Tools - Reference - Detail

Reference Detail

Reference
Author Peng W., Zhang Y., Xie H., Yu Y., Zhu M.
Title Research progress on the synergistic regulation of MYB transcription factor-mediated developmental plasticity and stress responses in rice.
Abstract:
As a global staple crop, rice production is seriously threatened by biotic and abiotic stresses. OsMYB, which is a core transcriptional regulator in plants, mediates key processes, including secondary metabolism, organ development, and stress responses. In this paper, we systematically describe the mechanisms underlying the synergistic effects of OsMYB family members on developmental plasticity and stress adaptations. Specifically, 1R-MYB transcription factors mainly regulate metabolism and yield formation, R2R3-MYB transcription factors mainly regulate organ development and stress resistance through the bidirectional modulation of the antioxidant system and lignin synthesis, 3R-MYB transcription factors primarily affect cell cycle regulation, and 4R-MYB transcription factors have functions that remain to be characterized. Further elucidating OsMYB-mediated molecular networks may lead to new strategies for developing stress-resistant and high-yielding rice varieties, with positive implications for sustainable agricultural development.
Journal Front Plant Sci
Country China
Volume 16
Pages 1668800
Year 2025
PubMed ID 41132926
PubMed Central ID 12540342
DOI 10.3389/fpls.2025.1668800
URL -
Relation
Gene 2R_MYB36 2R_MYB84 AID1 ARM1 C CSA2 DLN231 DLN254 DLN31 FLP MS188 MYB1 MYB102 MYB11 MYB1R MYB30 MYB36C MYB3R2 MYB4 MYB45 MYB8 MYB9 MYBAS1 MYBS2 MYBS3 PHR11 PL RLM1 RRS1 RS2 SH11 TCL1 TCL2 TDF1 _ _ _ _ _
INSD -
Strain Wild Core Collection -
Induced Mutation Lines(NIG Collection) -
Sterile Seed Strain -
Lethal Embryo
Mutantion Strain
-
Stages in Each Organ
- Muant Lines (Gene)
-
Cultivated Varieties(NIG Collection) -
Stages in Each Organ -
/rice/oryzabase