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Stress Tolerance in Transgenic Tobacco Seedlings that Overexpress Glutathione S-Transferase/Glutathione Peroxidase

Plant and Cell Physiology · 2000 · Vol. 41(11) · pp. 1229–1234
Virginia P. RoxasSundus A. LodhiDestane GarrettJ. Robert MahanRandy D. Allen

Abstract

Overexpression of a tobacco glutathione S-transferase with glutathione peroxidase activity (GST/GPX) in transgenic tobacco (Nicotiana tabacum L.) enhanced seedling growth under a variety of stressful conditions. In addition to increased GST and GPX activity, transgenic GST/GPXexpressing (GST+) seedlings had elevated levels of monodehydroascorbate reductase activity. GST+ seedlings also contained higher levels of glutathione and ascorbate than wildtype seedlings and the glutathione pools were more oxidized. Thermal or salt-stress treatments that inhibited the growth of wild-type seedlings also caused increased levels of lipid peroxidation. These treatments had less effect on the growth of GST+ seedling growth and did not lead to increased lipid peroxidation. Stress-induced damage resulted in reduced metabolic activity in wild-type seedlings while GST+ seedlings maintained metabolic activity levels comparable to seedlings grown under control conditions. These results indicate that overexpression of GST/GPX in transgenic tobacco seedlings provides increased glutathione-dependent peroxide scavenging and alterations in glutathione and ascorbate metabolism that lead to reduced oxidative damage. We conclude that this protective effect is primarily responsible for the ability of GST+ seedlings to maintain growth under stressful conditions.

Weed Control and Herbicide ApplicationsPlant tissue culture and regenerationGenomics, phytochemicals, and oxidative stressGlutathioneGlutathione reductaseNicotiana tabacumLipid peroxidationOxidative stressGlutathione peroxidaseGlutathione S-transferaseBiochemistryPeroxidaseGPX4

Funding

  • Texas Tech University
Citations
490
FWCI
15.61
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26
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99%
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