Literature DB >> 11885416

Phytoremediation of polyaromatic hydrocarbons, anilines and phenols.

Patricia J Harvey1, Bruno F Campanella, Paula M L Castro, Hans Harms, Eric Lichtfouse, Anton R Schäffner, Stanislav Smrcek, Daniele Werck-Reichhart.   

Abstract

Phytoremediation technologies based on the combined action of plants and the microbial communities that they support within the rhizosphere hold promise in the remediation of land and waterways contaminated with hydrocarbons but they have not yet been adopted in large-scale remediation strategies. In this review plant and microbial degradative capacities, viewed as a continuum, have been dissected in order to identify where bottle-necks and limitations exist. Phenols, anilines and polyaromatic hydrocarbons (PAHs) were selected as the target classes of molecule for consideration, in part because of their common patterns of distribution, but also because of the urgent need to develop techniques to overcome their toxicity to human health. Depending on the chemical and physical properties of the pollutant, the emerging picture suggests that plants will draw pollutants including PAHs into the plant rhizosphere to varying extents via the transpiration stream. Mycorrhizosphere-bacteria and -fungi may play a crucial role in establishing plants in degraded ecosystems. Within the rhizosphere, microbial degradative activities prevail in order to extract energy and carbon skeletons from the pollutants for microbial cell growth. There has been little systematic analysis of the changing dynamics of pollutant degradation within the rhizosphere; however, the importance of plants in supplying oxygen and nutrients to the rhizosphere via fine roots, and of the beneficial effect of microorganisms on plant root growth is stressed. In addition to their role in supporting rhizospheric degradative activities, plants may possess a limited capacity to transport some of the more mobile pollutants into roots and shoots via fine roots. In those situations where uptake does occur (i.e. only limited microbial activity in the rhizosphere) there is good evidence that the pollutant may be metabolised. However, plant uptake is frequently associated with the inhibition of plant growth and an increasing tendency to oxidant stress. Pollutant tolerance seems to correlate with the ability to deposit large quantities of pollutant metabolites in the 'bound' residue fraction of plant cell walls compared to the vacuole. In this regard, particular attention is paid to the activities of peroxidases, laccases, cytochromes P450, glucosyltransferases and ABC transporters. However, despite the seemingly large diversity of these proteins, direct proof of their participation in the metabolism of industrial aromatic pollutants is surprisingly scarce and little is known about their control in the overall metabolic scheme. Little is known about the bioavailability of bound metabolites; however, there may be a need to prevent their movement into wildlife food chains. In this regard, the application to harvested plants of composting techniques based on the degradative capacity of white-rot fungi merits attention.

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Year:  2002        PMID: 11885416     DOI: 10.1007/bf02987315

Source DB:  PubMed          Journal:  Environ Sci Pollut Res Int        ISSN: 0944-1344            Impact factor:   4.223


  102 in total

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Review 5.  Substrate binding and catalysis in heme peroxidases.

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Journal:  Curr Opin Chem Biol       Date:  1998-04       Impact factor: 8.822

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Journal:  Science       Date:  1985-06-21       Impact factor: 47.728

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Journal:  Appl Environ Microbiol       Date:  1997-05       Impact factor: 4.792

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Authors:  J J Ortega-Calvo; C Saiz-Jimenez
Journal:  Appl Environ Microbiol       Date:  1998-08       Impact factor: 4.792

Review 10.  Biotransformation of halogenated compounds.

Authors:  D J Hardman
Journal:  Crit Rev Biotechnol       Date:  1991       Impact factor: 8.429

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  39 in total

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5.  Scanning electron microscopic investigations of root structural modifications arising from growth in crude oil-contaminated sand.

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