Petunia as a model for MYB transcription factor action under salt stress

被引:6
作者
Zepeda, Baltasar [1 ]
Marcelis, Leo F. M. [1 ]
Kaiser, Elias [1 ]
Verdonk, Julian C. [1 ]
机构
[1] Wageningen Univ & Res, Dept Plant Sci, Hort & Prod Physiol, Wageningen, Netherlands
关键词
MYB; transcription factors; salinity; petunia; quality traits; SALINITY STRESS; TOLERANCE; GENE; DROUGHT; ANTHOCYANIN; ARABIDOPSIS; BIOSYNTHESIS; GROWTH; CELL; EXPRESSION;
D O I
10.3389/fpls.2023.1286547
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Salinity is a current and growing problem, affecting crops worldwide by reducing yields and product quality. Plants have different mechanisms to adapt to salinity; some crops are highly studied, and their salinity tolerance mechanisms are widely known. However, there are other crops with commercial importance that still need characterization of their molecular mechanisms. Usually, transcription factors are in charge of the regulation of complex processes such as the response to salinity. MYB-TFs are a family of transcription factors that regulate various processes in plant development, and both central and specialized metabolism. MYB-TFs have been studied extensively as mediators of specialized metabolism, and some are master regulators. The influence of MYB-TFs on highly orchestrated mechanisms, such as salinity tolerance, is an attractive research target. The versatility of petunia as a model species has allowed for advances to be made in multiple fields: metabolomic pathways, quality traits, stress resistance, and signal transduction. It has the potential to be the link between horticultural crops and lab models, making it useful in translating discoveries related to the MYB-TF pathways into other crops. We present a phylogenetic tree made with Petunia axillaris and Petunia inflata R2R3-MYB subfamily sequences, which could be used to find functional conservation between different species. This work could set the foundations to improve salinity resistance in other commercial crops in later studies.
引用
收藏
页数:7
相关论文
共 50 条
[31]   A single MYB transcription factor with multiple functions during flower development [J].
Chopy, Mathilde ;
Binaghi, Marta ;
Cannarozzi, Gina ;
Halitschke, Rayko ;
Boachon, Benoit ;
Heutink, Roel ;
Bomzan, Dikki Pedenla ;
Jaggi, Lea ;
van Geest, Geert ;
Verdonk, Julian C. ;
Kuhlemeier, Cris .
NEW PHYTOLOGIST, 2023, 239 (05) :2007-2025
[32]   Function of MYB8 in larch under PEG simulated drought stress [J].
Zhao, Qingrong ;
Xiong, Huanhuan ;
Yu, Hongying ;
Wang, Chen ;
Zhang, Sufang ;
Hao, Junfei ;
Wang, Junhui ;
Zhang, Hanguo ;
Zhang, Lei .
SCIENTIFIC REPORTS, 2024, 14 (01)
[33]   Leaf Transcription Factor Family Analysis of Halophyte Glaux maritima under Salt Stress [J].
Gu, Rui ;
Wan, Zhiqiang ;
Tang, Fang ;
Shi, Fengling ;
Yan, Mengjiao .
AGRICULTURE-BASEL, 2023, 13 (07)
[34]   A model for combinatorial regulation of the petunia R2R3-MYB transcription factor ODORANT1 [J].
Van Moerkercke, Alex ;
Haring, Michel A. ;
Schuurink, Robert C. .
PLANT SIGNALING & BEHAVIOR, 2012, 7 (04) :518-520
[35]   The nuclear transcription factor ZmCCT positively regulates salt and low nitrogen stress response in Maize [J].
Zhang, Yanbing ;
Zhou, Zhihuan ;
Xiao, Senlin ;
Li, Yipu ;
Hao, Suxiao ;
Que, Fan ;
Liu, Zhongjia ;
Shi, Liyu ;
Shi, Yingying ;
Zhang, Zhaoheng ;
Xu, Yang ;
Li, Tonghui ;
Shi, Yaxing ;
Yin, Chun ;
Song, Wei ;
Wang, Ronghuan ;
Wang, Weixiang .
PLANT STRESS, 2025, 16
[36]   R2R3-MYB TRANSCRIPTION FACTOR, MYB6, , FROM GRAPES CONFERS ENHANCED SALT STRESS TOLERANCE IN TRANSGENIC TOBACCO [J].
Han, F. F. ;
Jia, K. Y. ;
Li, K. W. ;
Zhu, Z. G. ;
Li, G. R. .
APPLIED ECOLOGY AND ENVIRONMENTAL RESEARCH, 2024, 22 (06) :5017-5031
[37]   Transcription Factor MYB as Therapeutic Target: Current Developments [J].
Klempnauer, Karl-Heinz .
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2024, 25 (06)
[38]   Overexpression of a stress-responsive MYB transcription factor of Poncirus trifoliata confers enhanced dehydration tolerance and increases polyamine biosynthesis [J].
Sun, Peipei ;
Zhu, Xiaofang ;
Huang, Xiaosan ;
Liu, Ji-Hong .
PLANT PHYSIOLOGY AND BIOCHEMISTRY, 2014, 78 :71-79
[39]   The MYB transcription factor ClPC modulates petal color and chlorophyll accumulation in watermelon [J].
Liu, Dongming ;
Zhang, Liming ;
Hu, Aofeng ;
Sun, Dongling ;
Chen, Yaxin ;
Duan, Shixiang ;
Liu, Yachen ;
Dou, Junling ;
Yang, Sen ;
Niu, Huanhuan ;
Yan, Wenkai ;
Hu, Jianbin ;
Zhu, Huayu ;
Yang, Luming .
PLANT SCIENCE, 2025, 359
[40]   Identification of the regulatory role of SsMYBS25-4 in salt stress from MYB-related transcription factors in sugarcane (Saccharum spontaneum) [J].
Wu, Songguo ;
Huang, Xiaojin ;
Fu, Chunli ;
Wan, Xincheng ;
Huang, Ke ;
Shad, Munsif Ali ;
Hu, Lihua ;
Chen, Lingling ;
Liu, Guoquan ;
Wang, Lingqiang .
INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2025, 303