TaGPX1-D overexpression provides salinity and osmotic stress tolerance in Arabidopsis

被引:16
|
作者
Tyagi, Shivi [1 ]
Shumayla [1 ]
Sharma, Yashraaj [1 ,2 ]
Sharma, Alok [1 ]
Pandey, Ashutosh [3 ]
Singh, Kashmir [2 ]
Upadhyay, Santosh Kumar [1 ]
机构
[1] Panjab Univ, Dept Bot, Chandigarh 160014, India
[2] Panjab Univ, Dept Biotechnol, Chandigarh 160014, India
[3] Natl Inst Plant Genome Res, New Delhi, India
关键词
Antioxidant; Bread wheat; Osmotic; Glutathione peroxidase; Salinity; Transgenic; GLUTATHIONE-PEROXIDASE GENES; MOLECULAR CHARACTERIZATION; ASCORBATE-PEROXIDASE; DROUGHT STRESS; EXPRESSION; REDUCTASE; INSIGHTS; ENZYMES; PROTEIN; ROOT;
D O I
10.1016/j.plantsci.2023.111881
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
Glutathione peroxidases (GPXs) are known to play an essential role in guarding cells against oxidative stress by catalyzing the reduction of hydrogen peroxide and organic hydroperoxides. The current study aims functional characterization of the TaGPX1-D gene of bread wheat (Triticum aestivum) for salinity and osmotic stress toler-ance. To achieve this, we initially performed the spot assays of TaGPX1-D expressing yeast cells. The growth of recombinant TaGPX1-D expressing yeast cells was notably higher than the control cells under stress conditions. Later, we generated transgenic Arabidopsis plants expressing the TaGPX1-D gene and investigated their tolerance to various stress conditions. The transgenic plants exhibited improved tolerance to both salinity and osmotic stresses compared to the wild-type plants. The higher germination rates, increased antioxidant enzymes activ-ities, improved chlorophyll, carotenoid, proline and relative water contents, and reduced hydrogen peroxide and MDA levels in the transgenic lines supported the stress tolerance mechanism. Overall, this study demonstrated the role of TaGPX1-D in abiotic stress tolerance, and it can be used for improving the tolerance of crops to environmental stressors, such as salinity and osmotic stress in future research.
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页数:10
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