Graduate School of Agricultural and Life Sciences, The University of Tokyo, 1-1-1 Yayoi, Bunkyo-ku, Tokyo, 113-8657 Japan.
Plant Cell Physiol. 2013 Oct;54(10):1673-83. doi: 10.1093/pcp/pct112. Epub 2013 Aug 7.
Maintenance of an appropriate magnesium ion (Mg(2+)) concentration is essential for plant growth. In Arabidopsis thaliana, the CorA-MRS2-ALR-type proteins, named MRS2/MGT family proteins, are reportedly localized in various membranes and they function in Mg transport. However, knowledge of this family in other plant species is extremely limited. Furthermore, differential diversification among dicot and monocot plants suggested by phylogenetic analysis indicates that the role of the Arabidopsis MRS2/MGT family proteins is not the same in monocot plants. For a further understanding of this family in higher plants, functional analysis and gene expression profiling of rice MRS2/MGT family members were performed. A phylogenetic tree based on the isolated mRNA sequences of nine members of the OsMRS2 family confirmed that the MRS2/MGT family consists of five clades (A-E). A complementation assay in the yeast CM66 strain showed that four of the nine members possessed the Mg(2+) transport ability. Transient green fluorescent protein (GFP) expression in the isolated rice protoplast indicated that OsMRS2-5 and OsMRS2-6, belonging to clades D and A, respectively, localized in the chloroplast. Expression levels of these genes were low in the unexpanded yellow-green leaf, but increased considerably with leaf maturation. In addition, diurnal oscillation of expression was observed, particularly in OsMRS2-6 expression in the expanded leaf blade. We conclude that OsMRS2 family members function as Mg transporters and suggest that the genes belonging to clade A encode the chloroplast-localized Mg(2+) transporter in plants.
维持适当的镁离子(Mg(2+))浓度对植物生长至关重要。在拟南芥中,CorA-MRS2-ALR 型蛋白,称为 MRS2/MGT 家族蛋白,据报道定位于各种膜中,它们在镁运输中发挥作用。然而,关于该家族在其他植物物种中的知识极其有限。此外,系统发育分析表明双子叶植物和单子叶植物之间的差异多样化表明,拟南芥 MRS2/MGT 家族蛋白在单子叶植物中的作用并不相同。为了进一步了解高等植物中的这个家族,对水稻 MRS2/MGT 家族成员进行了功能分析和基因表达谱分析。基于 9 个 OsMRS2 家族分离的 mRNA 序列构建的系统发育树证实,MRS2/MGT 家族由 5 个分支(A-E)组成。在酵母 CM66 菌株中的互补测定表明,9 个成员中的 4 个具有 Mg(2+)转运能力。在分离的水稻原生质体中瞬时绿色荧光蛋白(GFP)的表达表明,属于 D 分支和 A 分支的 OsMRS2-5 和 OsMRS2-6 分别定位于叶绿体中。这些基因的表达水平在未展开的黄绿叶片中较低,但随着叶片成熟显著增加。此外,观察到昼夜表达振荡,特别是在展开的叶片中 OsMRS2-6 的表达。我们得出结论,OsMRS2 家族成员作为镁转运体发挥作用,并表明属于 A 分支的基因编码植物中定位于叶绿体的 Mg(2+)转运体。