Tolerance and potential for bioaccumulation of Alternanthera tenella Colla to cadmium under in vitro conditions
High concentrations of cadmium (Cd) in the environment can threaten the local biota and one of its main sources is anthropic activities such as zinc (Zn) mining. Some plant species are able to tolerate high Cd concentrations, using anatomical and physiological strategies to avoid the absorption or a...
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Published in | Plant cell, tissue and organ culture Vol. 130; no. 3; pp. 507 - 519 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
Published |
Dordrecht
Springer Netherlands
01.09.2017
Springer Nature B.V |
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Abstract | High concentrations of cadmium (Cd) in the environment can threaten the local biota and one of its main sources is anthropic activities such as zinc (Zn) mining. Some plant species are able to tolerate high Cd concentrations, using anatomical and physiological strategies to avoid the absorption or accumulation of this element in their biomass. The in vitro assessment of these strategies is an efficient way to control variables external to the experiment. We aimed to investigate the anatomical and physiological changes in
Alternanthera tenella
exposed to Cd and its potential for accumulation in controlled microenvironmental conditions. We evaluated changes in the leaf and root anatomy, antioxidant system, and biomass of
A. tenella
grown in a culture medium containing increasing Cd concentrations (0, 50, 100, and 150 μM), in the presence of 1500 μM Zn.
Alternanthera tenella
was able to accumulate Cd and Zn and these elements competed for absorption by the species. Increase in Cd in the medium led to a progressive thickening of the root tissues, which was also observed on the leaves, albeit only at concentrations below 100 μM Cd. The concentration of 150 μM Cd was toxic to the leaf tissue and stimulated the formation of hydrogen peroxide, interfering with the antioxidant system and reducing plant biomass and the chlorophyll levels. Therefore, in vitro cultivated
A. tenella
can accumulate Cd and tolerate up to 100 μM Cd by modifying its anatomy and physiology in order to cope with Cd stress. |
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AbstractList | High concentrations of cadmium (Cd) in the environment can threaten the local biota and one of its main sources is anthropic activities such as zinc (Zn) mining. Some plant species are able to tolerate high Cd concentrations, using anatomical and physiological strategies to avoid the absorption or accumulation of this element in their biomass. The in vitro assessment of these strategies is an efficient way to control variables external to the experiment. We aimed to investigate the anatomical and physiological changes in Alternanthera tenella exposed to Cd and its potential for accumulation in controlled microenvironmental conditions. We evaluated changes in the leaf and root anatomy, antioxidant system, and biomass of A. tenella grown in a culture medium containing increasing Cd concentrations (0, 50, 100, and 150 μM), in the presence of 1500 μM Zn. Alternanthera tenella was able to accumulate Cd and Zn and these elements competed for absorption by the species. Increase in Cd in the medium led to a progressive thickening of the root tissues, which was also observed on the leaves, albeit only at concentrations below 100 μM Cd. The concentration of 150 μM Cd was toxic to the leaf tissue and stimulated the formation of hydrogen peroxide, interfering with the antioxidant system and reducing plant biomass and the chlorophyll levels. Therefore, in vitro cultivated A. tenella can accumulate Cd and tolerate up to 100 μM Cd by modifying its anatomy and physiology in order to cope with Cd stress. High concentrations of cadmium (Cd) in the environment can threaten the local biota and one of its main sources is anthropic activities such as zinc (Zn) mining. Some plant species are able to tolerate high Cd concentrations, using anatomical and physiological strategies to avoid the absorption or accumulation of this element in their biomass. The in vitro assessment of these strategies is an efficient way to control variables external to the experiment. We aimed to investigate the anatomical and physiological changes in Alternanthera tenella exposed to Cd and its potential for accumulation in controlled microenvironmental conditions. We evaluated changes in the leaf and root anatomy, antioxidant system, and biomass of A. tenella grown in a culture medium containing increasing Cd concentrations (0, 50, 100, and 150 μM), in the presence of 1500 μM Zn. Alternanthera tenella was able to accumulate Cd and Zn and these elements competed for absorption by the species. Increase in Cd in the medium led to a progressive thickening of the root tissues, which was also observed on the leaves, albeit only at concentrations below 100 μM Cd. The concentration of 150 μM Cd was toxic to the leaf tissue and stimulated the formation of hydrogen peroxide, interfering with the antioxidant system and reducing plant biomass and the chlorophyll levels. Therefore, in vitro cultivated A. tenella can accumulate Cd and tolerate up to 100 μM Cd by modifying its anatomy and physiology in order to cope with Cd stress. |
Author | Rodrigues, Luiz Carlos Almeida de Almeida Júnior, Osmar Pasqual, Moacir Martins, João Paulo Rodrigues Guilherme, Luiz Roberto Guimarães de Castro, Evaristo Mauro |
Author_xml | – sequence: 1 givenname: Luiz Carlos Almeida surname: Rodrigues fullname: Rodrigues, Luiz Carlos Almeida email: rodrigues.lca@gmail.com organization: Department of Agricultural and Biological Sciences, Federal University of Espírito Santo – sequence: 2 givenname: João Paulo Rodrigues surname: Martins fullname: Martins, João Paulo Rodrigues organization: Department of Agricultural and Biological Sciences, Federal University of Espírito Santo – sequence: 3 givenname: Osmar surname: de Almeida Júnior fullname: de Almeida Júnior, Osmar organization: Department of Biology, Federal University of Lavras – sequence: 4 givenname: Luiz Roberto Guimarães surname: Guilherme fullname: Guilherme, Luiz Roberto Guimarães organization: Department of Soil Sciences, Federal University of Lavras – sequence: 5 givenname: Moacir surname: Pasqual fullname: Pasqual, Moacir organization: Department of Agriculture, Federal University of Lavras – sequence: 6 givenname: Evaristo Mauro surname: de Castro fullname: de Castro, Evaristo Mauro organization: Department of Biology, Federal University of Lavras |
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SubjectTerms | Absorption Alternanthera ficoidea Alternanthera tenella Anatomy anthropogenic activities Antioxidants Bioaccumulation Biomass Biomedical and Life Sciences Biota Cadmium Chlorophyll culture media Hydrogen peroxide In vitro methods and tests in vitro studies Leaves Life Sciences mining Original Article Physiology phytomass Plant biomass Plant Genetics and Genomics Plant Pathology Plant Physiology Plant Sciences Plant species Plant tissues Thickening tissues toxicity Zinc |
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Title | Tolerance and potential for bioaccumulation of Alternanthera tenella Colla to cadmium under in vitro conditions |
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