AI Article Synopsis

  • Trichoderma fungi release volatile compounds (VCs) that help Arabidopsis plants activate a defense mechanism called induced systemic resistance (ISR) against various pathogens.
  • The transcription factor MYB72 plays a crucial role in both ISR and responses to iron deficiency, while nitric oxide (NO) is important for regulating MYB72 during iron deficiency but its role in ISR triggered by Trichoderma VCs was previously unknown.
  • In experiments, applying Trichoderma VCs produced a surge of NO in plant roots, and blocking NO decreased MYB72 expression and compromised the ISR response against the leaf pathogen Botrytis cinerea, confirming that root NO signaling is essential for effective defense activation.

Article Abstract

Volatile compounds (VCs) of Trichoderma fungi trigger induced systemic resistance (ISR) in Arabidopsis that is effective against a broad spectrum of pathogens. The root-specific transcription factor MYB72 is an early regulator of ISR and also controls the activation of iron-deficiency responses. Nitric oxide (NO) is involved in the regulation of MYB72-dependent iron-deficiency responses in Arabidopsis roots, but the role of NO in the regulation of MYB72 and ISR by Trichoderma VCs remains unexplored. Using in vitro bioassays, we applied Trichoderma VCs to Arabidopsis seedlings. Plant perception of Trichoderma VCs triggered a burst of NO in Arabidopsis roots. By suppressing this burst using an NO scavenger, we show the involvement of NO in Trichoderma VCs-mediated regulation of MYB72 expression. Using an NO scavenger and the Arabidopsis lines myb72 and nia1nia2 in in planta bioassays, we demonstrate that NO signalling is required in the roots for activation of Trichoderma VCs-mediated ISR against the leaf pathogen Botrytis cinerea. Analysis of the defence-related genes PR1 and PDF1.2 points to the involvement of root NO in priming leaves for enhanced defence. Our results support a key role of root NO signalling in the regulation of MYB72 expression during the activation of ISR by Trichoderma VCs.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8757496PMC
http://dx.doi.org/10.1093/jxb/erab294DOI Listing

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