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Bioresource Technology|July 2, 2005
On-farm production of AM fungus inoculum in mixtures of compost and vermiculiteD D Douds, G Nagahashi, P E Pfeffer, et al.Plant Physiology|April 1, 1989
In VivoP NMR Spectroscopic Studies of Soybean Bradyrhizobium Symbiosis: I. Optimization of ParametersD B Rolin, R T Boswell, C Sloger, et al.Lipids|April 1, 1992
Effects of bis homoallylic and homoallylic hydroxyl substitution on the olefinic 13C resonance shifts in fatty acid methyl estersP E Pfeffer, P E Sonnet, D P Schwartz, et al.Applied and Environmental Microbiology|June 1, 1994
In vivo nuclear magnetic resonance study of the osmoregulation of phosphocholine-substituted beta-1,3;1,6 cyclic glucan and its associated carbon metabolism in Bradyrhizobium japonicum USDA 110P E Pfeffer, G Bécard, D B Rolin, et al.Biochimica Et Biophysica Acta|September 1, 1990
In vivo 133Cs-NMR a probe for studying subcellular compartmentation and ion uptake in maize root tissueP E Pfeffer, D B Rolin, D Brauer, et al.Plant Physiology|December 1, 1992
P relaxation responses associated with n(2)/o(2) diffusion in soybean nodule cortical cells and excised cortical tissueP E Pfeffer, D B Rolin, T F Kumosinski, et al.Plant Physiology|September 11, 1999
Carbon metabolism in spores of the arbuscular mycorrhizal fungus Glomus intraradices as revealed by nuclear magnetic resonance spectroscopyB Bago, P E Pfeffer, D D Douds, et al.Plant Physiology|December 1, 1992
Observation of the Oxygen Diffusion Barrier in Soybean (Glycine max) Nodules with Magnetic Resonance MicroscopyJ S Macfall, P E Pfeffer, D B Rolin, et al.The New Phytologist|November 30, 2005
The uptake, metabolism, transport and transfer of nitrogen in an arbuscular mycorrhizal symbiosisH Jin, P E Pfeffer, D D Douds, et al.Carbohydrate Research|March 16, 1992
Crystal structure and n.m.r. analysis of lactulose trihydrateG A Jeffrey, D B Huang, P E Pfeffer, et al.Pageof 3