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August 26, 2025Plants25 citationsOpen Access

Molecular Decoding of Phytohormone Crosstalk: JA-Mediated Key Regulatory Nodes and Signal Integration

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HGHui GanSWShiying WangYZYang Zi-song

Key Points

  • JA influences plant responses to stress and growth, emphasizing its role in crosstalk with other hormones.
  • Key interactions include synergistic effects like JA with ABA for defense and antagonistic effects like JA with SA for pathogen response.
  • Molecular mechanisms are governed by MYC2 transcription factor and JAZ repressor proteins, integrating multiple hormonal signals.
  • Insights from this review could guide engineering hormone signaling to improve crop resilience to environmental challenges.

Abstract

Jasmonates (JAs) are crucial phytohormones governing plant growth and defense against stresses. This review synthesizes the intricate molecular mechanisms underlying JA crosstalk with key hormones: auxin (AU), gibberellin (GA), abscisic acid (ABA), ethylene (ET), brassinosteroids (BRs), strigolactones (SLs), and salicylic acid (SA). We focus on interactions during development and stress adaptation, highlighting how these range from synergistic (e.g., JA-ABA/ET in defense, JA-AU in root growth) to antagonistic (e.g., JA-SA in pathogen response, JA-GA/BRs in growth processes). Central to this crosstalk are key regulatory nodes like the MYC2 transcription factor and JAZ repressor proteins, which integrate signals through transcription factor networks, targeted protein degradation, and post-translational modifications. By elucidating these molecular pathways, our review establishes a framework for understanding the complex regulatory logic of hormone interactions. Furthermore, it offers insights for the strategic engineering of hormone signaling (e.g., modulating JAZ stability or MYC2 activity) to enhance crop resilience to environmental challenges.

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Cite This Study

Gan et al. (2025) studied this question.

synapsesocial.com/papers/68af6210ad7bf08b1eae3500https://doi.org/10.3390/plants14172647
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