ReviewFrontiers in plant science2025
Structure, evolution, and roles of MYB transcription factors proteins in secondary metabolite biosynthetic pathways and abiotic stresses responses in plants: a comprehensive review.
Review in Frontiers in plant science, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 21 papers.
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Who cites it
21 citing papers in PubMed.
- Overview of molecular mechanisms underlying stress responses; signaling pathways and secondary metabolite synthesis in plants.Plant molecular biology · 2026Review
- MYB Factors: Hubs of Plant Stress and Hormone Crosstalk.Plant biotechnology journal · 2026Review
- Elevated ozone reprograms secondary metabolism in Abelmoschus moschatus pods, enhancing antidiabetic and antiobesity bioactivities.Plant cell reports · 2026Article
- The nodulation and yield paradox: 35S:VlMYBA2 transgenic background enhances mung bean nodulation with Bacillus sp. I-I inoculation, whereas Bacillus sp. I-I alone optimizes yield.World journal of microbiology & biotechnology · 2026Article
- Article
- Effect of Different Forms of Antimony (Sb) on Genes Encoding Functions Associated with Root Morphology, Physiology and Root Cell Wall in Rice (Plants (Basel, Switzerland) · 2026Article
- An R2R3-MYB Gene GhMYBPA of Gossypium hirsutum Promotes Proanthocyanidin Accumulation and Improves Heat Tolerance in Arabidopsis.Molecular biotechnology · 2026Article
- Article
- Genome-wide identification and expression profiling of the ERF subfamily in Polygala tenuifolia seedlings under drought stress.BMC plant biology · 2026Article
- Genome-Wide Study of MYB Transcription Factors in Maize and Their Essential Roles in Male Fertility and Other Biological Processes.International journal of molecular sciences · 2026Article
- Article
- Assessment of the effect of paclobutrazol treatment on the activity of genes related to flavonoid synthesis in Brassica napus under salt stress conditions.BMC plant biology · 2026Article
- PbrMYB31 enhances abiotic stress tolerance by promoting suberin biosynthesis in Arabidopsis.BMC plant biology · 2026Article
- CHD-18 g-modulated Pseudomonas taxa support poplar salt tolerance.The ISME journal · 2026Article
- Molecular Mechanisms and Experimental Strategies for Understanding Plant Drought Response.Plants (Basel, Switzerland) · 2026Review
- Mechanisms of acclimation regulation and stress response to UV-B inFrontiers in plant science · 2026Article
- ComparativeFrontiers in plant science · 2026Article
- Article
- Role of phytohormones and nanomaterials in enhancing plant tolerance to abiotic stress.Frontiers in plant science · 2026Review
- MYB transcription factors as context-dependent regulatory modules for precision crop improvement.Frontiers in plant science · 2026Article
Corrections and comments
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Authors and funding
3 authors.
Funding
No grant is acknowledged in the PubMed record.
Abstract
Unlike mobile organisms, plants are sessile and thus more vulnerable to environmental stressors. Among these, abiotic stress represents a major constraint that profoundly affects plant growth and development. To cope with these challenges, plants have evolved sophisticated adaptive mechanisms to enhance their stress resilience. Transcription factors (TFs) play a pivotal role in these adaptive processes, as they are activated by diverse stress signals and subsequently modulate the expression of stress-responsive genes, thereby improving plant survival under adverse conditions. The MYB TF family, one of the largest TF families in plants, participates in regulating various biological processes, including growth and development, phytohormone signaling, secondary metabolism and abiotic stress responses. Numerous studies have demonstrated that MYB TFs, upon activation by environmental stimuli, can bind to cis-acting elements in the promoters of downstream stress-responsive genes or interact with other proteins to fine-tune their expression, ultimately enhancing plant tolerance to abiotic stress. Additionally, MYB TFs are integral components of phytohormone signaling pathways involved in stress adaptation. Although extensive research has been conducted on plant stress responses, the interplay between MYB TFs and phytohormones in mediating abiotic stress tolerance remains underexplored. In this review, we examine the structural features, classification, and functional mechanisms of MYB transcription factors. Furthermore, we summarize current knowledge on the roles of MYB TFs (both hormone-dependent and hormone-independent) in plant responses to various abiotic stresses, including drought, salinity, extreme temperatures, nutrient deficiencies, and heavy metal toxicity. We also discuss their regulatory roles in the biosynthesis of secondary metabolites, such as glucosinolates, flavonoids, terpenoids, lignans, and astragalosides. In conclusion, this review consolidates existing findings and provides a foundation for uncovering novel functions and regulatory mechanisms of the MYB TF family. Future research should prioritize MYB TFs as central regulators of abiotic stress-responsive gene networks, with the potential to improve crop stress tolerance and yield, thereby addressing global food security challenges.
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