Potential of Biotechnology in Phytoremediation
Author:
Affiliation:
1. 1Department of Biotechnology, M.S. Ramaiah University of Applied Sciences, Bangalore, India .
2. 2Department of Biotechnology, ICAR- Central Institute of Temperate Horticulture, Srinagar, Kashmir .
Abstract
Publisher
Enviro Research Publishers
Subject
General Environmental Science
Reference22 articles.
1. 1. V. M. Campos, I. Merino, R. Casado, L. F. Pacios and L. Gómez. Phytoremediation of organic pollutants. Spanish Journal of Agricultural Research (2008), DOI: 10.5424/sjar/200806S1-372.
2. 2. Nouri, J., Khorasani, N., Lorestani, B. et al. Accumulation of heavy metals in soil and uptake by plant species with Phytoremediation potential. Environ Earth Sci 59, 315–323 (2009). https://doi.org/10.1007/s12665-009-0028-2.
3. 3. Ellen L. Arthur, Pamela J. Rice, Patricia J. Rice, Todd A. Anderson, Sadika M. Baladi, Keri L. D. Henderson & Joel R. Coats. Phytoremediation— An Overview, Critical Reviews in Plant Sciences (2005), 24:2, 109-122, DOI: 10.1080/07352680590952496.
4. 4. Dowling DN, Improving Phytoremediation through biotechnology, Current Opinion in Biotechnology (2009), doi: 10.1016/j.copbio.2009.03.007.
5. 5. Doty SL, Shang TQ, Wilson AM, Tangen J, Westergreen AD, Newman LA, Strand SE, Gordon MP. Enhanced metabolism of halogenated hydrocarbons in transgenic plants containing mammalian cytochrome P450 2E1. Proc Natl Acad Sci USA 97:6287–6291 (2000).
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