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Ba Qing-Song, Zhang Gen-Sheng, Ma Chang, Li Gui-Ping, Song Yun-Xian, Fu Zhao-Lin, Chen Chu. Physiological effects of nitric oxide on the growth and development of wheat roots under cadmium stress[J]. Plant Science Journal, 2017, 35(3): 398-405. DOI: 10.11913/PSJ.2095-0837.2017.30398
Citation: Ba Qing-Song, Zhang Gen-Sheng, Ma Chang, Li Gui-Ping, Song Yun-Xian, Fu Zhao-Lin, Chen Chu. Physiological effects of nitric oxide on the growth and development of wheat roots under cadmium stress[J]. Plant Science Journal, 2017, 35(3): 398-405. DOI: 10.11913/PSJ.2095-0837.2017.30398

Physiological effects of nitric oxide on the growth and development of wheat roots under cadmium stress

  • To study the role of sodium nitroprusside (SNP,a donor of nitric oxide (NO)) in alleviating cadmium (Cd) toxicity in wheat (Triticum aestivum L.),wheat seedlings exposed to 10 mmol/L Cd2+ as CdCl2 were treated with 30 μmol/L of SNP.Results showed that Cd2+ exposure depressed plant growth.After SNP application,the length,fresh weight,and dry weight of the roots increased by 48%,107.7%,and 87.3% respectively.In addition,SOD,POD,CAT,and APX increased by 28.5%,7.4%,19.2%,and 9.8%,respectively.The contents of O2.- and H2O2 in the roots decreased by 80.5% and 47.0%,respectively,whereas the contents of soluble sugar and proline increased by 24.7% and 22.1%,respectively.The content of MDA in the roots decreased by 30.2% under Cd2+ stress.Root activity increased by 15.3% under Cd2+ stress after the addition of SNP.Therefore,exogenous SNP significantly improved the antioxidant capacity of wheat roots,which could,in turn,enhance the resistance ability of wheat and alleviate the toxic effects of Cd.Furthermore,SNP could promote the growth and development of wheat seedling roots.
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