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Published on: May 21, 2019
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.
Abstract:
Recognition of microbe-associated molecular patterns (MAMPs) leads to the generation of MAMP-triggered immunity (MTI), which restricts the invasion and propagation of potentially infectious microbes. It has been described that the perception of different bacterial and fungal MAMPs causes the repression of flavonoid induction upon light stress or sucrose application. However, the functional significance of this MTI-associated signaling output remains unknown. In Arabidopsis (Arabidopsis thaliana), FLAGELLIN-SENSING2 (FLS2) and EF-TU RECEPTOR act as the pattern recognition receptors for the bacterial MAMP epitopes flg22 (of flagellin) and elf18 (of elongation factor [EF]-Tu), respectively. Here, we reveal that reactive oxygen species spiking and callose deposition are dispensable for the repression of flavonoid accumulation by both pattern recognition receptors. Importantly, FLS2-triggered activation of PATHOGENESIS-RELATED (PR) genes and bacterial basal defenses are enhanced in transparent testa4 plants that are devoid of flavonoids, providing evidence for a functional contribution of flavonoid repression to MTI. Moreover, we identify nine small molecules, of which eight are structurally unrelated, that derepress flavonoid accumulation in the presence of flg22. These compounds allowed us to dissect the FLS2 pathway. Remarkably, one of the identified compounds uncouples flavonoid repression and PR gene activation from the activation of reactive oxygen species, mitogen-activated protein kinases, and callose deposition, corroborating a close link between the former two outputs. Together, our data imply a model in which MAMP-induced repression of flavonoid accumulation serves a role in removing the inherent inhibitory action of flavonoids on an MTI signaling branch.
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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