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Overexpression of a plant U-box gene TaPUB4 confers drought stress tolerance in Arabidopsis thaliana.

Authors :
Kim, Jae Ho
Kim, Moon Seok
Seo, Yong Weon
Source :
Plant Physiology & Biochemistry. Mar2023, Vol. 196, p596-607. 12p.
Publication Year :
2023

Abstract

Drought stress frequently results in significant reductions in crop production and yield. Plant U-box proteins (PUB) play a key role in the response to abiotic stress. Despite extensive characterization of PUB in model plants, their roles in wheat abiotic stress response remains unknown. In this study, we identified the physiological function of TaPUB4 , a gene encoding the U-box and nuclear localization domains. The transcription level of TaPUB4 was induced by drought (mannitol) and abscisic acid. TaPUB4 displays E3 ubiquitin ligase activity and is located in the nucleus. Overexpression of TaPUB4 in Arabidopsis plants enhanced sensitivity with under ABA condition during early seedling developmental stages. In addition, the stomatal conductance of TaPUB4 was closer to that of WT under ABA conditions. Moreover, TaPUB4 facilitated stomatal response to elevated CO 2 emission rates under ABA conditions. TaPUB4 -overexpressing Arabidopsis , on the other hand, was more resistant to drought stress in plant development, demonstrating that TaPUB4 positively regulates drought-mediated control of plant growth. Moreover, the ectopic expression of the TaPUB4 gene was significant influential in drought sensitive metrics including survival rate, chlorophyll content, water loss, proline content and the expression of drought stress-response genes. Collectively, our results demonstrate that TaPUB4 may regulate drought stress response and ABA conditions. • TaPUB4 was significantly up regulated by ABA and drought condition. • TaPUB4 possessed E3 ligase activity and transiently expressed in the nucleus. • TaPUB4 overexpression plants exhibited hypersensitivity to ABA and tolerance to drought condition. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09819428
Volume :
196
Database :
Academic Search Index
Journal :
Plant Physiology & Biochemistry
Publication Type :
Academic Journal
Accession number :
163018416
Full Text :
https://doi.org/10.1016/j.plaphy.2023.02.001