Biochemical changes in barley plants after excessive supply of copper and manganese

被引:302
作者
Demirevska-Kepova, K [1 ]
Simova-Stoilova, L
Stoyanova, Z
Hölzer, R
Feller, U
机构
[1] Bulgarian Acad Sci, Inst Plant Physiol, BU-1113 Sofia, Bulgaria
[2] Univ Bern, Inst Plant Sci, CH-3013 Bern, Switzerland
关键词
rubisco; rubisco binding protein; rubisco activase; glutamine synthetase; glutamate synthase; copper; manganese; toxicity; oxidative stress; barley (Hordeum vulgare L.);
D O I
10.1016/j.envexpbot.2004.02.004
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
The present study was undertaken to identify changes in some important proteins involved in CO2 fixation (Rubisco, Rubisco activase (RA), Rubisco binding protein (RBP)), NH4+ assimilation (glutamine synthetase (GS) and glutamate synthase (GOGAT)), using immunoblotting, and in the antioxidative defense as a result of Cu or Mn excess in barley leaves (Hordeum vulgare L. cv. Obzor). Activities and isoenzyme patterns of superoxide dismutase (SOD), ascorbate peroxidase (APX), guaiacol peroxidase (GPX) and catalase (CAT), as well as the levels of ascorbate (ASC), non-protein sulfhydryl groups, hydrogen peroxide and oxidative damage to proteins were determined. Data were correlated to the accumulation of Cu or Mn in the leaves after 5 days supply of heavy metal (HM) excess in the nutrient solution. In the highest Cu excess (1500 muM), Rubisco LS and SS were reduced considerably whereas under the highest Mn concentrations (18,300 muM) only minor changes in Rubisco subunits were detected. The RBP was diminished under the highest concentrations of both Cu or Mn. The bands of RA changed differently comparing Cu and Mn toxicity. GS decreased and GOGAT was absent under the highest concentration of Cu. At Mn excess Fd-GOGAT diminished whereas GS was not apparently changed. The development of toxicity symptoms corresponded to an accumulation of Cu or Mn in the leaves and to a gradual increase in protein carbonylation, a lower SOD activity and elevated CAT and GPX activities. APX activity was diminished under Mn toxicity and was not changed under Cu excess. Generally, changes in the isoenzyme profiles were similar under both toxicities. An accumulation of H2O2 was observed only at Mn excess. Contrasting changes in the low-molecular antioxidants were detected when comparing both toxicities. Cu excess affected mainly the non-protein SH groups, while Mn influenced the ASC content. Oxidative stress under Cu or Mn toxicity was most probably the consequence of depletion in low-molecular antioxidants as a result of their involvement in detoxification processes and disbalance in antioxidative enzymes. The link between heavy metal accumulation in leaves, leading to different display of oxidative stress, and changes in individual chloroplast proteins is discussed in the article. (C) 2004 Elsevier B.V. All rights reserved.
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页码:253 / 266
页数:14
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