首页> 外文期刊>Functional Plant Biology >Two native types of phytochrome A, phyA ' and phyA '', differ by the state of phosphorylation at the N-terminus as revealed by fluorescence investigations of the Ser/Ala mutant of rice phyA expressed in transgenic Arabidopsis
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Two native types of phytochrome A, phyA ' and phyA '', differ by the state of phosphorylation at the N-terminus as revealed by fluorescence investigations of the Ser/Ala mutant of rice phyA expressed in transgenic Arabidopsis

机译:两种原生类型的植物植物植物A,Phya'和Phya',因N-末端的磷酸化状态而异,如转基因拟南芥中表达的水稻植物的Ser / Ala突变体的荧光研究所揭示

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摘要

Phytochrome A(phyA) mediates different photoresponses what may be connected with the existence of its two types, phyA' and phyA '', differing by spectroscopic, photochemical and functional properties. We investigated a role of phyA phosphorylation in their formation turning to transgenic Arabidopsis thaliana (L. Heynh.) phyA or phyAphyB mutants overexpressing rice wild-type phyA (phyA WT) or mutant phyA (phyA SA) with the first 10 serines substituted by alanines. This prevents phyA phosphorylation at these sites and modifies photoresponses. Etiolated seedlings were employed and phyA parameters were evaluated with the use of low temperature fluorescence spectroscopy and photochemistry. Germination of seeds was induced by white light (WL) pre-treatment for 15 min or 3 h. Emission spectra of rice phyA WT and phyA SA were similar and their total content was comparable. However, the phyA'/phyA '' proportion in phyA WT was high and varied with the duration of the WL pre-treatment, whereas in phyA SA it was substantially shifted towards phyA '' and did not depend on the pre-illumination. This suggests that phyA SA comprises primarily or exclusively the phyA '' pool and supports the notion that the two phyA types differ by the state of serine phosphorylation. phyA '' was also found to be much more effective in the germination induction than phyA'.
机译:Phytochrome A(Phya)调解不同的光致光官可能与其两种类型,PHYA和PHYA'的存在有关,这些类型通过光谱,光化学和功能性质不同。我们调查了植物磷酸化在其形成转向转基因拟南芥(L. Heynh。)植物或植物植物(L. Heynh。)的作用,其过表达水稻野生型植物(PHYA WT)或突变体植物(PHYA SA)与丙氨酸取代的前10个丝氨酸。这可以防止这些位点处的植物磷酸化并改变光响应。使用光学幼苗,并使用低温荧光光谱和光化学评估植物参数。通过白光(WL)预处理诱导种子的萌发15分钟或3小时。水稻PHYA WT和PHYA SA的发射光谱相似,它们的总含量可比较。然而,PHYA'/ PHYA'在PHYA WT中的比例随着WL预处理的持续时间而变化,而在PHYA SA中,它基本上朝向PHYA''并且不依赖于预照射。这表明Phya SA主要或仅包括Phya'池并支持两种Phya类型因丝氨酸磷酸化状态而异的观点。 PHYA''也被发现在比PHYA的发芽诱导中更有效。

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