Senescence- and drought-related changes in peroxidase and superoxide dismutase isoforms in leaves of Ramonda serbica

被引:82
作者
Veljovic-Jovanovic, Sonja
Kukavica, Biljana
Stevanovic, Branka
Navari-Izzo, Flavia
机构
[1] Univ Pisa, Dipartimento Chim & Biotecnol Agrarie, I-56124 Pisa, Italy
[2] Univ Belgrade, Ctr Multidisciplinary Studies, Belgrade 11030, Serbia Monteneg
[3] Univ Belgrade, Fac Biol, Belgrade 11000, Serbia Monteneg
关键词
desiccation; peroxidase; Ramonda; senescence; superoxide dismutase;
D O I
10.1093/jxb/erl007
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Ramonda sp. (Gesneriaceae) is an endemic and relic plant in a very small group of poikilohydric angiosperms that are able to survive in an almost completely dehydrated state. Senescence- and drought-related changes in the activity of peroxidase (POD; EC 1.11.1.7), ascorbate peroxidase (EC 1.11.1.11), and superoxide dismutase (SOD; EC 1.15.1.1) were determined in leaves of different age and relative water content. The results indicate that different POD isoforms were stimulated during senescence and dehydration. Two of the soluble POD isoforms were anionic with pI 4.5, and two were cationic with pI 9.3 and 9.0. The activity of ascorbate peroxidase remained unchanged either by drought or senescence. For the first time, SOD isoforms have now been determined in this resurrection plant. Several SOD isoforms, all of the Mn type, were found to be anionic with pI 4 and a few others had pI from 5 to 6, while one band of FeSOD with a lower molecular weight was neutral. Rehydration brought about a remarkable decrease over the first hour in the activity of all the antioxidant enzymes examined but activity recovered 1 d after rehydration. The results confirmed that dehydration and senescence caused disturbance in the redox homeostasis of Ramonda leaves, while inducing different POD isoforms. A physiological role of peroxidase reaction with hydroxycinnamic acids in conservation and protection of cellular constituents of desiccated Ramonda leaves is suggested.
引用
收藏
页码:1759 / 1768
页数:10
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