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Jasmonic acid mediates Ca2+ dependent signal transduction and plant immunity

Pathogen attacks can cause significant damage to plants, posing a threaten to global food production. Plants have developed exquisite methods to rapidly store a key defensive hormone jasmonate (JA), which stimulates their entire evolutionary adaptive response to pathogen attack. However, understandi...

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Bibliographic Details
Published in:Plant science (Limerick) 2024-11, Vol.348, p.112239, Article 112239
Main Authors: Farooq, Muhammad Ahsan, Ayyaz, Ahsan, Zou, Hui-Xi, Zhou, Weijun, Hannan, Fakhir, Yan, Xiufeng
Format: Article
Language:English
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Summary:Pathogen attacks can cause significant damage to plants, posing a threaten to global food production. Plants have developed exquisite methods to rapidly store a key defensive hormone jasmonate (JA), which stimulates their entire evolutionary adaptive response to pathogen attack. However, understanding how plants initiate JA biosynthesis in response to pathogen attacks has remained elusive. In this review, we discuss the newly discovered JAV1-JAZ8-WRKY51 (JJW) complex, which plays a crucial role in regulating JA production to deter insect attacks. The JJW complex inhibits JA production in plants, maintaining a low baseline level of JA that promotes optimal plant development. However, when plants are attacked by insects, a rapid influx of calcium stimulates the JAV1 calcium-dependent protein phosphate, leading to the breakdown of the JJW complex and the activation of JA production. This surge in JA levels, initiates plant defense mechanisms against the invading insects. These findings shed light on the intricate defense system that plants have evolved to combat diseases. •Jasmonate (JA) stimulates adaptive response to pathogen attack.•JAV1-JAZ8-WRKY51 (JJW) complex plays role in regulating JA production.•JA levels initiating plant defense against the invading insects.
ISSN:0168-9452
1873-2259
1873-2259
DOI:10.1016/j.plantsci.2024.112239