Maya Bar

Senior Academic

Melanoidins promote plant disease resistance, immunity and growth, through the salicylic acid pathway

Yigal Elad, Ellen R. Graber, Rupali Gupta, Dalia Rav-David, Meirav Leibman-Markus, Amit Kumar-Jaiswal, Noa Sela, Ludmila Tsechansky, Anat Schneider, Maya Bar

Environmental ramifications of the continued use of chemical pesticides have increased the need to identify non-toxic, naturally occurring substances that can serve as environmentally friendly disease control. Following pathogen infection, plants can develop enhanced resistance to further attack. This is known as induced resistance. Induced resistance is broadly divided into systemic acquired resistance (SAR) and induced systemic resistance (ISR). SAR generally relies on salicylic acid (SA), is commonly triggered by local infection, and can provide long-term resistance to subsequent infection. ISR is often described as being initiated by beneficial soilborne microorganisms, and as being regulated by jasmonic acid (JA) and ethylene (ET). Inducers can be chemical or biological, and usually they operate by activating systemic immunity. Among the natural inducers are biochar and humic substances, which have established positive effects on plant disease resistance and plant growth. Melanoidins, macromolecular products of the Maillard reaction, were long ago hypothesized to be amongst the building blocks of humic substances. However, to date, no information has been available regarding the specific effects of melanoidins on plant growth or disease resistance. Here, we examined the potential of melanoidins to induce disease resistance and growth. We found that melanoidins promoted cellular immunity and disease resistance against Botrytis cinerea at a level comparable to other natural inducers. Using transcriptomics and genetic defense mutants, we observed that melanoidins promote immunity and disease resistance through a swift and transient effect on the transcriptome, primarily through the salicylic acid pathway. Our results support the notion that melanoidins can find use as naturally derived disease control and growth promoting agents, and could potentially be combined with JA elicitors, to maximize the plant immune response.

Publication language English
Journal Plant Stress
Volume 19
Publication status Published - 01.01.2026
101173

Keywords

Botrytis cinerea
ISR
Immunity priming
Maillard reaction
Melanoidins
Plant-growth promotion
SAR
Salicylic acid
Tomato

ASJC Scopus subject areas

Ecology, Evolution, Behavior and Systematics
Plant Science