4.2 Article

Exogenous salicylic acid improves salinity tolerance of Nitraria tangutorum

Journal

RUSSIAN JOURNAL OF PLANT PHYSIOLOGY
Volume 63, Issue 1, Pages 132-142

Publisher

PLEIADES PUBLISHING INC
DOI: 10.1134/S1021443716010118

Keywords

Nitraria tangutorum; antioxidant enzymes; lipid peroxidation; osmotic adjustment solutes; salicylic acid; salinity stress

Categories

Funding

  1. Natural Science Foundation of Heilongjiang Province [201427]
  2. China Postdoctoral Science Foundation [2014M551209]
  3. Heilongjiang Postdoctoral Fund [LBH-Z14035]
  4. Scientific Research Fund of Heilongjiang Provincial Education Department [11551052, 12521030]
  5. Doctor Research Startup Foundation of Northeast Agricultural University [2012RCB63, 2012RCB107]

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In the present study, the physiological responses of Nitraria tangutorum Bobr. seedlings to NaCl stress and the regulatory function of exogenous application of salicylic acid (SA) were investigated. NaCl in low concentration (100 mM) increased while in higher concentrations (200-400 mM) decreased the individual plant dry weights (wt) of seedlings. Decreased relative water content (RWC) and chlorophyll content were observed in the leaves of seedlings subjected to salinity stress (100-400 mM NaCl). Furthermore, NaCl stress significantly increased electrolyte leakage and malondialdehyde (MDA) content. The levels of osmotic adjustment solutes including proline, soluble sugars, and soluble protein were enhanced under NaCl treatments as compared to the control. In contrast, exogenous application of SA (0.5-1.5 mM) to the roots of seedlings showed notable amelioration effects on the inhibition of individual plant dry wt, RWC, and chlorophyll content. The increases in electrolyte leakage and MDA content in the leaves of NaCl-treated seedlings were markedly inhibited by SA application. The SA application further increased the contents of proline, soluble sugars, and soluble protein. The activities of antioxidant enzymes including superoxide dismutase (SOD), peroxidase (POD), catalase (CAT), and ascorbate peroxidase (APX) were up-regulated by NaCl stress and the activities of SOD, POD, and CAT were further enhanced by SA treatments. Application of SA in low concentration (0.5 mM) enhanced while in higher concentrations (1.0 and 1.5 mM) inhibited APX activities in leaves of NaCl-treated seedlings. These results indicate that SA effectively alleviated the adverse effects of NaCl stress on N. tangutorum.

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