Nitric Oxide and Hydrogen Sulfide Coordinately Reduce Glucose Sensitivity and Decrease Oxidative Stress via Ascorbate-Glutathione Cycle in Heat-Stressed Wheat ( L.) Plants.

Antioxidants (Basel)

Group of Antioxidants, Free Radicals and Nitric Oxide in Biotechnology, Food and Agriculture, Department of Biochemistry, Cell and Molecular Biology of Plants, Estación Experimental del Zaidín, CSIC, Apartado 419, 18080 Granada, Spain.

Published: January 2021

The involvement of nitric oxide (NO) and hydrogen sulfide (HS) in countermanding heat-inhibited photosynthetic features were studied in wheat ( L.). Heat stress (HS) was employed at 40 °C after establishment for 6 h daily, and then plants were allowed to recover at 25 °C and grown for 30 days. Glucose (Glc) content increased under HS and repressed plant photosynthetic ability, but the application of sodium nitroprusside (SNP, as NO donor) either alone or with sodium hydrosulfide (NaHS, as HS donor) reduced Glc-mediated photosynthetic suppression by enhancing ascorbate-glutathione (AsA-GSH) metabolism and antioxidant system, which reduced oxidative stress with decreased HO and TBARS content. Oxidative stress reduction or inhibiting Glc repression was maximum with combined SNP and NaHS treatment, which was substantiated by 2-4-carboxyphenyl-4,4,5,5-tetramethylimidazoline-1-oxyl-3-oxide (cPTIO) and hypotaurine (HT), scavengers for NO and HS, respectively. The scavenge of HS reduced NO-mediated alleviation of HS suggesting of its downstream action in NO-mediated heat-tolerance. However, a simultaneous decrease of both (NO and HS) led to higher Glc-mediated repression of photosynthesis and oxidative stress in terms of increased HO content that was comparable to HS plants. Thus, NO and HS cooperate to enhance photosynthesis under HS by reducing HO-induced oxidative stress and excess Glc-mediated photosynthetic suppression.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7828694PMC
http://dx.doi.org/10.3390/antiox10010108DOI Listing

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