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Dehydration-Responsive Element-Binding Factor 2C Activates PHOSPHATE TRANSPORTER1;9 in Arabidopsis thaliana in Response to Phosphate Starvation

Authors
Lee, Jae HyeokLee, Yeong MinKang, Chang HoLim, Chae Oh
Issue Date
Apr-2025
Publisher
한국식물학회
Keywords
Pi-deficient stress; Transgenic plant; Transcription factor; Transcriptional regulation
Citation
Journal of Plant Biology(한국식물학회지), v.68, no.2, pp 145 - 154
Pages
10
Indexed
SCIE
SCOPUS
KCI
Journal Title
Journal of Plant Biology(한국식물학회지)
Volume
68
Number
2
Start Page
145
End Page
154
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/77974
DOI
10.1007/s12374-025-09459-7
ISSN
1226-9239
1867-0725
Abstract
Lack of the mineral nutrient phosphate (Pi) greatly limits plant growth and development. This study addressed the role of dehydration-responsive element-binding factor 2 C (DREB2C) in regulating Pi starvation in Arabidopsis thaliana. Both levels of DREB2C transcript and DREB2C promoter-driven beta-glucuronidase activity increased under Pi-starvation conditions. Plants overexpressing DREB2C maintained their root architecture. DREB2C overexpression was associated with increased expression of PHOSPHATE TRANSPORTER1;9 (AtPHT1;9), which is responsible for phosphate translocation in Arabidopsis roots and shoots. DREB2C directly bound to the AtPHT1;9 promoter and acted as a transcriptional activator of AtPHT1;9 during Pi starvation. Moreover, expression of AtPHT1;9 and total phosphate capacity increased in plants overexpressing DREB2C. These findings demonstrated that, by regulating AtPHT1;9 expression, DREB2C played a crucial role in maintaining Pi homeostasis in plants experiencing environmental Pi starvation.
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