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Trends in Biotechnology|December 27, 2008
Plants disarm soil: engineering plants for the phytoremediation of explosivesElizabeth L Rylott, Neil C Bruce
Current Opinion in Chemical Biology|August 18, 2020
How synthetic biology can help bioremediationElizabeth L Rylott, Neil C Bruce
International Journal of Phytoremediation|May 7, 2019
Right on target: using plants and microbes to remediate explosivesElizabeth L Rylott, Neil C Bruce
Science (New York, N.Y.)|September 22, 2022
Plants to mine metals and remediate landElizabeth L Rylott, Neil C Bruce
Current Opinion in Biotechnology|November 25, 2010
Biodegradation and biotransformation of explosivesElizabeth L Rylott, Astrid Lorenz, Neil C Bruce
Journal of Experimental Botany|August 19, 2015
Harnessing microbial gene pools to remediate persistent organic pollutants using genetically modified plants--a viable technology?Elizabeth L Rylott, Emily J Johnston, Neil C Bruce
Chembiochem : a European Journal of Chemical Biology|November 7, 2012
A gene-fusion approach to enabling plant cytochromes p450 for biocatalysisJulia Schückel, Elizabeth L Rylott, Gideon Grogan, et al.
Planta|November 30, 2018
Genetic modification of western wheatgrass (Pascopyrum smithii) for the phytoremediation of RDX and TNTLong Zhang, Elizabeth L Rylott, Neil C Bruce, et al.
FEMS Microbiology Letters|September 1, 2017
Investigating differences in the ability of XplA/B-containing bacteria to degrade the explosive hexahydro-1,3,5-trinitro-1,3,5-triazine (RDX)Dana Khdr Sabir, Nicolas Grosjean, Elizabeth L Rylott, et al.
FEMS Microbiology Letters|January 8, 2013
Towards engineering degradation of the explosive pollutant hexahydro-1,3,5-trinitro-1,3,5-triazine in the rhizosphereAstrid Lorenz, Elizabeth L Rylott, Stuart E Strand, et al.
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