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Fraser, O. J. P.

Publications and source records attributed to Fraser, O. J. P..

2 recordsLinked to original sources

TOC1 supresses PAMP-triggered immunity in Arabidopsis

The circadian clock synchronizes plants with the rhythmic changes in their environment created by the cycle of day and night. Plant-pathogen interactions are influenced by this rhythmic cycle and a functioning circadian clock is essential for eQective resistance to pathogens. In this study we investigate the relationship between PAMP-triggered immune signalling and the circadian clock in Arabidopsis. We found that early PAMP-triggered immune responses including flg22- induced FRK1 transcript levels and the flg22-induced ROS burst are enhanced at subjective dusk rather than subjective dawn. Overexpression of clock gene TOC1 supressed these defence responses to flg22 and resulted in increased susceptibility to Pseudomonas syringae. Additionally, treatment with flg22 and elf18 altered the rhythmicity of CCA1 and TOC1. These results contribute to the currently small amount of research investigating the interactions between the circadian clock and PAMP-triggered immunity. Importantly, we establish the detrimental eQect of TOC1 overexpression on PAMP-triggered defence responses. Further investigation into how clock components regulate early immune responses is essential for improving our understanding of plant health.

plant biology↗

Crosstalk between salicylic acid signaling and the circadian clock promotes an effective immune response

The rotation of Earth creates a cycle of day and night, leading to predictable changes in environmental conditions. The circadian clock synchronizes an organism with these environmental changes and alters their physiology in anticipation. Prediction of the probable timing of pathogen infection enables plants to prime their immune system without wasting resources or sacrificing growth. Here, we explore the relationship between the immune hormone salicylic acid (SA), and the circadian clock in Arabidopsis. We found that SA altered circadian rhythmicity through the SA receptor and master transcriptional coactivator, NPR1. Reciprocally, the circadian clock gates SA-induced expression of NPR1-dependent immune genes. Furthermore, the clock gene CCA1 is essential for SA-induced immunity to the major bacterial plant pathogen Pseudomonas syringae. These results reveal new interactions between the circadian clock and SA signaling which produce an effective immune response. Understanding how and why the immune response in plants is linked to the circadian clock is crucial in working towards improved crop productivity.

plant biology↗