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Differential responses of oat genotypes: oxidative stress provoked by aluminum
Authors:Luciane Belmonte Pereira  Cinthia Melazzo de A. Mazzanti  Denise Cargnelutti  Liana Ver?nica Rossato  Jamile F. Gon?alves  Nic??ia Calgaroto  Valderi Dressler  Fernando T. Nicoloso  Luiz Carlos Federizzi  Vera M. Morsch  Maria R. C. Schetinger
Affiliation:1. Departamento de Qu??mica e, Universidade Federal de Santa Maria, Santa Maria, RS, 97105-900, Brazil
3. Programa de P??s-Gradua??o em Bioqu??mica Toxicol??gica, Centro de Ci??ncias Naturais e Exatas, Universidade Federal de Santa Maria, Santa Maria, RS, 97105-900, Brazil
2. Biologia, Universidade Federal de Santa Maria, Santa Maria, RS, 97105-900, Brazil
4. Departamento de Plantas de Lavoura, Universidade Federal do Rio Grande do Sul, Av. Bento Gon?alves, Porto Alegre, RS, 7712, Brazil
5. Faculdade de Agronomia, Universidade Federal do Rio Grande do Sul, Av. Bento Gon?alves, Porto Alegre, RS, 7712, Brazil
Abstract:The phytotoxic effects of aluminum and the mechanisms of genetically-based Al tolerance have been widely investigated, as reported in many papers and reviews. However, investigations on many Al-sensitive and Al-resistant species demonstrate that Al phytotoxicity and Al-resistance mechanisms are extremely complex phenomena. The objective of the present study was to analyze the effects of aluminum on the activity of antioxidant enzymes such as catalase (CAT), superoxide dismutase (SOD), and ascorbate peroxidase (APX). Also was evaluated the lipid peroxidation, H2O2 content, levels of ascorbic acid (ASA), non-protein thiols (NPSH) and Al content in three genotypes of oat, Avena sativa L. (UFRGS 930598, UFRGS 17, and UFRGS 280). The genotypes were grown in different concentrations of Al ranging from 90 to 555???M for 5?days. The antioxidant system was unable to overcome toxicity resulting in negative effects such as lipid peroxidation and H2O2 content in UFRGS 930598. The results showed that UFRGS 930598 was the most sensitive genotype. UFRGS 17 and UFRGS 280 were more resistant to Al toxicity. These results suggest that UFRGS 17 has mechanisms of external detoxification and UFRGS 280 has mechanisms of internal detoxification. The different behavior of enzymatic and non-enzymatic antioxidants of the genotypes showed that aluminum resistance in UFGRS 17 and UFRGS 280 may be related to oxidative stress.
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