Journal of Stress Physiology & Biochemistry, Vol. 8 No. 3 2012, pp. 13-22 ISSN 1997-0838
Original Text Copyright (cc) 2012 by  Kabiri, Farahbakhsh and Nasibi



ORIGINAL ARTICLE
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Salicylic Acid Ameliorates the Effects of Oxidative Stress Induced by Water Deficit in Hydroponic Culture of Nigella sativa

Rozita Kabiri1*, Hassan Farahbakhsh2**, Fatemeh Nasibi3***

1 Faculty of Agriculture, Shahid Bahonar University of Kerman, Iran
2 Horticultural Research Institute, Shahid Bahonar University of Kerman, Kerman, Iran
3 Biology Department, Faculty of Science, Shahid Bahonar University of Kerman, Iran

Tel: 0983413222032, Fax: 0983413222032
*E-mail: Rozita_Kabiri@yahoo.com
**E-mail: hfarahbakhsh@yahoo.com
***E-mail: nasibi2002@yahoo.com


Received April 4 2012

Osmotic stress associated with drought, and salinity is a serious problem that inhibits the growth of plants, mainly due to disturbance of the balance between production of ROS and antioxidant defense and causing oxidative stress. The results obtained in the last few years strongly prove that salicylic acid could be a very promising and protective compound for the reduction of biotic and abiotic stresses in sensitive of crops, because under certain conditions, it has been found to mitigate the damaging effects of various stress factors in plants. In this research, salicylic acid was used in control, and drought stressed plants, and the role of this compound in reduction of oxidative damages in Nigella plant was investigated. Data presented in this study indicated that SA application through the root medium brought on the increased levels of drought tolerance in black cumin seedlings. Plants pre-treated with SA exhibited slight injury symptoms whereas those that were not pre-treated with SA had moderate damage and lost considerable portions of their foliage. SA very profoundly inducing the activity of CAT, APX and GPX in plants, which led to reduction in H2O2 content, lipid peroxidation (MDA) and LOX activity so it seems that the application of SA greatly improves the dehydration tolerance through elevated activities of antioxidant systems or may be the expression of genes encoding some ROS-scavenging enzymes under drought stress, which would maintain the redox homeostasis and integrity of cellular components.

Key words: Antioxidant enzymes, Drought, Lipid peroxidation, Nigella, Reactive oxygen species

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