نتایج جستجو برای: jasmonates

تعداد نتایج: 346  

Journal: :Tree physiology 2015
Melanie Morales Queila S Garcia Sergi Munné-Bosch

The physiological response of plants growing in their natural habitat is strongly determined by seasonal variations in environmental conditions and the interaction of abiotic and biotic stresses. Here, leaf water and nutrient contents, changes in cellular redox state and endogenous levels of stress-related phytohormones (abscisic acid (ABA), salicylic acid and jasmonates) were examined during t...

2016
Adeline Chauvin Aurore Lenglet Jean-Luc Wolfender Edward E. Farmer

Embryophyte genomes typically encode multiple 13-lipoxygenases (13-LOXs) that initiate the synthesis of wound-inducible mediators called jasmonates. Little is known about how the activities of these different LOX genes are coordinated. We found that the four 13-LOX genes in Arabidopsis thaliana have different basal expression patterns. LOX2 expression was strong in soft aerial tissues, but was ...

2013
Danielle Goodspeed E. Wassim Chehab Michael F. Covington Janet Braam

Plants have evolved robust mechanisms to perceive and respond to diverse environmental stimuli.  The plant phytohormones jasmonates and salicylates play key roles in activating biotic stress response pathways. Recent findings demonstrate that basal levels of both jasmonates and salicylates in Arabidopsis are under the control of the circadian clock and that clock-controlled jasmonate accumulati...

2016
Eli J. Borrego Michael V. Kolomiets

Of the over 600 oxylipins present in all plants, the phytohormone jasmonic acid (JA) remains the best understood in terms of its biosynthesis, function and signaling. Much like their eicosanoid analogues in mammalian system, evidence is growing for the role of the other oxylipins in diverse physiological processes. JA serves as the model plant oxylipin species and regulates defense and developm...

Journal: :Biochemical Society transactions 2000
H Weichert A Kolbe C Wasternack I Feussner

In barley leaves 13-lipoxygenases are induced by jasmonates. This leads to induction of lipid peroxidation. Here we show by in vitro studies that these processes may further lead to autoxidative formation of (2E)-4-hydroxy-2-hexenal from (3Z)-hexenal.

Journal: :Journal of Plant Biochemistry & Physiology 2013

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