School of Agriculture and Biology, Shanghai Jiao Tong University, 800 Dongchuan Road, Minhang District, Shanghai, 200240, PR China.
School of Agriculture and Biology, Shanghai Jiao Tong University, 800 Dongchuan Road, Minhang District, Shanghai, 200240, PR China; Key Laboratory of Urban Agriculture, Ministry of Agriculture, School of Agriculture and Biology, Shanghai Jiao Tong University, 800 Dongchuan Road, Minhang District, Shanghai, 200240, PR China.
Plant Sci. 2021 Feb;303:110766. doi: 10.1016/j.plantsci.2020.110766. Epub 2020 Nov 21.
UV RESISTANCE LOCUS 8 (UVR8) is a photoreceptor that regulates UV-B photomorphogenesis in plants. UV-B photon perception promotes UVR8 homodimer dissociation into monomer, which is reverted to homodimer post UV-B, forming a complete photocycle. UVR8 monomer interacts with CONSTITUTIVELY PHOTOMORPHOGENEIC 1 (COP1) to initiate UV-B signaling. The function and mechanism of Arabidopsis UVR8 (AtUVR8) are extensively investigated, however, little is known about UVR8 and its signaling mechanisms in other plant species. Tomato is a widely used model plant for horticulture research. In this report we tested whether an ortholog of AtUVR8 in Tomato (SIUVR8) can complement Arabidopsis uvr8 mutant and whether the above-mentioned key signaling mechanisms of UVR8 are conserved. Heterologous expressed SIUVR8 in an Arabidopsis uvr8 null mutant rescued the uvr8 mutant in the tested UV-B responses including hypocotyl elongation, UV-B target gene expression and anthocyanin accumulation, demonstrating that the SIUVR8 is a putative UV-B photoreceptor. Moreover, in response to UV-B, SIUVR8 forms a protein complex with Arabidopsis COP1 in plants, suggesting conserved signaling mechanism. SIUVR8 exhibits similar photocycle as AtUVR8 in plants, which highlights conserved photoreceptor activation and inactivation mechanisms.
UV 抵抗基因座 8(UVR8)是一种光受体,可调节植物中的 UV-B 光形态建成。UV-B 光子感知促进 UVR8 同源二聚体解离为单体,UV-B 后单体再重新形成同源二聚体,完成完整的光循环。UVR8 单体与组成型光形态建成 1(COP1)相互作用,启动 UV-B 信号转导。拟南芥 UVR8(AtUVR8)的功能和机制已得到广泛研究,但对其他植物物种的 UVR8 及其信号机制知之甚少。番茄是园艺研究中广泛使用的模式植物。在本报告中,我们测试了番茄中 AtUVR8 的同源物(SIUVR8)是否可以互补拟南芥 uvr8 突变体,以及 UVR8 的上述关键信号机制是否保守。在拟南芥 uvr8 缺失突变体中异源表达的 SIUVR8 挽救了在测试的 UV-B 反应中包括下胚轴伸长、UV-B 靶基因表达和花青素积累方面的 uvr8 突变体,表明 SIUVR8 是一种潜在的 UV-B 光受体。此外,在响应 UV-B 时,SIUVR8 在植物中与拟南芥 COP1 形成蛋白质复合物,表明存在保守的信号转导机制。SIUVR8 在植物中表现出与 AtUVR8 相似的光循环,突出了保守的光受体激活和失活机制。