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Agricultural Research Service United States Department of Agriculture
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Jeffrey Buyer
Jude Maul
Steven Mirsky
Michel Cavigelli
Charles Coffman
Thomas Devine
Autar Mattoo
Patricia Millner
Daniel Roberts
John Teasdale
 

Laurie F McKenna
Sustainable Agricultural Systems Laboratory
Biological Science Lab Technician

Phone: (301) 504-6679 ext. 472
Fax: (304) 504-6491
Room 242

BLDG 001 BARC-WEST
BELTSVILLE, MD, 20705-2350


Publications
Evidence That a Degs Homologue in Enterobacter Clocae Is Important for Colonization and Disease Suppression on Cucumber - (Abstract) - (01-May-08)
Mutation in a Degs Homologue in Enterobacter Cloacae Results in Decreased Seedling and Root Colonization by This Bacterium - (Abstract)
Roberts, D.P., Lohrke, S.M., Lakshman, D.K., Mckenna, L.F. 2007. Mutation in a degs homologue in enterobacter cloacae results in decreased seedling and root colonization by this bacterium [abstract]. International Congress on Molecular Plant-Microbe Interactions.
Suppression of Damping-off of Cucumber Caused by Pythium Ultimum with Live Cells and Extracts of Serratia Marcescens N4-5 - (Peer Reviewed Journal)
Roberts, D.P., Mckenna, L.F., Lakshman, D.K., Meyer, S.L., Kong, H.N., De Souza, J.T., Lydon, J., Baker, C.J., Buyer, J.S., Chung, S. 2007. Suppression of damping-off of cucumber caused by pythium ultimum with live cells and extracts of serratia marcescens n4-5. Soil Biology and Biochemistry. 39:2275-2288.
Pyruvate Dehydrogenase Activity Is Important for Colonization of Seeds and Roots by Enterobacter Cloacae - (Peer Reviewed Journal)
Roberts, D.P., Mckenna, L.F., Lohrke, S.M., Rehner, S.A., De Souza, J.T. 2007. Pyruvate dehydrogenase activity is important for colonization of seeds and roots by enterobacter cloacae. Soil Biology and Biochemistry. 39:2150-2159.
Use of Natural Products for Suppression of Soilborne Diseases of Cucumber - (Abstract)
Roberts, D.P., Mckenna, L.F. 2006. Use of natural products for suppression of soilborne diseases of cucumber. International Conference on Methyl Bromide Alternatives and Emissions Reductions. Available: http://www.mbao.org/2006/06Proceedings/mbrpro06.html.
Mutation in Cyaa in Enterobacter Cloacae Decreases Cucumber Root Colonization - (Peer Reviewed Journal)
Roberts, D.P., Mckenna, L.F., Hu, X., Lohrke, S.M., Kong, H.N., De Souza, J.T., Baker, C.J., Lydon, J. 2006. Mutation in cyaa in enterobacter cloacae decreases cucumber root colonization. Archives Of Microbiology. 187:101-115.
Influence of Catabolic Capabilities of Enterobacter Cloacae on Colonization of Cucumber Rhizosphere by This Bacterium - (Abstract)
Roberts, D.P., Mckenna, L.F., Lohrke, S.M., Buyer, J.S., Liu, S., Hu, X., De Souza, J.T. 2006. Influence of catabolic capabilities of enterobacter cloacae on colonization of cucumber rhizosphere by this bacterium [abstract]. International Plant Growth Promoting Rhizobacteria Workshop.
Mutation of a Cyaa Homologue in Enterobacter Cloacae Results in Reduced Colonization of Cucumber Seedlings and Roots - (Abstract)
Roberts, D.P., Hu, X., Mckenna, L.F., Lohrke, S., Kong, H.N., Desouza, J.T., Lydon, J. 2006. Mutation of a cyaa homologue in enterobacter cloacae results in reduced colonization of cucumber seedlings and roots [abstract]. International Union of Microbiological Societies Proceedings/Abstracts.
Mutation of a Degs Homolog in Enterobacter Cloacae Decreases Seed and Root Colonization But Does Not Affect Biocontrol of Damping-off Caused by Pythium Ultimum on Cucumber - (Abstract) - (15-May-03)
Mutation in An Sdha Homologue in Enterobacter Cloacae Results in Reduced Colonization But Does Not Affect Biocontrol of Damping off on Cucumber - (Abstract) - (30-Jul-02)
Mutation in An Cyaa Homologue in Enterobacter Cloacae Results in Reduced Colonization But Does Not Affect Damping-off on Cucumber - (Abstract) - (30-Jul-02)
Mutation in the Sdha Homologue in Enterobacter Cloacae Results in Colonization of Cucumber Roots But Does Not Affect Biocontrol of Damping-off on Cucumber Caused by Pythium Ultimum - (Abstract) - (18-Apr-02)

   
 
Last Modified: 05/14/2009
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