An Arabidopsis glutathione peroxidase functions as both a redox transducer and a scavenger in abscisic acid and drought stress responses

被引:412
|
作者
Miao, Yuchen
Lv, Dong
Wang, Pengcheng
Wang, Xue-Chen
Chen, Jia
Miao, Chen
Song, Chun-Peng [1 ]
机构
[1] Henan Med Univ, Dept Biol, Henan Key Lab Plant Stress Biol, Kaifeng 475001, Peoples R China
[2] China Agr Univ, Coll Biol Sci, State Key Lab Plant Physiol & Biochem, Beijing 100094, Peoples R China
来源
PLANT CELL | 2006年 / 18卷 / 10期
关键词
D O I
10.1105/tpc.106.044230
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
We isolated two T- DNA insertion mutants of Arabidopsis thaliana GLUTATHIONE PEROXIDASE3 ( ATGPX3) that exhibited a higher rate of water loss under drought stress, higher sensitivity to H2O2 treatment during seed germination and seedling development, and enhanced production of H2O2 in guard cells. By contrast, lines engineered to overexpress ATGPX3 were less sensitive to drought stress than the wild type and displayed less transpirational water loss, which resulted in higher leaf surface temperature. The atgpx3 mutation also disrupted abscisic acid ( ABA) activation of calcium channels and the expression of ABA- and stress- responsive genes. ATGPX3 physically interacted with the 2C-type protein phosphatase ABA INSENSITIVE2 (ABI2) and, to a lesser extent, with ABI1. In addition, the redox states of both ATGPX3 and ABI2 were found to be regulated by H2O2. The phosphatase activity of ABI2, measured in vitro, was reduced approximately fivefold by the addition of oxidized ATGPX3. The reduced form of ABI2 was converted to the oxidized form by the addition of oxidized ATGPX3 in vitro, which might mediate ABA and oxidative signaling. These results suggest that ATGPX3 might play dual and distinctive roles in H2O2 homeostasis, acting as a general scavenger and specifically relaying the H2O2 signal as an oxidative signal transducer in ABA and drought stress signaling.
引用
收藏
页码:2749 / 2766
页数:18
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