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The MYB-CC Transcription Factor PHOSPHATE STARVATION RESPONSE-LIKE 7 (PHL7) Functions in Phosphate Homeostasis and Affects Salt Stress Tolerance in Rice.
Yang, Won Tae; Bae, Ki Deuk; Lee, Seon-Woo; Jung, Ki Hong; Moon, Sunok; Basnet, Prakash; Choi, Ik-Young; Um, Taeyoung; Kim, Doh Hoon.
Afiliación
  • Yang WT; College of Life Science and Natural Resources, Dong-A University, Busan 49315, Republic of Korea.
  • Bae KD; College of Life Science and Natural Resources, Dong-A University, Busan 49315, Republic of Korea.
  • Lee SW; College of Life Science and Natural Resources, Dong-A University, Busan 49315, Republic of Korea.
  • Jung KH; Graduate School of Green-Bio Science, Kyung Hee University, Yongin 17104, Republic of Korea.
  • Moon S; Graduate School of Green-Bio Science, Kyung Hee University, Yongin 17104, Republic of Korea.
  • Basnet P; Department of Agriculture and Life Industry, Kangwon National University, Chuncheon 24341, Republic of Korea.
  • Choi IY; Department of Agriculture and Life Industry, Kangwon National University, Chuncheon 24341, Republic of Korea.
  • Um T; Department of Agriculture and Life Science Institute, Kangwon National University, Chuncheon 24341, Republic of Korea.
  • Kim DH; College of Life Science and Natural Resources, Dong-A University, Busan 49315, Republic of Korea.
Plants (Basel) ; 13(5)2024 Feb 26.
Article en En | MEDLINE | ID: mdl-38475483
ABSTRACT
Inorganic phosphate (Pi) homeostasis plays an important role in plant growth and abiotic stress tolerance. Several MYB-CC transcription factors involved in Pi homeostasis have been identified in rice (Oryza sativa). PHOSPHATE STARVATION RESPONSE-LIKE 7 (PHL7) is a class II MYC-CC protein, in which the MYC-CC domain is located at the N terminus. In this study, we established that OsPHL7 is localized to the nucleus and that the encoding gene is induced by Pi deficiency. The Pi-responsive genes and Pi transporter genes are positively regulated by OsPHL7. The overexpression of OsPHL7 enhanced the tolerance of rice plants to Pi starvation, whereas the RNA interference-based knockdown of this gene resulted in increased sensitivity to Pi deficiency. Transgenic rice plants overexpressing OsPHL7 produced more roots than wild-type plants under both Pi-sufficient and Pi-deficient conditions and accumulated more Pi in the shoots and roots. In addition, the overexpression of OsPHL7 enhanced rice tolerance to salt stress. Together, these results demonstrate that OsPHL7 is involved in the maintenance of Pi homeostasis and enhances tolerance to Pi deficiency and salt stress in rice.
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Texto completo: 1 Bases de datos: MEDLINE Idioma: En Revista: Plants (Basel) Año: 2024 Tipo del documento: Article

Texto completo: 1 Bases de datos: MEDLINE Idioma: En Revista: Plants (Basel) Año: 2024 Tipo del documento: Article