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September 27, 2025Science Advances7 citationsOpen Access

The polymerase-associated factor 1 complex modulates the growth-defense tradeoff in Arabidopsis

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YGYuyu GuoCLCunliang LiYLYao Liu

Key Points

  • PAF1C represses defense genes, enhancing growth while balancing plant defenses.
  • Loss of PAF1C leads to increased defense gene expression and improved disease resistance.
  • PAF1C interacts with histone deacetylases, influencing gene expression through histone modifications.
  • The study identifies the NPR1-PAF1C-HDA6 module as crucial for regulating plant immune responses.

Abstract

Plants have evolved sophisticated mechanisms to balance growth and defense. The evolutionarily conserved polymerase-associated factor 1 complex (PAF1C) plays multiple roles in transcription. Here, we show that PAF1C regulates the growth-defense tradeoff by repressing defense genes expression in Arabidopsis . Loss of PAF1C leads to increased expression of defense genes, enhanced disease resistance, but compromised growth. Mechanistically, PAF1C binds to defense genes, where it interacts with histone deacetylases, such as HDA6, to promote histone deacetylation, thereby repressing defense genes expression. The plant immune hormone salicylic acid (SA) promotes the interaction between PAF1 and the SA receptor NPR1, which functions as an E3 ubiquitin ligase to mediate the polyubiquitination and degradation of PAF1. Genetically, loss of PAF1 suppresses the immune defects of the npr1 mutant, supporting the notion that PAF1 functions downstream of NPR1. Collectively, this study identifies the NPR1-PAF1C-HDA6 module that regulates the growth-defense tradeoff.

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Cite This Study

Guo et al. (2025) studied this question.

synapsesocial.com/papers/68d7cc6aeebfec0fc5238e20https://doi.org/10.1126/sciadv.ady5876
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