Heat stress- and heat shock transcription factor-dependent expression and activity of ascorbate peroxidase in Arabidopsis

被引:347
作者
Panchuk, II [1 ]
Volkov, RA [1 ]
Schöffl, F [1 ]
机构
[1] Univ Tubingen, Ctr Plant Mol Biol, D-72076 Tubingen, Germany
关键词
D O I
10.1104/pp.001362
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
To find evidence for a connection between heat stress response, oxidative stress, and common stress tolerance, we studied the effects of elevated growth temperatures and heat stress on the activity and expression of ascorbate peroxidase (APX). We compared wild-type Arabidopsis with transgenic plants overexpressing heat shock transcription factor 3 (HSF3), which synthesize heat shock proteins and are improved in basal thermotolerance. Following heat stress, APX activitv was positively affected in transgenic plants and correlated with a new thermostable isoform, APX(s). This enzyme was present in addition to thermolabile cytosolic APX1, the prevalent isoform in unstressed cells. In HSF3-transgenic plants, APX(s) activity was detectable at normal temperature and persisted after severe heat stress at 44degreesC. In nontransgenic plants, APX(s) was undetectable at normal temperature, but could be induced by moderate heat stress. The mRNA expression profiles of known and three new Apx genes were determined using real-time PCR. Apx1 and Apx2 genes encoding cytosolic APX were heat stress and HSF dependently expressed, but only the representations of Apx2 mRNA met the criteria that suggest identify between APX(s) and APX2: not expressed at normal temperature in wild type, strong induction by heat stress, and HSF3-dependent expression in transgenic plants. Our data suggest that Apx2 is a novel heat shock gene and that the enzymatic activity of APX2/APX(s) is required to compensate heat stress-dependent decline of APX1 activity in the cytosol. The functional roles of modulations of APX expression and the interdependence of heat stress and oxidative stress response and signaling mechanisms are discussed.
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页码:838 / 853
页数:16
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