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Elizabeth Eder
Project Manager

Elizabeth ("Liz") Eder is a project manager with the EMSL User Program.

Previously, Liz served as a chemist with the Biomolecular Pathways Integrated Research Platform working on nuclear magnetic resonance (NMR) spectroscopy to perform metabolic profiling of complex mixtures from environmental and microbiological sources. Her research interests focused on applying NMR metabolomics to study the interactions between microbes, plants, and soils in nutrient cycling.

 

Screenshot from the Nuclear Magnetic Resonance Lab on the EMSL Virtual Tour.

Join Liz on the EMSL Virtual Tour to view and learn more about our facility's NMR instruments and resources.

Research Interests

  • Metabolomics
  • Microbiology
  • NMR Spectroscopy

Education

  • BA in Biology, Kenyon College, 2017

Publications

2022

  • Amundson K.K., M.A. Borton, R.A. Daly, D.W. Hoyt, A. Wong, E. Eder, J. Moore, et al. 2022. “Microbial colonization and persistence in deep fractured shales is guided by metabolic exchanges and viral predation.” Microbiome 10, no. 5. PNNL-SA-162800. doi:10.1186/s40168-021-01194-8

2021

  • Del Cerro C., E. Erickson, T. Dong, A.R. Wong, E. Eder, S.O. Purvine, and H.D. Mitchell, et al. 2021. "Intracellular pathways for lignin catabolism in white-rot fungi." Proceedings of the National Academy of Sciences of the United States of America 118, no. 9:e2017381118. PNNL-SA-155713. doi:10.1073/pnas.2017381118
     
  • Fudyma J.D., J.G. Toyoda, R.K. Chu, K.K. Weitz, H.M. Heyman, E. Eder, and D.W. Hoyt, et al. 2021. "Sequential abiotic-biotic processes drive organic carbon transformation in peat bogs." Journal of Geophysical Research: Biogeosciences 126, no. 2:e2020JG006079. PNNL-SA-160453. doi:10.1029/2020JG006079
     
  • Smercina D.N., A. Bowsher, S. Evans, M.L. Friesen, E. Eder, D.W. Hoyt, and L.K. Tiemann. 2021. "Switchgrass Rhizosphere Metabolite Chemistry Driven by Nitrogen Availability." Phytobiomes Journal 5, no. 1:88-96. PNNL-SA-152631. doi:10.1094/PBIOMES-09-19-0055-FI
     
  • Wilson R.M., M.M. Tfaily, M. Kolton, E.R. Johnston, C. Petro, C.A. Zalman, and P.J. Hanson, et al. 2021. "Soil metabolome response to whole-ecosystem warming at the Spruce and Peatland Responses under Changing Environments experiment." Proceedings of the National Academy of Sciences of the United States of America 118, no. 25:e2004192118. PNNL-SA-152358. doi:10.1073/pnas.2004192118

2020

  • Khare S., G.M. Deloid, R.M. Molina, K. Gokulan, S.P. Couvillion, K.J. Bloodsworth, and E.K. Eder, et al. 2020. "Effects of ingested nanocellulose on intestinal microbiota and homeostasis in Wistar Han rats." NanoImpact 18. PNNL-SA-149247. doi:10.1016/j.impact.2020.100216

2019

  • Booker A.E., D.W. Hoyt, T. Meulia, E.K. Eder, C.D. Nicora, S.O. Purvine, and R. Daly, et al. 2019. "Deep-Subsurface Pressure Stimulates Metabolic Plasticity in Shale-Colonizing Halanaerobium spp." Applied and Environmental Microbiology 85, no. 12:e00018-19. PNNL-SA-144542. doi:10.1128/AEM.00018-19
     
  • Narrowe A.B., M. Borton, D.W. Hoyt, G. Smith, R. Daly, J. Angle, and E. Eder, et al. 2019. "Uncovering the Diversity and Activity of Methylotrophic Methanogens in Freshwater Wetland Soils." mSystems 4, no. 6:e00320-19. PNNL-SA-152910. doi:10.1128/mSystems.00320-19

2018

  • Borton M., D.W. Hoyt, S. Roux, R. Daly, S. Welch, C.D. Nicora, and S.O. Purvine, et al. 2018. "Coupled laboratory and field investigations resolve microbial interactions that underpin persistence in hydraulically fractured shales." Proceedings of the National Academy of Sciences of the United States of America 115, no. 28:E6585-E6594. PNNL-SA-134972. doi:10.1073/pnas.1800155115

2017

  • Creamer K.E., F.S. Ditmars, P.J. Basting, K.S. Kunka, I.N. Hamdallah, S.P. Bush, Z. Scott, et al. 2017. “Benzoate- and salicylate-tolerant strains of Escherichia coli K-12 lost antibiotic resistance during laboratory evolution.” Applied and Environmental Microbiology 83, no. 2. doi:10.1128/AEM.02736-16

2015

  • Clark M.W., A.M. Yie, E.K. Eder, R.G. Dennis, P.J. Basting, K.A. Martinez II, B.D. Jones, et al. 2015. “Periplasmic acid stress increases cell division asymmetry (polar aging) of Escherichia coli.” PLOS One 10 no. 12:e0144650. Doi:10.1371/journal.pone.0144650