Département de Biologie Moléculaire Végétale, Biophore, Université de Lausanne, CH-1015 Lausanne, Switzerland.
Plant J. 2011 May;66(4):689-99. doi: 10.1111/j.1365-313X.2011.04532.x. Epub 2011 Mar 23.
Inorganic phosphate (Pi) homeostasis in multi-cellular eukaryotes depends not only on Pi influx into cells, but also on Pi efflux. Examples in plants for which Pi efflux is crucial are transfer of Pi into the xylem of roots and release of Pi at the peri-arbuscular interface of mycorrhizal roots. Despite its importance, no protein has been identified that specifically mediates phosphate efflux either in animals or plants. The Arabidopsis thaliana PHO1 gene is expressed in roots, and was previously shown to be involved in long-distance transfer of Pi from the root to the shoot. Here we show that PHO1 over-expression in the shoot of A. thaliana led to a two- to threefold increase in shoot Pi content and a severe reduction in shoot growth. (31) P-NMR in vivo showed a normal initial distribution of intracellular Pi between the cytoplasm and the vacuole in leaves over-expressing PHO1, followed by a large efflux of Pi into the infiltration medium, leading to a rapid reduction of the vacuolar Pi pool. Furthermore, the Pi concentration in leaf xylem exudates from intact plants was more than 100-fold higher in PHO1 over-expressing plants compared to wild-type. Together, these results show that PHO1 over-expression in leaves leads to a dramatic efflux of Pi out of cells and into the xylem vessel, revealing a crucial role for PHO1 in Pi efflux.
多细胞真核生物的无机磷酸盐 (Pi) 稳态不仅依赖于 Pi 流入细胞,还依赖于 Pi 外排。植物中 Pi 外排至关重要的例子是 Pi 向根木质部的转移和菌根根际周质间隙中 Pi 的释放。尽管其重要性,在动物或植物中尚未鉴定出专门介导磷酸盐外排的蛋白质。拟南芥 PHO1 基因在根中表达,先前的研究表明其参与 Pi 从根到地上部的长距离转运。在这里,我们发现 PHO1 在拟南芥地上部的过表达导致地上部 Pi 含量增加两到三倍,地上部生长严重减少。31P-NMR 体内研究表明,在过表达 PHO1 的叶片中,细胞内 Pi 最初在细胞质和液泡之间正常分布,随后 Pi 大量外排到渗透介质中,导致液泡 Pi 池迅速减少。此外,与野生型相比,完整植株叶片木质部渗出物中的 Pi 浓度在 PHO1 过表达植株中高出 100 多倍。这些结果表明,PHO1 在叶片中的过表达导致 Pi 从细胞中剧烈外排到木质部导管中,揭示了 PHO1 在 Pi 外排中的关键作用。