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Microbial Ecology|November 16, 2013
A simulation model for the effect of predation on bacteria in continuous cultureH W Hunt, C V Cole, D A Klein, et al.Microbial Ecology|November 16, 2013
Trophic interactions in soils as they affect energy and nutrient dynamics. I. IntroductionD C Coleman, C V Cole, H W Hunt, et al.Microbial Ecology|November 16, 2013
Trophic interactions in soils as they affect energy and nutrient dynamics. V. Phosphorus transformationsC V Cole, E T Elliott, H W Hunt, et al.Microbial Ecology|November 16, 2013
Trophic interactions in soils as they affect energy and nutrient dynamics. III. Biotic interactions of bacteria, amoebae, and nematodesR V Anderson, E T Elliott, J F McClellan, et al.Microbial Ecology|November 16, 2013
Trophic interactions in soils as they affect energy and nutrient dynamics. II. Physiological responses of selected rhizosphere bacteriaM A Herzberg, D A Klein, D C ColemanMicrobial Ecology|November 16, 2013
Trophic interactions in soils as they affect energy and nutrient dynamics. IV. Flows of metabolic and biomass carbonD C Coleman, R V Anderson, C V Cole, et al.Applied and Environmental Microbiology|April 1, 1982
Interactions of bacterial and amoebal populations in soil microcosms with fluctuating moisture contentR J Bryant, L E Woods, D C Coleman, et al.Microbial Ecology|November 5, 2013
The microbial loop concept as used in terrestrial soil ecology studiesD C ColemanThe Journal of Hospital Infection|February 6, 2019
Contribution of whole-genome sequencing to understanding of the epidemiology and control of meticillin-resistant Staphylococcus aureusH Humphreys, D C ColemanJournal of Nematology|March 12, 2009
Ecology of Nematodes Under Influence of Cucurbita spp. and Different Fertilizer TypesD L Porazinska, D C ColemanPageof 16