Literature DB >> 25879253

Role of Arabidopsis AtPI4Kγ3, a type II phosphoinositide 4-kinase, in abiotic stress responses and floral transition.

Salina Akhter1, Mohammad N Uddin1, In S Jeong1, Dae W Kim1, Xiao-Min Liu1, Jeong D Bahk1.   

Abstract

Phosphoinositides (PIs) are essential metabolites which are generated by various lipid kinases and rapidly respond to a variety of environmental stimuli in eukaryotes. One of the precursors of important regulatory PIs, phosphatidylinositol (PtdIn) 4-phosphate, is synthesized by PtdIns 4-kinases (PI4K). Despite its wide distribution in eukaryotes, its role in plants remains largely unknown. Here, we show that the activity of AtPI4Kγ3 gene, an Arabidopsis (Arabidopsis thaliana) type II PtdIn 4-kinase, is regulated by DNA demethylation and some abiotic stresses. AtPI4Kγ3 is targeted to the nucleus and selectively bounds to a few PtdIns. It possessed autophosphorylation activity but unexpectedly had no detectable lipid kinase activity. Overexpression of AtPI4Kγ3 revealed enhanced tolerance to high salinity or ABA along with inducible expression of a host of stress-responsive genes and an optimal accumulation of reactive oxygen species. Furthermore, overexpressed AtPI4Kγ3 augmented the salt tolerance of bzip60 mutants. The ubiquitin-like domain of AtPI4Kγ3 is demonstrated to be essential for salt stress tolerance. Besides, AtPI4Kγ3-overexpressed plants showed a late-flowering phenotype, which was caused by the regulation of some flowering pathway integrators. In all, our results indicate that AtPI4Kγ3 is necessary for reinforcement of plant response to abiotic stresses and delay of the floral transition.
© 2015 Society for Experimental Biology, Association of Applied Biologists and John Wiley & Sons Ltd.

Entities:  

Keywords:  UBL domain; abiotic stress; flowering time; phosphoinositide kinase; reactive oxygen species

Mesh:

Substances:

Year:  2015        PMID: 25879253     DOI: 10.1111/pbi.12376

Source DB:  PubMed          Journal:  Plant Biotechnol J        ISSN: 1467-7644            Impact factor:   9.803


  9 in total

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2.  PI4Kγ2 Interacts with E3 Ligase MIEL1 to Regulate Auxin Metabolism and Root Development.

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Journal:  Plant Physiol       Date:  2020-08-11       Impact factor: 8.340

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Journal:  Elife       Date:  2022-09-02       Impact factor: 8.713

4.  LPIAT, a lyso-Phosphatidylinositol Acyltransferase, Modulates Seed Germination in Arabidopsis thaliana through PIP Signalling Pathways and is Involved in Hyperosmotic Response.

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Review 5.  Isoprenoid-Derived Metabolites and Sugars in the Regulation of Flowering Time: Does Day Length Matter?

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6.  An Arabidopsis mutant deficient in phosphatidylinositol-4-phosphate kinases ß1 and ß2 displays altered auxin-related responses in roots.

Authors:  Anastasiia Starodubtseva; Tetiana Kalachova; Katarzyna Retzer; Adriana Jelínková; Petre Dobrev; Jozef Lacek; Romana Pospíchalová; Jindřiška Angelini; Anne Guivarc'h; Stéphanie Pateyron; Ludivine Soubigou-Taconnat; Lenka Burketová; Eric Ruelland
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Journal:  BMC Plant Biol       Date:  2020-05-12       Impact factor: 4.215

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9.  Low Mannitol Concentrations in Arabidopsis thaliana Expressing Ectocarpus Genes Improve Salt Tolerance.

Authors:  Pramod Rathor; Tudor Borza; Yanhui Liu; Yuan Qin; Sophia Stone; Junzeng Zhang; Joseph P M Hui; Fabrice Berrue; Agnès Groisillier; Thierry Tonon; Svetlana Yurgel; Philippe Potin; Balakrishnan Prithiviraj
Journal:  Plants (Basel)       Date:  2020-11-07
  9 in total

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