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K^+channels inhibited by hydrogen peroxide mediate abscisic acid signaling in Vicia guard cells
引用本文:Zhang X,Miao YC,An GY,Zhou Y,Shangguan ZP,Gao JF,Song CP. K^+channels inhibited by hydrogen peroxide mediate abscisic acid signaling in Vicia guard cells[J]. Cell research, 2001, 11(3): 195-202
作者姓名:Zhang X  Miao YC  An GY  Zhou Y  Shangguan ZP  Gao JF  Song CP
作者单位:[1]Collegeoflifesciences,NorthwestSci-TechUniversityofAgricultureandForestry,Yangling712100,China [2]DepartmentofBiology,HenanUniversity,Kaifeng475001,China
基金项目:National Natura1 Science Foundation of China (No. 39870372),StateKey Basic Research and Development Project (No.G1999011700)
摘    要:

关 键 词:H2O2 脱落酸 K^+通道 保卫细胞

K+ channels inhibited by hydrogen peroxide mediate abscisic acid signaling in Vicia guard cells
Zhang X,Miao Y C,An G Y,Zhou Y,Shangguan Z P,Gao J F,Song C P. K+ channels inhibited by hydrogen peroxide mediate abscisic acid signaling in Vicia guard cells[J]. Cell research, 2001, 11(3): 195-202
Authors:Zhang X  Miao Y C  An G Y  Zhou Y  Shangguan Z P  Gao J F  Song C P
Affiliation:College of life sciences, Northwest Sci-Tech University of Agriculture and Forestry, Yangling, China. xzhangcn@china.com
Abstract:A number of studies show that environmental stress conditions increase abscisic acid (ABA) and hydrogen peroxide (H2O2) levels in plant cells. Despite this central role of ABA in altering stomatal aperture by regulating guard cell ion transport, little is known concerning the relationship between ABA and H2O2 in signal transduction leading to stomatal movement. Epidermal strip bioassay illustrated that ABA- inhibited stomatal opening and ABA-induced stomatal closure were abolished partly by externally added catalase (CAT) or diphenylene iodonium (DPl), which are a H2O2 scavenger and a NADPH oxidase inhibitor respectively. In contrast, internally added CAT or DPI nearly completely or partly reversed ABA-induced closure in half-stoma. Consistent with these results, whole-cell patch-clamp analysis showed that intracellular application of CAT or DPI partly abolished ABA-inhibited inward K current across the plasma membrane of guard cells. H2O2 mimicked ABA to inhibit inward K current, an effect which was reversed by the addition of ascorbic acid (Vc) in patch clamping micropipettes. These results suggested that H2O2 mediated ABA-induced stomatal movement by targeting inward K channels at plasma membrane.
Keywords:Hydrogen peroxide   abscisic acid   K channels   patch clamp   vicia guard cell.
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