State Key Laboratory of Plant Physiology and Biochemistry, College of Life Sciences, Zhejiang University, Hangzhou 310058, China.
J Exp Bot. 2014 Mar;65(3):859-70. doi: 10.1093/jxb/ert424. Epub 2013 Dec 24.
The importance of SPX-domain-containing proteins to phosphate (Pi) homeostasis and signalling transduction has been established in plants. In this study, phylogenetic analysis revealed that OsSPX3 and OsSPX5 (SPX3/5) are paralogous SPX genes ( SYG1/Pho81/XPR1) in cereal crops. SPX3/5 are specifically responsive to Pi starvation at both the transcriptional and post-transcriptional levels. Similar tissue expression patterns of the two genes and proteins were identified by in situ hybridization and the transgenic plants harbouring SPX3pro-SPX3-GUS or SPX5pro-SPX5-GUS fusions, respectively. Both SPX3/5 are localized in the nucleus and cytoplasm in rice protoplasts and plants. SPX3/5 negatively regulate root-to-shoot Pi translocation with redundant function. The data showed that the Pi-starvation-accumulated SPX3/5 proteins are players in restoring phosphate balance following phosphate starvation. In vitro and in vivo protein-protein interaction analyses indicated that these two proteins can form homodimers and heterodimers, also implying their functional redundancy. Genetic interaction analysis indicated that SPX3/5 are functional repressors of OsPHR2 (PHR2), the rice orthologue of the central regulator AtPHR1 for Pi homeostasis and Pi signalling. These results suggest that the evolution of the additional redundant paralogous SPX genes is beneficial to plants recovering Pi homeostasis after Pi starvation by PHR2 pathway.
SPX 结构域蛋白在植物的磷酸盐(Pi)稳态和信号转导中具有重要作用。在这项研究中,系统发育分析表明,OsSPX3 和 OsSPX5(SPX3/5)是谷物作物中同源的 SPX 基因(SYG1/Pho81/XPR1)。SPX3/5 在转录和转录后水平对 Pi 饥饿均具有特异性响应。通过原位杂交和分别携带 SPX3pro-SPX3-GUS 或 SPX5pro-SPX5-GUS 融合基因的转基因植物,鉴定出这两个基因和蛋白具有相似的组织表达模式。在水稻原生质体和植物中,SPX3/5 均定位于细胞核和细胞质中。SPX3/5 负调控根到地上部 Pi 转运,具有冗余功能。数据表明,在磷酸盐饥饿后,Pi 饥饿积累的 SPX3/5 蛋白是恢复磷酸盐平衡的参与者。体外和体内蛋白质-蛋白质相互作用分析表明,这两种蛋白质可以形成同源二聚体和异源二聚体,这也暗示了它们的功能冗余。遗传相互作用分析表明,SPX3/5 是 OsPHR2(PHR2)的功能抑制剂,OsPHR2 是植物磷酸盐稳态和磷酸盐信号的中心调节因子 AtPHR1 的水稻同源物。这些结果表明,冗余同源 SPX 基因的进化有利于植物通过 PHR2 途径在 Pi 饥饿后恢复 Pi 稳态。