Enhancing plant resistance against pests and diseases by priming plant immunity is an attractive concept for crop protection because it provides long-lasting broad-spectrum protection against pests and diseases. This review provides a selected overview of the latest advances in research on the molecular, biochemical and epigenetic drivers of plant immune priming. We review recent findings about the perception and signalling mechanisms controlling the onset of priming by the plant stress metabolite β-aminobutyric acid. In addition, we review the evidence for epigenetic regulation of long-term maintenance of priming and discuss how stress-induced reductions in DNA hypomethylation at transposable elements can prime defence genes. Finally, we e...
Plants can acquire enhanced resistance to pathogens after treatment with necrotizing attackers, nonp...
Abiotic stresses, including drought, salinity, extreme temperature, and pollutants, are the main cau...
Under natural growth conditions, plants experience various and repetitive biotic and abiotic stresse...
Plants can prime their innate immune system after perception of certain environmental signals (Conra...
Upon treatment with a resistance-inducing agent, plants acquire an enhanced defensive capacity that ...
The environment changes faster than the ability of genetic recombination to generate natural genetic...
Plants can be primed to respond faster and more strongly to stress and multiple pathways, specific f...
The plant immune system protects against pests and diseases. The recognition of stress-related molec...
Exposure of plants to stress conditions or to certain chemical elicitors can establish a primed stat...
Priming reflects the capacity of plants to memorise environmental stress experience and improve thei...
Plants are capable to enhance basal defense strategies against harmful organisms upon the perception...
In plants and animals acquired immunity to biotic and abiotic stress is associated with priming of c...
International audienceInfection of plants by necrotizing pathogens or colonization of plant roots wi...
Botrytis cinerea is a necrotrophic pathogen that is reported to cause disease in more than 1400 plan...
Infection of plants by necrotizing pathogens or colonization of plant roots with certain beneficial ...
Plants can acquire enhanced resistance to pathogens after treatment with necrotizing attackers, nonp...
Abiotic stresses, including drought, salinity, extreme temperature, and pollutants, are the main cau...
Under natural growth conditions, plants experience various and repetitive biotic and abiotic stresse...
Plants can prime their innate immune system after perception of certain environmental signals (Conra...
Upon treatment with a resistance-inducing agent, plants acquire an enhanced defensive capacity that ...
The environment changes faster than the ability of genetic recombination to generate natural genetic...
Plants can be primed to respond faster and more strongly to stress and multiple pathways, specific f...
The plant immune system protects against pests and diseases. The recognition of stress-related molec...
Exposure of plants to stress conditions or to certain chemical elicitors can establish a primed stat...
Priming reflects the capacity of plants to memorise environmental stress experience and improve thei...
Plants are capable to enhance basal defense strategies against harmful organisms upon the perception...
In plants and animals acquired immunity to biotic and abiotic stress is associated with priming of c...
International audienceInfection of plants by necrotizing pathogens or colonization of plant roots wi...
Botrytis cinerea is a necrotrophic pathogen that is reported to cause disease in more than 1400 plan...
Infection of plants by necrotizing pathogens or colonization of plant roots with certain beneficial ...
Plants can acquire enhanced resistance to pathogens after treatment with necrotizing attackers, nonp...
Abiotic stresses, including drought, salinity, extreme temperature, and pollutants, are the main cau...
Under natural growth conditions, plants experience various and repetitive biotic and abiotic stresse...