4.7 Article

Nitric oxide synthase like activity-dependent nitric oxide production protects against chilling-induced oxidative damage in Chorispora bungeana suspension cultured cells

Journal

PLANT PHYSIOLOGY AND BIOCHEMISTRY
Volume 48, Issue 12, Pages 936-944

Publisher

ELSEVIER FRANCE-EDITIONS SCIENTIFIQUES MEDICALES ELSEVIER
DOI: 10.1016/j.plaphy.2010.09.001

Keywords

Antioxidant defense; Chilling; Chorispora bungeana; Nitric oxide; Reactive oxygen species

Categories

Funding

  1. National Major Project of Cultivating New Varieties of Transgenic Organisms [2009ZX08009-029B]
  2. National Outstanding Youth Foundation of China [30625008]
  3. National High Technology Research and Development Program of China (863 Program) [2007AA021401]
  4. National Basic Research Program of China (973 Program) [2007CB108902]
  5. National Science Foundation of China [30600040]

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In the present study, we used suspension cultured cells from Chorispora bungeana Fisch. and CA. Mey to investigate whether nitric oxide (NO) is involved in the signaling pathway of chilling adaptive responses. Low temperatures at 4 degrees C or 0 degrees C induced ion leakage, lipid peroxidation and cell viability suppression, which were dramatically alleviated by exogenous application of NO donor sodium nitroprusside (SNP). The levels of reactive oxygen species (ROS) were obviously reduced, and the activities of antioxidant enzymes such as ascorbate peroxidase (APX, EC 1.11.1.11), catalase (CAT, EC 1.11.1.6), glutathione reductase (GR, EC 1.6.4.2), peroxidase (POD, EC 1.11.1.7) and superoxide dismutase (SOD. EC 1.15.1.1) and the contents of ascorbic acid (AsA) and reduced glutathione (GSH) increased evidently in the presence of SNP under chilling stress. In addition, under low temperature conditions, treatment with NO scavenger PTIO or mammalian NO synthase (NOS) inhibitor L-NAME remarkably aggravated oxidative damage in the suspension cultures compared with that of chilling treatment alone. Moreover, measurements of NOS activity and NO production showed that both NOS activity and endogenous NO content increased markedly under chilling stress. The accumulation of NO was inhibited by L-NAME in chilling-treated cultures, indicating that most NO production under chilling may be generated from NOS-like activity. Collectively, these results suggest that chilling-induced NO accumulation can effectively protect against oxidative injury and that NOS like activity-dependent NO production might act as an antioxidant directly scavengering ROS or operate as a signal activating antioxidant defense under chilling stress, thus conferring an increased tolerance to chilling in C bungeana suspension cultures. (C) 2010 Elsevier Masson SAS. All rights reserved.

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