New regulatory mechanism reveals complex intricacies of plant immune responses

NewsGuard 100/100 Score

To ensure survival, living organisms are equipped with defensive systems that detect threats and respond with effective counter measures.

Plants are known to mount quick defenses against a variety of threats--from attacking insects to invading pathogens.

These intricate immune response mechanisms operate through a complex network that plant biologists have sought to untangle.

Crucial to these defenses is the timing and duration of immune responses. Humans are equipped with a strong and rapid inflammation response that is essential to ward off disease, but chronic and persistent inflammation can be harmful to our health.

Similarly, plants feature defenses that are timed for rapid and effective responses against pathogens, yet tightly controlled to avoid threatening the host organism.

Keini Dressano, Alisa Huffaker and their colleagues at the University of California San Diego's Division of Biological Sciences have discovered a critical "on-off" switch in the plant immune response system.

As described July 20 in their report published in Nature Plants, they identified a new regulatory switching mechanism--an RNA-binding protein--that helps turn on immune responses a few minutes after attack.

Hours later, the switch follows with a deactivation "off" signal to avoid self-inflicted damage to the plant.

These findings have provided new insights into how the complex intricacies of plant immune responses are orchestrated to successfully fight off pathogens, and lay a path forward for improving plant disease resistance to ensure future food stability."

Huffaker, Assistant Professor, Section of Cell and Developmental Biology, University of California - San Diego

The novel switch was found in Arabidopsis plants to control splicing of mRNA transcripts that encode signaling protein regulators of the plant immune response.

To turn immune defenses on, the researchers say, a simple chemical modification of the RNA-binding protein reverses mRNA splicing that normally keeps immune responses deactivated.

To turn the immune response back off, a second chemical modification of the RNA-binding protein returns mRNA splicing to "normal," and the immune response is back to being held in check.

"This work went beyond simply identifying a new regulator of plant immunity," said Huffaker, of the detailed mechanisms uncovered.

"We discovered specific chemical modifications that control regulatory function, transcriptional targets of the regulator, differential splicing of the targets and precise effects of splicing on both target function and overall plant immune responses and disease resistance."

Source:
Journal reference:

Dressano, K. et al. (2020) Dynamic regulation of Pep-induced immunity through post-translational control of defence transcript splicing. Nature Plants. doi.org/10.1038/s41477-020-0724-1.

Comments

The opinions expressed here are the views of the writer and do not necessarily reflect the views and opinions of News Medical.
Post a new comment
Post

While we only use edited and approved content for Azthena answers, it may on occasions provide incorrect responses. Please confirm any data provided with the related suppliers or authors. We do not provide medical advice, if you search for medical information you must always consult a medical professional before acting on any information provided.

Your questions, but not your email details will be shared with OpenAI and retained for 30 days in accordance with their privacy principles.

Please do not ask questions that use sensitive or confidential information.

Read the full Terms & Conditions.

You might also like...
Study highlights how age affects nasal cell response to SARS-CoV-2