4.6 Review

Jasmonic Acid as a Mediator in Plant Response to Necrotrophic Fungi

Journal

CELLS
Volume 12, Issue 7, Pages -

Publisher

MDPI
DOI: 10.3390/cells12071027

Keywords

circadian clock; COI1; defense responses; jasmonates; necrotrophic fungi; signaling; resistance

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Jasmonic acid and its derivatives are simple phytohormones that regulate plant physiological processes and play a role in plant interactions with fungal pathogens. The biosynthesis and accumulation of jasmonates are induced in resistant plants, but the activation of JA-dependent responses also occurs in susceptible interactions. However, many aspects of JA function and signaling in plant resistance and susceptibility to fungi remain unclear.
Jasmonic acid (JA) and its derivatives, all named jasmonates, are the simplest phytohormones which regulate multifarious plant physiological processes including development, growth and defense responses to various abiotic and biotic stress factors. Moreover, jasmonate plays an important mediator's role during plant interactions with necrotrophic oomycetes and fungi. Over the last 20 years of research on physiology and genetics of plant JA-dependent responses to pathogens and herbivorous insects, beginning from the discovery of the JA co-receptor CORONATINE INSENSITIVE1 (COI1), research has speeded up in gathering new knowledge on the complexity of plant innate immunity signaling. It has been observed that biosynthesis and accumulation of jasmonates are induced specifically in plants resistant to necrotrophic fungi (and also hemibiotrophs) such as mostly investigated model ones, i.e., Botrytis cinerea, Alternaria brassicicola or Sclerotinia sclerotiorum. However, it has to be emphasized that the activation of JA-dependent responses takes place also during susceptible interactions of plants with necrotrophic fungi. Nevertheless, many steps of JA function and signaling in plant resistance and susceptibility to necrotrophs still remain obscure. The purpose of this review is to highlight and summarize the main findings on selected steps of JA biosynthesis, perception and regulation in the context of plant defense responses to necrotrophic fungal pathogens.

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