Priming for Enhanced Defense

Прайминг для усиления защиты
Uwe Conrath, Gerold J. M. Beckers, Caspar Langenbach, Michał Jaśkiewicz
2015-06-12

HsfB1 transcription factorchromatin statedefense primingpattern-recognition receptorsβ-aminobutyric acid
When plants recognize potential opponents, invading pathogens, wound signals, or abiotic stress, they often switch to a primed state of enhanced defense. However, defense priming can also be induced by some natural or synthetic chemicals. In the primed state, plants respond to biotic and abiotic stress with faster and stronger activation of defense, and this is often linked to immunity and abiotic stress tolerance. This review covers recent advances in disclosing molecular mechanisms of priming. These include elevated levels of pattern-recognition receptors and dormant signaling enzymes, transcription factor HsfB1 activity, and alterations in chromatin state. They also comprise the identification of aspartyl-tRNA synthetase as a receptor of the priming activator β-aminobutyric acid. The article also illustrates the inheritance of priming, exemplifies the role of recently identified priming activators azelaic and pipecolic acid, elaborates on the similarity to defense priming in mammals, and discusses the potential of defense priming in agriculture.
1
Aspartyl-tRNA synthetase was identified as a receptor for the priming activator β-aminobutyric acid.
2
Defense priming enables faster and stronger responses to subsequent biotic and abiotic stress, often increasing immunity and stress tolerance.
3
Molecular mechanisms of priming include elevated pattern-recognition receptors, accumulation of dormant signaling enzymes, HsfB1 transcription-factor activity, and chromatin-state changes.
4
Plants can enter a primed state after sensing pathogens, wounding, abiotic stress, or selected natural and synthetic chemicals.
5
Priming can be inherited and is associated with the activities of azelaic acid and pipecolic acid, showing parallels with mammalian defense priming and potential agricultural applications.

plant defense priming state

molecular mechanisms, inheritance, chemical activation, and agricultural potential of enhanced defense responses

Publication Details
Publication Date
2015-06-12
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Uwe Conrath
Gerold J. M. Beckers
Caspar Langenbach
Michał Jaśkiewicz
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%