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高产生物能植物蓖麻作为铜污染土壤上潜在植物修复剂
作者姓名:R. ANDREAZZA  L. BORTOLON  S. PIENIZ  F. A. O. CAMARGO
作者单位:Department of Soil, Federal University of Rio Grande do Sul, Laboratory of Soil Microbiology;Center of Engineer, Federal University of Pelotas;EMBRAPA - Brazilian Agricultural Research Corporation, National Research Center of Fisheries, Aquaculture and Agricultural Systems;Department of Technology and Food Microbiology, Federal University of Rio Grande do Sul
基金项目:Supported by the Coordenao de Aperfeic oamento de Pessoal de N′vel Superior (CAPES) of Brazil and the Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq) of Brazil
摘    要:Copper (Cu) contamination in the environment has been increased during the years with agricultural and industrial activities.Biotechnological approaches are needed for bioremediation in these areas. The aims of this study were i) to evaluate the phytoremediation capacity of the high-yielding bioenergy plant castor bean (Ricinus communis L.) in vineyard soils (Inceptisol and Mollisol) contaminated with Cu and a Cu mining waste; ii) to characterize the castor bean as a Cu phytoremediation plant; and iii) to evaluate the nutrient uptake by castor bean. Castor bean plants cultivated in soil with toxic levels of Cu for 57 d exhibited high phytomass production, a high tolerance index of roots’ fresh mass and shoots’ dry mass, a high level of Cu phytoaccumulation in the roots and also, a robust capacity for Cu phytostabilization. Furthermore, castor bean plants did not significantly deplete soil nutrients(such as N, P, and Mg) during cultivation. Plants cultivated in Inceptisol, Mollisol and Cu mining waste exhibited a strong potential for Cu phytoaccumulation, with values of 5 900, 3 052 and 2 805 g ha-1, respectively. In addition, the castor bean’s elevated phytomass production and strong growth in Cu-contaminated soils indicated a high level of Cu phytoaccumulation and a potential application in biofuels. These findings indicate that the castor bean is a efcient hyperaccumulator of Cu and a potential candidate plant for the phytoremediation of Cu-contaminated soil.

关 键 词:biofuels  phytoaccumulation  phytoremediation  phytostabilization
收稿时间:10 July 2012

Use of high-yielding bioenergy plant castor bean (Ricinus communis L.) as a potential phytoremediator for copper-contaminated soils
R. ANDREAZZA,L. BORTOLON,S. PIENIZ,F. A. O. CAMARGO.Use of high-yielding bioenergy plant castor bean (Ricinus communis L.) as a potential phytoremediator for copper-contaminated soils[J].Pedosphere,2013,23(5):651-661.
Authors:R ANDREAZZA  L BORTOLON  S PIENIZ and F A O CAMARGO
Institution:1. Department of Soil, Federal University of Rio Grande do Sul, Laboratory of Soil Microbiology, Bento Gon(c)alves 7712, Agronomia,91540-000, Porto Alegre, RS(Brazil);Center of Engineer, Federal University of Pelotas, 1734 Almirante Barroso, Pelotas, RS(Brazil)
2. EMBRAPA-Brazilian Agricultural Research Corporation, National Research Center of Fisheries, Aquaculture and Agricultural Systems, 103 S, av JK, n.164, Palmas, TO 77012(Brazil)
3. Department of Technology and Food Microbiology, Federal University of Rio Grande do Sul, RS, 91501-970 Porto Alegre(Brazil)
4. Department of Soil, Federal University of Rio Grande do Sul, Laboratory of Soil Microbiology, Bento Gon(c)alves 7712, Agronomia,91540-000, Porto Alegre, RS(Brazil)
Abstract:Copper (Cu) contamination in the environment has been increased during the years with agricultural and industrial activities. Biotechnological approaches are needed for bioremediation in these areas. The aims of this study were i) to evaluate the phytoremediation capacity of the high-yielding bioenergy plant castor bean (Ricinus communis L.) in vineyard soils (Inceptisol and Mollisol) contaminated with Cu and a Cu mining waste; ii) to characterize the castor bean as a Cu phytoremediation plant; and iii) to evaluate the nutrient uptake by castor bean. Castor bean plants cultivated in soil with toxic levels of Cu for 57 d exhibited high phytomass production, a high tolerance index of roots' fresh mass and shoots' dry mass, a high level of Cu phytoaccumulation in the roots and also, a robust capacity for Cu phytostabilization. Furthermore, castor bean plants did not significantly deplete soil nutrients (such as N, P, and Mg) during cultivation. Plants cultivated in Inceptisol, Mollisol and Cu mining waste exhibited a strong potential for Cu phytoaccumulation, with values of 5 900, 3 052 and 2 805 g ha?1, respectively. In addition, the castor bean's elevated phytomass production and strong growth in Cu-contaminated soils indicated a high level of Cu phytoaccumulation and a potential application in biofuels. These findings indicate that the castor bean is a efficient hyperaccumulator of Cu and a potential candidate plant for the phytoremediation of Cu-contaminated soil.
Keywords:biofuels  phytoaccumulation  phytoremediation  phytostabilization
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