Genome-wide association study unveils ascorbate regulation by PAS/LOV PROTEIN during high light acclimation

Author:

Aarabi Fayezeh1ORCID,Ghigi Andrea1ORCID,Ahchige Micha Wijesingha1ORCID,Bulut Mustafa1ORCID,Geigenberger Peter2ORCID,Neuhaus H Ekkehard3ORCID,Sampathkumar Arun1ORCID,Alseekh Saleh14ORCID,Fernie Alisdair R14ORCID

Affiliation:

1. Central Metabolism, Max-Planck-Institute of Molecular Plant Physiology , Am Mühlenberg 1, Potsdam-Golm 14476 , Germany

2. Department Biology I, Ludwig-Maximilians-University Munich , Planegg-Martinsried 82152 , Germany

3. Plant Physiology, University of Kaiserslautern , Kaiserslautern D-67653 , Germany

4. Crop Quantitative Genetics, Centre of Plant Systems Biology and Biotechnology , Plovdiv 4000 , Bulgaria

Abstract

Abstract Varying light conditions elicit metabolic responses as part of acclimation with changes in ascorbate levels being an important component. Here, we adopted a genome-wide association-based approach to characterize the response in ascorbate levels on high light (HL) acclimation in a panel of 315 Arabidopsis (Arabidopsis thaliana) accessions. These studies revealed statistically significant SNPs for total and reduced ascorbate under HL conditions at a locus in chromosome 2. Ascorbate levels under HL and the region upstream and within PAS/LOV PROTEIN (PLP) were strongly associated. Intriguingly, subcellular localization analyses revealed that the PLPA and PLPB splice variants co-localized with VITAMIN C DEFECTIVE2 (VTC2) and VTC5 in both the cytosol and nucleus. Yeast 2-hybrid and bimolecular fluorescence complementation analyses revealed that PLPA and PLPB interact with VTC2 and that blue light diminishes this interaction. Furthermore, PLPB knockout mutants were characterized by 1.5- to 1.7-fold elevations in their ascorbate levels, whereas knockout mutants of the cry2 cryptochromes displayed 1.2- to 1.3-fold elevations compared to WT. Our results collectively indicate that PLP plays a critical role in the elevation of ascorbate levels, which is a signature response of HL acclimation. The results strongly suggest that this is achieved via the release of the inhibitory effect of PLP on VTC2 upon blue light illumination, as the VTC2-PLPB interaction is stronger under darkness. The conditional importance of the cryptochrome receptors under different environmental conditions suggests a complex hierarchy underpinning the environmental control of ascorbate levels. However, the data we present here clearly demonstrate that PLP dominates during HL acclimation.

Funder

Sonderforschungsbereich

Max Planck Society

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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