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Down-regulation of Kelch domain-containing F-box protein in Arabidopsis enhances the production of (poly)phenols and tolerance to ultraviolet radiation.
- Source :
-
Plant physiology [Plant Physiol] 2015 Feb; Vol. 167 (2), pp. 337-50. Date of Electronic Publication: 2014 Dec 12. - Publication Year :
- 2015
-
Abstract
- Phenylpropanoid biosynthesis in plants engenders myriad phenolics with diverse biological functions. Phenylalanine ammonia-lyase (PAL) is the first committed enzyme in the pathway, directing primary metabolic flux into a phenylpropanoid branch. Previously, we demonstrated that the Arabidopsis (Arabidopsis thaliana) Kelch domain-containing F-box proteins, AtKFB01, AtKFB20, and AtKFB50, function as the negative regulators controlling phenylpropanoid biosynthesis via mediating PAL's ubiquitination and subsequent degradation. Here, we reveal that Arabidopsis KFB39, a close homolog of AtKFB50, also interacts physically with PAL isozymes and modulates PAL stability and activity. Disturbing the expression of KFB39 reciprocally affects the accumulation/deposition of a set of phenylpropanoid end products, suggesting that KFB39 is an additional posttranslational regulator responsible for the turnover of PAL and negatively controlling phenylpropanoid biosynthesis. Furthermore, we discover that exposure of Arabidopsis to ultraviolet (UV)-B radiation suppresses the expression of all four KFB genes while inducing the transcription of PAL isogenes; these data suggest that Arabidopsis consolidates both transcriptional and posttranslational regulation mechanisms to maximize its responses to UV light stress. Simultaneous down-regulation of all four identified KFBs significantly enhances the production of (poly)phenols and the plant's tolerance to UV irradiation. This study offers a biotechnological approach for engineering the production of useful phenolic chemicals and for increasing a plant's resistance to environmental stress.<br /> (© 2015 American Society of Plant Biologists. All Rights Reserved.)
- Subjects :
- Anthocyanins metabolism
Arabidopsis genetics
Arabidopsis Proteins genetics
Enzyme Stability radiation effects
F-Box Proteins genetics
Flavonoids metabolism
Gene Expression Regulation, Plant radiation effects
Isoenzymes metabolism
Lignin metabolism
Phenylalanine Ammonia-Lyase metabolism
Phylogeny
Plants, Genetically Modified
Protein Binding radiation effects
RNA Interference radiation effects
Seedlings growth & development
Seedlings radiation effects
Tannins metabolism
Up-Regulation radiation effects
Adaptation, Physiological radiation effects
Arabidopsis physiology
Arabidopsis radiation effects
Arabidopsis Proteins metabolism
Down-Regulation
F-Box Proteins metabolism
Polyphenols biosynthesis
Ultraviolet Rays
Subjects
Details
- Language :
- English
- ISSN :
- 1532-2548
- Volume :
- 167
- Issue :
- 2
- Database :
- MEDLINE
- Journal :
- Plant physiology
- Publication Type :
- Academic Journal
- Accession number :
- 25502410
- Full Text :
- https://doi.org/10.1104/pp.114.249136