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Review

When MED16 Meets Plant Growth, Development, and Stress Response

1
Jiangxi Key Laboratory of Crop Growth and Development Regulation, College of Life Sciences and Resources and Environment, Yichun University, Yichun 336000, China
2
School of Life Sciences, University of Warwick, Coventry CV4 7AL, UK
*
Author to whom correspondence should be addressed.
Int. J. Mol. Sci. 2026, 27(5), 2475; https://doi.org/10.3390/ijms27052475
Submission received: 22 January 2026 / Revised: 26 February 2026 / Accepted: 5 March 2026 / Published: 7 March 2026

Abstract

Mediator is a central transcriptional coactivator that connects sequence-specific transcription factors with RNA polymerase II to control inducible gene expression in plants. MED16 is a Mediator tail module subunit that functions as a context-dependent integrator, helping coordinate developmental programs with environmental adaptation. This review summarizes current evidence for MED16 function from structural and evolutionary perspectives to physiological outputs, with emphasis on how MED16 interacts with transcription factors and other Mediator subunits to shape RNA polymerase II engagement at target loci. In terms of development, MED16 contributes to organ growth and root system architecture, and comparative studies have revealed that it plays conserved roles in lineage-specific wiring. Under abiotic stress, MED16 supports the efficient activation of stress-inducible transcription, including cold acclimation and nutrient stress responses such as phosphate starvation-dependent root remodeling. In immunity, MED16 modulates salicylic acid- and jasmonate/ethylene-associated defence outputs and can be targeted by plant viruses, which is consistent with its role in antiviral transcriptional responses. Mechanistically, MED16 participates in cooperative and competitive interactions within the Mediator complex that tune hormone-responsive outputs, exemplified by MED25-related competition in abscisic acid signalling. We highlight key limitations and future directions, including the need for mechanistic validation beyond Arabidopsis, clearer models of dosage control in crops, improved understanding of context-dependent tail configurations, and high-resolution mapping of MED16 interaction interfaces.
Keywords: MED16; Mediator complex; abiotic stress response; growth–defence trade-off; transcriptional regulation MED16; Mediator complex; abiotic stress response; growth–defence trade-off; transcriptional regulation

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MDPI and ACS Style

Li, L.; Qi, S.-L.; Shen, C.; Zhi, T.-T.; Zou, J.; Chen, G. When MED16 Meets Plant Growth, Development, and Stress Response. Int. J. Mol. Sci. 2026, 27, 2475. https://doi.org/10.3390/ijms27052475

AMA Style

Li L, Qi S-L, Shen C, Zhi T-T, Zou J, Chen G. When MED16 Meets Plant Growth, Development, and Stress Response. International Journal of Molecular Sciences. 2026; 27(5):2475. https://doi.org/10.3390/ijms27052475

Chicago/Turabian Style

Li, Luyi, Shu-Li Qi, Chunxiu Shen, Tian-Tian Zhi, Jie Zou, and Gang Chen. 2026. "When MED16 Meets Plant Growth, Development, and Stress Response" International Journal of Molecular Sciences 27, no. 5: 2475. https://doi.org/10.3390/ijms27052475

APA Style

Li, L., Qi, S.-L., Shen, C., Zhi, T.-T., Zou, J., & Chen, G. (2026). When MED16 Meets Plant Growth, Development, and Stress Response. International Journal of Molecular Sciences, 27(5), 2475. https://doi.org/10.3390/ijms27052475

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