Please use this identifier to cite or link to this item: http://hdl.handle.net/1942/11008
Title: Metal-specific and NADPH oxidase dependent changes in lipoxygenase and NADPH oxidase gene expression in Arabidopsis thaliana exposed to cadmium or excess copper
Authors: REMANS, Tony 
OPDENAKKER, Kelly 
SMEETS, Karen 
MATHIJSEN, Dennis 
VANGRONSVELD, Jaco 
CUYPERS, Ann 
Issue Date: 2010
Publisher: CSIRO PUBLISHING
Source: FUNCTIONAL PLANT BIOLOGY, 37 (6). p. 532-544
Abstract: Reactive oxygen species produced by NADPH oxidase and oxylipins derived from lipoxygenase activity can signal various stress conditions and have been implicated when plants are exposed to heavy metals. Transcriptional profiling of the 10 NADPH oxidase and 6 lipoxygenase genes was performed after exposure of Arabidopsis thaliana wildtype and NADPH oxidase mutants to 5 mu M CdSO4 or 2 mu M CuSO4 for 24 h. Under these short exposures to environmentally realistic concentrations of Cd or Cu, plants modulate signalling networks that regulate the onset of adaptive responses. Metal-specific NADPH oxidase genes were upregulated by Cd but downregulated by Cu, and metal-specific lipoxygenase gene expression was observed only after Cu exposure. Genes that are responsive to both metals were upregulated and may be responsive to general oxidative stress. For all metal-responsive genes except RBOHD, distinct responses were observed between leaves and roots, which may be due to different stress intensities and signalling mechanisms. Mutation of NADPH oxidase genes had opposing effects on gene expression after Cd or Cu exposure. Upregulation of LOX1 and LOX6 in the roots after exposure to Cd depended on NADPH oxidase gene expression, whereas LOX3 and LOX6 expression was induced more strongly in NADPH oxidase mutants after Cu exposure. Furthermore, NADPH oxidases regulated their own expression level and that of other members of the gene family when exposed to Cd or Cu. The results suggest interplay between reactive oxygen species and oxylipin signalling under Cd or Cu stress, and are useful as a basis for genetic studies to unravel metal-specific signalling mechanisms.
Notes: [Remans, Tony; Opdenakker, Kelly; Smeets, Karen; Mathijsen, Dennis; Vangronsveld, Jaco; Cuypers, Ann] Hasselt Univ, Ctr Environm Sci, B-3590 Diepenbeek, Belgium. tony.remans@uhasselt.be
Keywords: abiotic stress; gene family; heavy metals; hydroponic growth; hydroponics; normalisation; OXI1; oxidative stress; qPCR; real-time PCR; real-time RT-PCR; respiratory burst oxidase homologue; signaling; signalling; superoxide dismutase;abiotic stress; gene family; heavy metals; hydroponic growth; hydroponics; normalisation; OXI1; oxidative stress; qPCR; real-time PCR; real-time RT-PCR; respiratory burst oxidase homologue; signaling; signalling; superoxide dismutase
Document URI: http://hdl.handle.net/1942/11008
ISSN: 1445-4408
e-ISSN: 1445-4416
DOI: 10.1071/FP09194
ISI #: 000277861200006
Category: A1
Type: Journal Contribution
Validations: ecoom 2011
Appears in Collections:Research publications

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