Jasmonates: An Update on Biosynthesis, Signal Transduction and Action in Plant Stress Response, Growth and Development

Жасмонаты: современное состояние исследований биосинтеза, передачи сигнала и действия в ответе растений на стресс, а также в их росте и развитии
Claus Wasternack
2007-05-18

jasmonate biosynthesisjasmonate signal transductionoxylipinsplant stress responsetranscription factors
BACKGROUND: Jasmonates are ubiquitously occurring lipid-derived compounds with signal functions in plant responses to abiotic and biotic stresses, as well as in plant growth and development. Jasmonic acid and its various metabolites are members of the oxylipin family. Many of them alter gene expression positively or negatively in a regulatory network with synergistic and antagonistic effects in relation to other plant hormones such as salicylate, auxin, ethylene and abscisic acid. SCOPE: This review summarizes biosynthesis and signal transduction of jasmonates with emphasis on new findings in relation to enzymes, their crystal structure, new compounds detected in the oxylipin and jasmonate families, and newly found functions. CONCLUSIONS: Crystal structure of enzymes in jasmonate biosynthesis, increasing number of jasmonate metabolites and newly identified components of the jasmonate signal-transduction pathway, including specifically acting transcription factors, have led to new insights into jasmonate action, but its receptor(s) is/are still missing, in contrast to all other plant hormones.
1
Despite progress in defining jasmonate biosynthesis and signaling, the jasmonate receptor remains unidentified, unlike receptors for other plant hormones.
2
Jasmonate metabolites modulate gene expression through synergistic and antagonistic interactions with salicylate, auxin, ethylene, and abscisic acid signaling.
3
Jasmonates are lipid-derived oxylipins that regulate plant responses to abiotic and biotic stresses, growth, and development.
4
New enzyme crystal structures, additional jasmonate and oxylipin metabolites, and pathway components have expanded understanding of jasmonate biosynthesis and signaling.
5
Specifically acting transcription factors have been identified as components of the jasmonate signal-transduction pathway.

Jasmonates and their metabolites in plants

Their biosynthesis, signal transduction, and roles in plant stress responses, growth, and development

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2007-05-18
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Claus Wasternack
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