Expression of glutathione-S-transferase and its role in plant growth and development in vivo and shoot morphogenesis in vitro

被引:0
作者
Haibiao Gong
Yuxia Jiao
Wen-wei Hu
Eng-Chong Pua
机构
[1] National University of Singapore,Plant Genetic Engineering Laboratory, Department of Biological Sciences
[2] University of Pittsburgh,Center for Pharmacogenetics, School of Pharmacy
[3] Vanderbilt University School of Medicine,Department of Molecular Physiology and Biophysics
[4] Monash University Malaysia,School of Arts and Sciences
来源
Plant Molecular Biology | 2005年 / 57卷
关键词
Glutathione-; -transferases; mustard; shoot regeneration; stress; transgenic plants;
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摘要
The enzymes glutathione-S-transferases (GSTs, E.C.2.5.1.18) have been associated with detoxification of xenobiotics, limiting oxidative damage and other stress responses in plants. In this study, we report the isolation of a mustard gene, BjGSTF2, homologous to the phi class GSTs and changes in plant growth in vivo and shoot regeneration in vitro were related to GST expression. GST transcripts accumulated differentially in mustard organs, where transcript was most abundant in root. Tissues incubated at high temperature or in the presence of exogenous H2O2, HgCl2, 1-aminocyclopropane-1-carboxylate, salicylic acid and paraquat upregulated GST expression, whereas spermidine was inhibitory. To investigate the in vivo function of GST, transgenic Arabidopsis thalianaplants expressing sense (GST-S6), antisense (GST-A4) and double-stranded BjGSTF2(GST-DS1) RNAs were generated. GST-S6 was shown to flower two days earlier and was relatively more tolerant to HgCl2 and paraquat, whereas GST-DS1 with least stress tolerance flowered one week later compared to WT and GST-A4. In shoot regeneration response, tissues originated from GST-S6 were highly regenerative, whereas no shoot regeneration was observed in GST-DS1 tissues after 30 days of culture. Results of this study provide the evidence showing that GST plays a role in plant growth and development in vivo and shoot regeneration in vitro.
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页码:53 / 66
页数:13
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共 218 条
[1]  
Alfenito M.R.(1998)Functional complementation of anthocyanin sequestration in the vacuole by widely divergent glutathione S-transferases Plant Cell 10 1135-1149
[2]  
Souer E.(1998)Expression of an antisense 1-aminocyclopropane-1-carboxylate oxidase gene stimulates shoot regeneration in Plant Cell Rep. 17 586-589
[3]  
Goodman C.D.(2004)Abiotic stress alters transcript profiles and activity of glutathione Physiol. Plant. 120 421-433
[4]  
Buell R.(1990)-transferase, glutathione peroxidase, and glutathione reductase in Plant Cell Tissue Organ Cult. 21 31-37
[5]  
Mol J.(1988)Influence of atmospheric gases, particularly ethylene, on somatic embryogenesis of Ann. Bot. 62 181-185
[6]  
KoesR. Walbot V.(1993)Silver nitrate increases embryo production in anther culture of Brussels sprouts Plant Physiol. 102 29-34
[7]  
Amor M.B.(1989)A soluble auxin-binding protein from Phytochemistry 28 1589-1595
[8]  
Guis M.(1996) is a glutathione Plant J. 10 955-966
[9]  
Latche A.(1993)-transferase Science 262 1883-1886
[10]  
Bouzayen M.(1990)Polyamines as radical scavengers and protectants against ozone damage Plant Cell Rep. 9 195-198