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Arabidopsis MKK4 mediates osmotic-stress response via its regulation of MPK3 activity.

Author
Abstract
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Plants have developed disparate regulatory pathways to adapt to environmental stresses. In this study, we identified MKK4 as an important mediator of plant response to osmotic stress. mkk4 mutants were more sensitive to high salt concentration than WT plants, exhibiting higher water-loss rates under dehydration conditions and additionally accumulating high levels of ROS. In contrast, MKK4-overexpressing transgenic plants showed tolerance to high salt as well as lower water-loss rates under dehydration conditions. In-gel kinase assays revealed that MKK4 regulates the activity of MPK3 upon NaCl exposure. Semi-quantitative RT-PCR analysis showed that expression of NCED3 and RD29A was lower and higher in mkk4 mutants and MKK4-overexpressing transgenic plants, respectively. Taken together, our results suggest that MKK4 is involved in the osmotic-stress response via its regulation of MPK3 activity.

Year of Publication
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1969
Journal
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Biochemical and biophysical research communications
Date Published
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2011 Jul 23
ISSN Number
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0006-291X
URL
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http://linkinghub.elsevier.com/retrieve/pii/S0006-291X(11)01290-3
DOI
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10.1016/j.bbrc.2011.07.064
Short Title
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Arabidopsis MKK4 mediates osmoticstress response via its regulat
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