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低强度蓝光诱导的Zmphot1 磷酸化介导了第一次正向光性。

Low-fluence blue light-induced phosphorylation of Zmphot1 mediates the first positive phototropism.

机构信息

Department of Biological Sciences, Tokyo Metropolitan University, Hachioji-shi, Tokyo, Japan.

Japan Society for the Promotion of Science, Kojimachi Business Center Building, Chiyoda-ku, Tokyo, Japan.

出版信息

J Exp Bot. 2019 Oct 24;70(20):5929-5941. doi: 10.1093/jxb/erz344.

Abstract

Phototropin1 (phot1) perceives low- to high-fluence blue light stimuli and mediates both the first and second positive phototropisms. High-fluence blue light is known to induce autophosphorylation of phot1, leading to the second positive phototropism. However, the phosphorylation status of phot1 by low-fluence blue light that induces the first positive phototropism had not been observed. Here, we conducted a phosphoproteomic analysis of maize coleoptiles to investigate the fluence-dependent phosphorylation status of Zmphot1. High-fluence blue light induced phosphorylation of Zmphot1 at several sites. Notably, low-fluence blue light significantly increased the phosphorylation level of Ser291 in Zmphot1. Furthermore, Ser291-phosphorylated and Ser369Ser376-diphosphorylated peptides were found to be more abundant in the low-fluence blue light-irradiated sides than in the shaded sides of coleoptiles. The roles of these phosphorylation events in phototropism were explored by heterologous expression of ZmPHOT1 in the Arabidopsis thaliana phot1phot2 mutant. The first positive phototropism was restored in wild-type ZmPHOT1-expressing plants; however, plants expressing S291A-ZmPHOT1 or S369AS376A-ZmPHOT1 showed significantly reduced complementation rates. All transgenic plants tested in this study exhibited a normal second positive phototropism. These findings provide the first indication that low-fluence blue light induces phosphorylation of Zmphot1 and that this induced phosphorylation is crucial for the first positive phototropism.

摘要

光受体 1(phot1)感知低强度到高强度的蓝光刺激,并介导第一和第二正向向光性。高强度蓝光已知会诱导 phot1 的自磷酸化,从而导致第二正向向光性。然而,诱导第一正向向光性的低强度蓝光对 phot1 的磷酸化状态尚未被观察到。在这里,我们对玉米胚芽鞘进行了磷酸蛋白质组学分析,以研究 Zmphot1 的光强依赖性磷酸化状态。高强度蓝光诱导 Zmphot1 在几个位点磷酸化。值得注意的是,低强度蓝光显著增加了 Zmphot1 中 Ser291 的磷酸化水平。此外,在低强度蓝光照射的胚芽鞘中,Ser291 磷酸化和 Ser369Ser376 二磷酸化肽的丰度明显高于遮光侧。通过在拟南芥 phot1phot2 突变体中异源表达 ZmPHOT1 来探索这些磷酸化事件在向光性中的作用。在表达野生型 ZmPHOT1 的植物中恢复了第一正向向光性;然而,表达 S291A-ZmPHOT1 或 S369AS376A-ZmPHOT1 的植物的互补率显著降低。本研究中测试的所有转基因植物均表现出正常的第二正向向光性。这些发现首次表明低强度蓝光诱导 Zmphot1 的磷酸化,并且这种诱导的磷酸化对于第一正向向光性至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/591f/6812725/2db6890679e7/erz344f0001.jpg

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