Repression of sucrose/ultraviolet B light-induced flavonoid accumulation in microbe-associated molecular

Mario Serrano1, Kazue Kanehara, Martha Torres

  • 1Department of Plant-Microbe Interactions, Max-Planck-Institute for Plant Breeding Research, Cologne 50829, Germany.

Plant Physiology
|November 15, 2011
PubMed

Insights

Microbe-associated molecular patterns (MAMPs) trigger immunity (MTI) by repressing flavonoids, which normally inhibit MTI signaling. This study reveals flavonoid repression enhances plant defenses and PR gene activation, suggesting a key role in immunity.

Area of Science:

  • Plant immunity
  • Molecular plant pathology
  • Plant signaling

Background:

  • Microbe-associated molecular patterns (MAMPs) trigger MAMP-triggered immunity (MTI), restricting pathogen invasion.
  • MAMP perception can repress flavonoid accumulation, but the functional significance of this is unclear.
  • FLAGELLIN-SENSING2 (FLS2) and EF-TU RECEPTOR are key pattern recognition receptors in Arabidopsis thaliana.

Purpose of the Study:

  • To investigate the functional significance of MAMP-induced flavonoid repression in plant immunity.
  • To dissect the signaling pathway downstream of FLS2 involved in flavonoid repression and defense activation.
  • To identify compounds that modulate MAMP-induced flavonoid accumulation.

Main Methods:

  • Utilizing Arabidopsis thaliana mutants (transparent testa4) lacking flavonoids.
  • Assessing FLS2-triggered activation of PATHOGENESIS-RELATED (PR) genes and bacterial defenses.
  • Screening for small molecules that alter flavonoid accumulation in response to flg22.
  • Analyzing the FLS2 pathway by uncoupling different signaling outputs.

Main Results:

  • Reactive oxygen species and callose deposition are not required for MAMP-induced flavonoid repression.
  • Flavonoid-deficient plants show enhanced FLS2-triggered PR gene activation and basal defenses.
  • Nine small molecules were identified that modulate flavonoid accumulation; one uncouples repression from other MTI outputs.
  • Data suggest flavonoid repression enhances MTI by removing an inhibitory effect on a signaling branch.

Conclusions:

  • MAMP-induced repression of flavonoid accumulation is functionally important for MTI.
  • Flavonoids act as inhibitors of a specific MTI signaling branch.
  • The study provides a model where MAMP perception removes flavonoid-mediated inhibition to boost plant immunity.

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