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October 3, 2025New Phytologist11 citations

MYB46 integrates cuticle and cell wall remodeling to coordinate drought tolerance and pathogen resistance in Arabidopsis

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SJShurong JinYSYuyang SongYWYuxin Wang

Key Points

  • MYB46 is essential for coordinating cuticle and cell wall dynamics under stress, enhancing pathogen resistance while compromising drought tolerance.
  • MYB46 loss-of-function mutants showed reduced cutin/wax accumulation, increased cuticle permeability, and increased susceptibility to drought but improved pathogen resistance.
  • Observations included gene expression profiles and direct activation of cuticle biosynthesis genes by MYB46, revealing its regulatory impact.
  • The study highlights MYB46 as crucial for balancing structural integrity and adaptive responses in Arabidopsis under environmental stress.

Abstract

Summary The plant cuticle and cell wall form a dynamic barrier against environmental stresses. While MYB46 is a known regulator of secondary cell wall biosynthesis, its role in cuticle formation and the interplay between these two structural barriers in stress responses remained unexplored. This study investigated whether MYB46 modulates cuticle biosynthesis and permeability, influencing drought tolerance and pathogen resistance in Arabidopsis . We generated MYB46 loss‐of‐function mutants ( myb46‐3 , myb46‐4 ) and overexpression lines. Cuticle permeability, cutin/wax compositions in stems and leaves, and associated gene expression profiles and direct transcriptional regulation by MYB46 were analyzed. MYB46 mutants exhibited reduced cutin/wax accumulation and increased cuticle permeability. This led to enhanced resistance to Botrytis cinerea via upregulation of defense‐related genes (e.g. cell wall‐bound peroxidases and PAD3) but resulted in decreased drought tolerance. Conversely, MYB46 overexpression reinforced cuticle integrity, increased cutin/wax accumulation, and improved drought tolerance without affecting disease susceptibility. MYB46 directly activated cuticle biosynthesis genes ( LACS1 , LACS2 , KCS1 , KCS19 , CER1 ), linking it to cuticle regulation. These findings establish MYB46 as a dual regulator integrating cuticle and cell wall remodeling, balancing structural defense against pathogens with adaptive responses to drought. This highlights its pivotal role in coordinating stress adaptation mechanisms in Arabidopsis .

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Cite This Study

Jin et al. (2025) studied this question.

synapsesocial.com/papers/68e034f7f0e39f13e7fa337fhttps://doi.org/10.1111/nph.70619
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Dual Regulation of Cuticle and Cell Wall Biosynthesis by BnaC9.MYB46 Confers Drought Tolerance in Brassica napus.2025 · 11 citations
  2. 2<scp>MYB16</scp> and <scp>MYB106</scp> promote conical cell morphogenesis by modulating cuticle production, apoplastic <scp>pH</scp> , and microtubule organization2026
  3. 3<i>At</i>MYB41 acts as a dual‐function transcription factor that regulates the formation of lipids in an organ‐ and development‐dependent manner2024 · 6 citations
  4. 4Editing of <scp> <i>SlMYB60</i> </scp> Reveals a Role in Cuticle Formation in Tomato2026
  5. 5Wheat MYB46-like Transcription Factor Stimulates Cuticular Wax Biosynthesis2026