Impact of pulsed UV-B stress exposure on plant performance: How recovery periods stimulate secondary metabolism while reducing adaptive growth attenuation
Autor: | Janine Höll, Sina Pfleger, Rüdiger Hell, Thomas Rausch, Sonja Lindner, Jochen Bogs, Hannah Walter, Gernot Poschet, Tobias Ziegler, Drishti Joshi |
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Rok vydání: | 2018 |
Předmět: |
0106 biological sciences
0301 basic medicine biology Physiology Metabolite Mutant Wild type Promoter Plant Science biology.organism_classification 01 natural sciences Cell biology 03 medical and health sciences chemistry.chemical_compound 030104 developmental biology chemistry Arabidopsis Gene expression Secondary metabolism Transcription factor 010606 plant biology & botany |
Zdroj: | Plant, Cell & Environment. 42:801-814 |
ISSN: | 0140-7791 |
DOI: | 10.1111/pce.13409 |
Popis: | Upon continuous stress exposure, plants display attenuated metabolic stress responses due to regulatory feedback loops. Here, we have tested the hypothesis that pulsed stress exposure with intervening recovery periods should affect these feedback loops, thereby causing increased accumulation of stress-induced metabolites. The response of Arabidopsis plantlets to continuous UV-B exposure (Cuv ) was compared with that of pulsed UV-B exposure (Puv ). The differential responses to Puv versus Cuv were monitored at the level of gene expression and metabolite accumulation, using wild type (WT) and different mutant lines. In comparison with Cuv , Puv increased sinapyl and flavonol (S + F) content, whereas adaptive growth attenuation was reduced. Furthermore, in a myb4 mutant (AtMYB4, repressor-type R2R3-MYB transcription factor), the S + F content was increased only for Cuv , but not beyond the level for Puv observed in WT. These observations and the ability of AtMYB4 to repress AtMYB12/AtMYB111-mediated activation of target gene promoters (pCHS and pFLS) indicate that the increase of S + F content after Puv observed in WT plants results from reduced feedback inhibition by AtMYB4. The results support the notion that stress-induced metabolic changes not necessarily cause a growth penalty. Furthermore, the observed Puv -induced increase in flavonol accumulation may stimulate reevaluation of commercial plant production practices. |
Databáze: | OpenAIRE |
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