triggers changes in chromatin and nuclear architecture during photomorphogenesis.
机译:光是调节植物发育和表型可塑性的许多方面的有力刺激。植物通过吸收不同波长和强度的光的特殊感光蛋白家族的作用来感知光。在光生物学领域的最新发现已发现核组织的光可逆变化与转录调控模式相关,导致去异黄酮化和光适应。已发现桥接染色质重塑和基因表达调节的光感受器活化的新型信号组件。此外,已证明有核心调控的基因位点响应于光而重定位到核外围。核结构中光致变化的研究是一个蓬勃发展的领域,它带来了重大发现,这将使我们能够更好地理解环境和内源性刺激如何触发基因组重编程背后的高度保守机制。这篇综述旨在讨论基础性和创新性报告,以证明光如何在光形态发生过程中触发染色质和核结构的变化。

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