Lipid kinases PIP5K7 and PIP5K9 are required for polyamine‐triggered K+ efflux in Arabidopsis roots


Date

2020-10

Publication Type

Journal Article

ETH Bibliography

yes

Citations

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Data

Abstract

Polyamines, such as putrescine, spermidine and spermine (Spm), are low‐molecular‐weight polycationic molecules present in all living organisms. Despite their implication in plant cellular processes, little is known about their molecular mode of action. Here, we demonstrate that polyamines trigger a rapid increase in the regulatory membrane lipid, phosphatidylinositol‐4,5‐bisphosphate (PIP2), and that this increase is required for polyamine effects on K+ efflux in Arabidopsis roots. Using in vivo 32Pi‐labelling of Arabidopsis seedlings, low physiological (μM) concentrations of Spm were found to promote a rapid PIP2 increase in roots that was time‐ and dose‐dependent. Confocal imaging of a genetically encoded‐PIP2 biosensor revealed that this increase was triggered at the plasma membrane. Differential 32Pi‐labelling suggested that the increase in PIP2 was generated through activation of phosphatidylinositol‐4‐phosphate 5‐kinase (PIP5K) activity rather than inhibition of a phospholipase C or PIP2 5‐phosphatase activity. Systematic analysis of T‐DNA insertion mutants identified PIP5K7 and PIP5K9 as the main candidates involved in the Spm induced‐PIP2 response. Using non‐invasive microelectrode ion‐flux estimation (MIFE), we discovered that the Spm‐triggered K+‐efflux response was strongly reduced in pip5k7 pip5k9 seedlings. Together, our results provide biochemical‐ and genetic evidence for a physiological role of PIP2 in polyamine‐mediated signalling controlling K+ flux in plants.

Publication status

published

Editor

Book title

Volume

104 (2)

Pages / Article No.

416 - 432

Publisher

Wiley

Event

Edition / version

Methods

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Geographic location

Date collected

Date created

Subject

Arabidopsis; Phosphoinositide signalling; Phosphatidylinositol 4,5-bisphosphate (PIP2); Phosphatidylinositol 4-phosphate 5-kinase (PIP5K); Phosphateidic acid (PA); Phospholipids; Polyamines; K+ flux

Organisational unit

09493 - Rodriguez-Villalon, Antia (ehemalig) / Rodriguez-Villalon, Antia (former) check_circle

Notes

Funding

160201 - Phosphoinositides- Molecular analysis of new lipid regulators in plant phloem differentiation (SNF)

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