Ectopic expression of ibPDS gene enhanced tolerance to oxidative stress in transgenic tobacco plants

被引:0
作者
Sang-Gyu Seo
Hae-Rim Jang
Ji-Min Shin
Byung Ki Jun
Ie-Sung Shim
Sun-Hyung Kim
机构
[1] The University of Seoul,Laboratory of Plant Genetic Engineering, Department of Environmental Horticulture
来源
Plant Growth Regulation | 2015年 / 77卷
关键词
PDS; Carotenoid; Sweet potato; Reactive oxygen species; Antioxidant;
D O I
暂无
中图分类号
学科分类号
摘要
The phytoene desaturase (PDS) gene, which is associated with carotenoid biosynthesis, was isolated from sweet potato (Ipomoea batatas L.). The open reading frame of IbPDS gene is comprised of 1719-base pairs and encodes a polypeptide of 573 amino acid residues. The deduced IbPDS protein sequence was homologous with that of other PDS proteins of various plant species. Also, the IbPDS gene appears to be a member of multiple gene families and further, the differences in the copy numbers among the five cultivars were considered to lead to differences in tuber color and carotenoid contents. Investigation of the mRNA expression of IbPDS revealed the greatest expression in the leaf tissue of sweet potatoes under both normal conditions and methyl viologen (MV) stress. The IbPDS cDNA was introduced to Nicotiana tabacum cv. Xanthi under the control of the CaMV 35S promoter using Agrobacterium-mediated gene transfer techniques, thereby resulting in an increase in tolerance to MV (2, 10, and 50 µM). These results occurred owing to the elevated antioxidant capacity of carotenoids in transgenic plants.
引用
收藏
页码:245 / 253
页数:8
相关论文
共 150 条
[1]  
Al-Babili S(1996)A novel, soluble form of phytoene desaturase from Plant J 9 601-612
[2]  
von Lintig J(1987) chromoplasts is Hsp70-complexed and competent for flavinylation, membrane association and enzymatic activation Methods Enzymol 153 292-305
[3]  
Haubruck H(1997)Binary Ti vectors for plant transformation and promoter analysis Eur J Biochem 247 942-950
[4]  
Beyer P(2002)Chloroplast import of four carotenoid biosynthetic enzymes in vitro reveals differential fates prior to membrane binding and oligomeric assembly Plant Physiol 128 439-453
[5]  
An G(2001)Functional analysis of the early steps of carotenoid biosynthesis in tobacco Trends Plant Sci 6 31-36
[6]  
Bonk M(1999)A plastid terminal oxidase comes to light: implications for carotenoid biosynthesis and chlororespiration Plant Cell 11 57-68
[7]  
Hoffmann B(1993)Mutations in the Arabidopsis gene IMMUTANS cause a variegated phenotype by inactivating a chloroplast terminal oxidase associated with phytoene desaturation J Biol Chem 268 17348-17353
[8]  
von Lintig J(1991)Molecular and biochemical characterization of herbicide-resistant mutants of cyanobacteria reveals that phytoene desaturation is a rate-limiting step in carotenoid biosynthesis J Photochem Photobiol Ser Biol 11 41-47
[9]  
Schledz M(2002)The singlet oxygen and carotenoid interaction Nature 418 203-206
[10]  
Al-Babili S(1997)Overexpression of beta-carotene hydroxylase enhances stress tolerance in Plant Physiol 113 249-257