Morales Luis O, Brosché Mikael, Vainonen Julia P, Sipari Nina, Lindfors Anders V, Strid Åke, Aphalo Pedro J
Division of Plant Biology, Department of Biosciences, University of Helsinki, FI-00014, Helsinki, Finland; School of Chemical Technology, Department of Forest Products Technology, Aalto University, FI-00076, Aalto, Finland.
Plant Cell Environ. 2015 May;38(5):878-91. doi: 10.1111/pce.12341. Epub 2014 May 6.
Wavelengths in the ultraviolet (UV) region of the solar spectrum, UV-B (280-315 nm) and UV-A (315-400 nm), are key environmental signals modifying several aspects of plant physiology. Despite significant advances in the understanding of plant responses to UV-B and the identification of signalling components involved, there is limited information on the molecular mechanisms that control UV-B signalling in plants under natural sunlight. Here, we aimed to corroborate the previous suggested role for RADICAL-INDUCED CELL DEATH1 (RCD1) in UV-B signalling under full spectrum sunlight. Wild-type Arabidopsis thaliana and the rcd1-1 mutant were used in an experimental design outdoors where UV-B and UV-A irradiances were manipulated using plastic films, and gene expression, PYRIDOXINE BIOSYNTHESIS1 (PDX1) accumulation and metabolite profiles were analysed in the leaves. At the level of transcription, RCD1 was not directly involved in the solar UV-B regulation of genes with functions in UV acclimation, hormone signalling and stress-related markers. Furthermore, RCD1 had no role on PDX1 accumulation but modulated the UV-B induction of flavonoid accumulation in leaves of Arabidopsis exposed to solar UV. We conclude that RCD1 does not play an active role in UV-B signalling but rather modulates UV-B responses under full spectrum sunlight.
太阳光谱紫外线(UV)区域中的波长,UV-B(280 - 315纳米)和UV-A(315 - 400纳米),是改变植物生理学多个方面的关键环境信号。尽管在理解植物对UV-B的反应以及鉴定相关信号成分方面取得了重大进展,但关于在自然阳光下控制植物UV-B信号传导的分子机制的信息仍然有限。在这里,我们旨在证实先前提出的自由基诱导细胞死亡1(RCD1)在全光谱阳光下UV-B信号传导中的作用。野生型拟南芥和rcd1-1突变体用于户外实验设计,使用塑料薄膜控制UV-B和UV-A辐照度,并分析叶片中的基因表达、维生素B6生物合成1(PDX1)积累和代谢物谱。在转录水平上,RCD1不直接参与具有UV适应、激素信号传导和应激相关标记功能的基因的太阳UV-B调节。此外,RCD1对PDX1积累没有作用,但调节了暴露于太阳UV的拟南芥叶片中黄酮类化合物积累的UV-B诱导。我们得出结论,RCD1在UV-B信号传导中不发挥积极作用,而是在全光谱阳光下调节UV-B反应。