Response of the cultivated tomato and its wild salt-tolerant relative Lycopersicon pennellii to salt-dependent oxidative stress:: The root antioxidative system

被引:342
作者
Shalata, A
Mittova, V
Volokita, M
Guy, M
Tal, M
机构
[1] Ben Gurion Univ Negev, Jacob Blaustein Inst Desert Res, IL-84990 Sede Boqer, Israel
[2] Ben Gurion Univ Negev, Dept Life Sci, IL-84105 Beer Sheva, Israel
关键词
D O I
10.1034/j.1399-3054.2001.1120405.x
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
The response of the antioxidant system to salt stress was studied in the roots of the cultivated tomato Lycopersican esculentum Mill. ev. M82 (Lem) and its wild salt-tolerant relative L. pennellii (Corr.) D'Arcy accession Atico (Lpa). Roots of control and salt (100 mM NaCl)-stressed plants were sampled at various times after commencement of salinization. A gradual increase in the membrane lipid peroxidation in salt-stressed root of Lem was accompanied with decreased activities of the antioxidant enzymes: superoxide dismutase (SOD; EC 1.15.1.1), catalase (CAT; EC 1.11.1.6), ascorbate peroxidase (APX; EC 1.11.1.11) and decreased contents of the antioxidants ascorbate and glutathione and their redox states. In contrast, increased activities of the SOD, CAT, APX, monodehydroascorbate reductase (MDHAR; EC 1.6.5.4), and increased contents of the reduced forms of ascorbate and glutathione and their redox states were found in salt-stressed roots of Lpa, in which the level of membrane lipid peroxidation remained unchanged. It seems that the better protection of Lpa roots from salt-induced oxidative damage results, at least partially, from the increased activity of their antioxidative system.
引用
收藏
页码:487 / 494
页数:8
相关论文
共 50 条
[1]   SEASONAL-VARIATION IN THE ANTIOXIDANT SYSTEM OF EASTERN WHITE-PINE NEEDLES - EVIDENCE FOR THERMAL-DEPENDENCE [J].
ANDERSON, JV ;
CHEVONE, BI ;
HESS, JL .
PLANT PHYSIOLOGY, 1992, 98 (02) :501-508
[2]   ASCORBATE FREE-RADICAL REDUCTASE, A KEY ENZYME OF THE ASCORBIC-ACID SYSTEM [J].
ARRIGONI, O ;
DIPIERRO, S ;
BORRACCINO, G .
FEBS LETTERS, 1981, 125 (02) :242-244
[3]  
Asada K., 1994, Causes of photooxidative stress and amelioration of defense systems in plants., P77
[4]  
Asada K., 1996, Photosynthesis and the environment. Advances in photosynthesis and respiration, P123, DOI DOI 10.1007/0-306-48135-9_5
[5]   Ascorbate biosynthesis in mitochondria is linked to the electron transport chain between complexes III and IV [J].
Bartoli, CG ;
Pastori, GM ;
Foyer, CH .
PLANT PHYSIOLOGY, 2000, 123 (01) :335-343
[6]   ASSAYING FOR SUPEROXIDE-DISMUTASE ACTIVITY - SOME LARGE CONSEQUENCES OF MINOR CHANGES IN CONDITIONS [J].
BEYER, WF ;
FRIDOVICH, I .
ANALYTICAL BIOCHEMISTRY, 1987, 161 (02) :559-566
[7]  
BIELSKI BHJ, 1982, AM CHEM SOC ADV CHEM, V200, P81
[8]   SUPEROXIDE-DISMUTASE AND STRESS TOLERANCE [J].
BOWLER, C ;
VANMONTAGU, M ;
INZE, D .
ANNUAL REVIEW OF PLANT PHYSIOLOGY AND PLANT MOLECULAR BIOLOGY, 1992, 43 :83-116
[9]   Catalytic metals, ascorbate and free radicals: Combinations to avoid [J].
Buettner, GR ;
Jurkiewicz, BA .
RADIATION RESEARCH, 1996, 145 (05) :532-541
[10]   MAGNESIUM-DEFICIENCY AND HIGH LIGHT-INTENSITY ENHANCE ACTIVITIES OF SUPEROXIDE-DISMUTASE, ASCORBATE PEROXIDASE, AND GLUTATHIONE-REDUCTASE IN BEAN-LEAVES [J].
CAKMAK, I ;
MARSCHNER, H .
PLANT PHYSIOLOGY, 1992, 98 (04) :1222-1227