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Phytochrome-mediated light signaling in plants: emerging trends

机译:植物中的植物色素介导的光信号传导:新兴趋势

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摘要

Phytochromes maximally absorb in the red and far-red region of the solar spectrum and play a key role in regulating plant growth and development. Our understanding of the phytochrome-mediated light perception and signal transduction has improved dramatically during the past decade. However, some recent findings challenge a few of the well-accepted earlier models regarding phytochrome structure and function. Identification of a serine/threonine specific protein phosphatase 2A (FyPP) and a type 5 protein phosphatases (PAPP5), and the phytochrome-mediated phosphorylation of phytochrome interacting factor 3 (PIF3), auxin inducible genes (Aux/IAA) and cryptochromes have opened new vistas in phytochrome biology. Importantly, the significance of proteolysis and chromatin-remodeling pathways in phytochrome signaling is becoming more apparent. The emerging concept of phytochrome as a master regulator in orchestrating downstream signaling components has become more convincing with the advent of global expression profiling of genes. Upcoming data also provide fresh insights into the nuclear localization, speckle formation, nucleo-cytoplasmic partitioning and organ-specificity aspects of phytochromes. This article highlights recent advances in phytochrome biology with emphasis on the elucidation of novel components of light signal transduction.
机译:植物色素在太阳光谱的红色和远红色区域最大程度地吸收,并在调节植物的生长和发育中发挥关键作用。在过去的十年中,我们对植物色素介导的光感知和信号转导的理解有了极大的提高。但是,一些最新发现挑战了一些关于植物色素结构和功能的早已接受的模型。丝氨酸/苏氨酸特异性蛋白磷酸酶2A(FyPP)和5型蛋白磷酸酶(PAPP5)的鉴定,以及植物色素介导的植物色素相互作用因子3(PIF3),植物生长素诱导基因(Aux / IAA)和隐色色素的磷酸化植物色素生物学的新前景。重要的是,蛋白水解和染色质重塑途径在植物色素信号传导中的重要性越来越明显。随着基因全球表达谱的出现,植物色素作为协调下游信号传导组分的主要调节剂的新概念变得更加令人信服。即将到来的数据也为植物色素的核定位,斑点形成,核质分配和器官特异性方面提供了新的见识。本文重点介绍了植物色素生物学的最新进展,重点是阐明光信号转导的新成分。

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