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Correlative Imaging and Analyses of Soil Organic Matter in the Rhizosphere

Published online by Cambridge University Press:  27 August 2014

Alice C. Dohnalkova
Affiliation:
Pacific Northwest National Laboratory, Environmental Molecular Sciences Laboratory, Richland, WA,USA
Tamas Varga
Affiliation:
Pacific Northwest National Laboratory, Environmental Molecular Sciences Laboratory, Richland, WA,USA
C. Kent Keller
Affiliation:
Washington State University, School of Earth & Environmental Sciences, Pullman, WA, USA

Abstract

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Type
Abstract
Copyright
Copyright © Microscopy Society of America 2014 

References

[1] Balogh-Brunstad, Z., Keller, C.K., Gill, R.A., Bormann, B.T., Li, C.Y. (2008bThe effect of bacteria and fungi on chemical weathering and chemical denudation fluxes in pine growth experiments. Biogoechem, doi: 10.1007/s/10533-008-9202.Google Scholar
[2] Kleber, M., Johnson, M.G. Advances in understanding the molecular structure of soil organic matter: implications for interactions in the environment. Adv. Agron. 106:77-142 (2010).Google Scholar
[3] Liang, C., Balser, T. C. Microbial production of recalcitrant organic matter in global soils:implications for productivity and climate policy. Nat. Rev. Microbiol. 9, 75 (2011).Google Scholar
[4] Dohnalkova, A, et al.. (2011. “Imaging Hydrated Microbial Extracellular Polymers: ComparativeAnalysis by Electron Microscopy.” Applied and Environmental Microbiology 77(4): 1254-1262.Google Scholar
[5] This research was performed at the Environmental Molecular Sciences Laboratory (EMSL), a national scientific sponsored by the Department of Energy's Office of Biological and Environmental.Google Scholar