School of Agriculture, Food, & Wine and The Waite Research Institute, University of Adelaide, Glen Osmond, South Australia, Australia.
New Phytol. 2011 May;190(3):583-94. doi: 10.1111/j.1469-8137.2010.03619.x. Epub 2011 Jan 24.
• Magnesium accumulates at high concentrations in dicotyledonous leaves but it is not known in which leaf cell types it accumulates, by what mechanism this occurs and the role it plays when stored in the vacuoles of these cell types. • Cell-specific vacuolar elemental profiles from Arabidopsis thaliana (Arabidopsis) leaves were analysed by X-ray microanalysis under standard and serpentine hydroponic growth conditions and correlated with the cell-specific complement of magnesium transporters identified through microarray analysis and quantitative polymerase chain reaction (qPCR). • Mesophyll cells accumulate the highest vacuolar concentration of magnesium in Arabidopsis leaves and are enriched for members of the MGT/MRS2 family of magnesium transporters. Specifically, AtMGT2/AtMRS2-1 and AtMGT3/AtMRS2-5 were shown to be targeted to the tonoplast and corresponding T-DNA insertion lines had perturbed mesophyll-specific vacuolar magnesium accumulation under serpentine conditions. Furthermore, transcript abundance of these genes was correlated with the accumulation of magnesium under serpentine conditions, in a low calcium-accumulating mutant and across 23 Arabidopsis ecotypes varying in their leaf magnesium concentrations. • We implicate magnesium as a key osmoticum required to maintain growth in low calcium concentrations in Arabidopsis. Furthermore, two tonoplast-targeted members of the MGT/MRS2 family are shown to contribute to this mechanism under serpentine conditions.
• 双子叶植物的叶片中会积累大量的镁,但目前尚不清楚镁在哪些叶细胞类型中积累,其积累的机制是什么,以及在这些细胞类型的液泡中储存时所起的作用。• 通过 X 射线微分析,在标准和蛇纹石水培生长条件下分析了拟南芥叶片的细胞特异性液泡元素图谱,并与通过微阵列分析和定量聚合酶链反应 (qPCR) 鉴定的细胞特异性镁转运蛋白的成分进行了关联。• 在拟南芥叶片中,叶肉细胞积累的镁在液泡中的浓度最高,并且富含 MGT/MRS2 家族的镁转运蛋白。具体而言,AtMGT2/AtMRS2-1 和 AtMGT3/AtMRS2-5 被靶向到液泡膜上,相应的 T-DNA 插入系在蛇纹石条件下扰乱了叶肉细胞特异性液泡镁的积累。此外,这些基因的转录丰度与蛇纹石条件下镁的积累、在低钙积累突变体中以及在 23 个叶镁浓度不同的拟南芥生态型中相关。• 我们认为镁是拟南芥在低钙浓度下维持生长所必需的关键渗透调节剂。此外,在蛇纹石条件下,MGT/MRS2 家族的两个液泡靶向成员被证明对这种机制有贡献。