Institute of Plant Biochemistry and Photosyntheis (IBVF), Consejo Superior de Investigaciones Científicas and Universidad de Sevilla, 41092, Seville, Spain.
Biochimie et Physiologie Moléculaire des Plantes, Univ. Montpellier, CNRS, INRAE, 34060, Montpellier Cedex, France.
Plant Physiol Biochem. 2021 Nov;168:239-251. doi: 10.1016/j.plaphy.2021.10.016. Epub 2021 Oct 11.
Nitrate and potassium nutrition is tightly coordinated in vascular plants. Physiological and molecular genetics studies have demonstrated that several NPF/NRT1 nitrate transporters have a significant impact on both uptake and the root-shoot partition of these nutrients. However, how these traits are biochemically connected remain controversial since some NPF proteins, e.g. NPF7.3/NRT1.5, have been suggested to mediate K/H exchange instead of nitrate fluxes. Here we show that NPF6.2/NRT1.4, a protein that gates nitrate accumulation at the leaf petiole of Arabidopsis thaliana, also affects the root/shoot distribution of potassium. We demonstrate that NPF6.2/NRT1.4 is a plasma membrane nitrate transporter phosphorylated at threonine-98 by the CIPK23 protein kinase that is a regulatory hub for nitrogen and potassium nutrition. Heterologous expression of NPF6.2/NRT1.4 and NPF7.3/NRT1.5 in yeast mutants with altered potassium uptake and efflux systems showed no evidence of nitrate-dependent potassium transport by these proteins.
硝酸盐和钾营养在维管植物中紧密协调。生理和分子遗传学研究表明,几种 NPF/NRT1 硝酸盐转运蛋白对这些养分的吸收和根-茎分配都有重大影响。然而,这些特性如何在生化上联系起来仍然存在争议,因为一些 NPF 蛋白,例如 NPF7.3/NRT1.5,被认为介导 K/H 交换而不是硝酸盐通量。在这里,我们表明,NPF6.2/NRT1.4,一种在拟南芥叶柄中积累硝酸盐的蛋白,也会影响钾在根-茎中的分布。我们证明,NPF6.2/NRT1.4 是一种质膜硝酸盐转运蛋白,由 CIPK23 蛋白激酶磷酸化 Thr-98,CIPK23 蛋白激酶是氮和钾营养的调节中心。NPF6.2/NRT1.4 和 NPF7.3/NRT1.5 在改变钾摄取和外排系统的酵母突变体中的异源表达表明,这些蛋白没有依赖于硝酸盐的钾转运证据。