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Transcription Is Just the Beginning of Gene Expression Regulation: The Functional Significance of RNA-Binding Proteins to Post-transcriptional Processes in Plants

机译:转录只是基因表达调控的开始:RNA结合蛋白对植物后转录过程的功能意义

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摘要

Plants have developed sophisticated mechanisms to compensate and respond to ever-changing environmental conditions. Research focus in this area has recently shifted towards understanding the post-transcriptional mechanisms that contribute to RNA transcript maturation, abundance and function as key regulatory steps in allowing plants to properly react and adapt to these never-ending shifts in their environments. At the center of these regulatory mechanisms are RNA-binding proteins (RBPs), the functional mediators of all post-transcriptional processes. In plants, RBPs are becoming increasingly appreciated as the critical modulators of core cellular processes during development and in response to environmental stimuli. With the majority of research on RBPs and their functions historically in prokaryotic and mammalian systems, it has more recently been unveiled that plants have expanded families of conserved and novel RBPs compared with their eukaryotic counterparts. To better understand the scope of RBPs in plants, we present past and current literature detailing specific roles of RBPs during stress response, development and other fundamental transition periods. In this review, we highlight examples of complex regulation coordinated by RBPs with a focus on the diverse mechanisms of plant RBPs and the unique processes they regulate. Additionally, we discuss the importance for additional research into understanding global interactions of RBPs on a systems and network-scale, with genome mining and annotation providing valuable insight for potential uses in improving crop plants in order to maintain high-level production in this era of global climate change.
机译:植物制定了复杂的机制,以补偿和响应不断变化的环境条件。该地区的研究重点最近已经改变了有助于RNA转录成熟,丰度和功能的转录后机制,作为允许植物适当地反应和适应其环境中的这些永无止境的转变的关键调节步骤。在这些调节机制的中心是RNA结合蛋白(RBPS),所有转录后工艺的功能介质。在植物中,RBPS作为核心细胞过程的关键调节剂在开发过程中并且响应环境刺激而变得越来越欣赏。凭借历史上历史上的RBP和历史上的大部分研究,它最近揭开了植物与其真核生核同行相比扩展了植物和新的RBP的家庭。为了更好地了解植物中的RBPS范围,我们在应力反应,发展和其他基本过渡期间提供过去和当前文献细节RBP的特定作用。在这篇综述中,我们突出了由RBP协调的复杂规则的例子,重点是植物RBP的各种机制以及它们调节的独特过程。此外,我们讨论了对系统和网络规模对RBP的全球相互作用的额外研究的重要性,基因组挖掘和注释为改善作物植物而言,提供有价值的洞察力,以便在这个时代保持高级别的生产全球气候变化。

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