The Arabidopsis protein NPF6.2/NRT1.4 is a plasma membrane nitrate transporter and a target of protein kinase CIPK23
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...
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Veröffentlicht in: | Plant physiology and biochemistry 2021-11, Vol.168, p.239-251 |
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Sprache: | eng |
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Zusammenfassung: | 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.
•Nitrate and potassium nutrition is tightly coordinated in vascular plants.•Protein NPF6.2/NRT1.4 is a plasma membrane nitrate transporter.•Mutant plants lacking NPF6.2/NRT1.4 have disturbed potassium contents.•NPF6.2/NRT1.4 is a target of protein kinase CIPK23. |
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ISSN: | 0981-9428 1873-2690 0981-9428 |
DOI: | 10.1016/j.plaphy.2021.10.016 |