Salt and oxidative stress: similar and specific responses and their relation to salt tolerance in Citrus

被引:349
作者
GuetaDahan, Y
Yaniv, Z
Zilinskas, BA
BenHayyim, G
机构
[1] AGR RES ORG,VOLCANI CTR,INST HORT,IL-50250 BET DAGAN,ISRAEL
[2] AGR RES ORG,VOLCANI CTR,INST FIELD & GARDEN CROPS,IL-50250 BET DAGAN,ISRAEL
[3] RUTGERS STATE UNIV,DEPT PLANT SCI,NEW BRUNSWICK,NJ 08903
关键词
antioxidant (enzyme complex); Citrus; fatty acid; phospholipid hydroperoxide glutathione peroxidase; oxidative stress; salt stress;
D O I
10.1007/s004250050215
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Salt damage to plants has been attributed to a combination of several factors including mainly osmotic stress and the accumulation of toxic ions. Recent findings in our laboratory showed that phospholipid hydroperoxide glutathione peroxidase (PHGPX), an enzyme active in the cellular antioxidant system, was induced by salt in citrus cells and mainly in roots of plants. Following this observation we studied the two most important enzymes active in elimination of reactive oxygen species, namely, superoxide dismutase (SOD) and ascorbate peroxidase (APX), to determine whether a general oxidative stress is induced by salt. While Cu/Zn-SOD activity and cytosolic APX protein level were similarly induced by salt;and methyl viologen, the response of PHGPX and other APX isozymes was either specific to salt or methyl viologen, respectively. Unlike PHGPX, cytosolic APX and Cu/Zn-SOD were not induced by exogenously added abscisic acid. Salt induced a significant increase in SOD activity which was not matched by the subsequent enzyme APX. We suggest that the excess of H2O2 interacts with lipids to form hydroperoxides which in turn induce and are removed by PHGPX. Ascorbate peroxidase seems to be a key enzyme in determining salt tolerance in citrus as its constitutive activity in salt-sensitive callus is far below the activity observed in salt-tolerant callus, while the activities of other enzymes involved in the defence against oxidative stress, namely SOD, glutathione reductase and PHGPX, are essentially similar.
引用
收藏
页码:460 / 469
页数:10
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