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Michael J. McInerney

Michael J. McInerney

D-Index & Metrics

Microbiology

D-Index
68
Citations
17069
World Ranking
2156
National Ranking
901

Overview

Michael J. McInerney is affiliated with the University of Oklahoma in the United States. Their research spans multiple scientific disciplines with a focus on engineering, environmental science, and biochemistry, genetics, and molecular biology. Their work intersects several subfields including molecular biology, biomedical engineering, ecology, environmental engineering, and building and construction.

The scientist's research topics include microbial fuel cells and bioremediation, anaerobic digestion and biogas production, microbial community ecology and physiology, biofuel production and bioconversion, membrane-based ion separation techniques, microbial metabolic engineering and bioproduction, and enzyme structure and function.

Michael J. McInerney has contributed to multiple recent publications. Notable papers include:

  • Syntrophus conductive pili demonstrate that common hydrogen-donating syntrophs can have a direct electron transfer option (2020, The ISME Journal)
  • Catabolism and interactions of uncultured organisms shaped by eco-thermodynamics in methanogenic bioprocesses (2020, Microbiome)
  • Copper Bonding Technology in Heterogeneous Integration (2023, Electronic Materials Letters)
  • The Beta Subunit of Non-bifurcating NADH-Dependent [FeFe]-Hydrogenases Differs From Those of Multimeric Electron-Bifurcating [FeFe]-Hydrogenases (2020, Frontiers in Microbiology)
  • Cross-Feedings, Competition, and Positive and Negative Synergies in a Four-Species Synthetic Community for Anaerobic Degradation of Cellulose to Methane (2023, mBio)

Frequent co-authors associated with McInerney's work include Neil Q. Wofford, Robert P. Gunsalus, Dongyu Wang, Kristopher A. Hunt, and Pieter Candry.

The scientist regularly publishes in a variety of journals, notably Frontiers in Microbiology and Microbiology Resource Announcements, each featuring two publications. Other venues include The ISME Journal, Microbiome, and Electronic Materials Letters.

Best Publications

  • Comparison of methods to detect biosurfactant production by diverse microorganisms.

    Noha H. Youssef;Kathleen E. Duncan;David P. Nagle;Kristen N. Savage

  • Geobacter sulfurreducens sp. nov. , a hydrogen- and acetate-oxidizing dissimilatory metal-reducing microorganism

    F Caccavo;D J Lonergan;D R Lovley;M Davis

  • Syntrophomonas wolfei gen. nov. sp. nov., an Anaerobic, Syntrophic, Fatty Acid-Oxidizing Bacterium

    M. J. McInerney;M. P. Bryant;R. B. Hespell;J. W. Costerton

  • Anaerobic bacterium that degrades fatty acids in syntrophic association with methanogens

    Michael J. McInerney;Marvin P. Bryant;Norbert Pfennig

  • Genomic Insights into Syntrophy: The Paradigm for Anaerobic Metabolic Cooperation

    Jessica R. Sieber;Michael J. McInerney;Robert P. Gunsalus

  • Syntrophy in anaerobic global carbon cycles.

    Michael J McInerney;Jessica R Sieber;Robert P Gunsalus

  • Microbial processes in oil fields: culprits, problems, and opportunities.

    Noha Youssef;Mostafa S Elshahed;Michael J McInerney

  • Physiology, Ecology, Phylogeny, and Genomics of Microorganisms Capable of Syntrophic Metabolism

    Michael J. McInerney;Christopher G. Struchtemeyer;Jessica R Sieber;Housna Mouttaki

  • Exposure of Soil Microbial Communities to Chromium and Arsenic Alters Their Diversity and Structure

    Cody S. Sheik;Tyler W. Mitchell;Fariha Z. Rizvi;Yasir Rehman

  • The genome of Syntrophus aciditrophicus: Life at the thermodynamic limit of microbial growth

    Michael J. McInerney;Lars Rohlin;Housna Mouttaki;UnMi Kim

  • Anaerobic microbial metabolism can proceed close to thermodynamic limits

    Bradley E. Jackson;Michael J. McInerney

  • Syntrophus aciditrophicus sp. nov., a new anaerobic bacterium that degrades fatty acids and benzoate in syntrophic association with hydrogen-using microorganisms

    Bradley E. Jackson;V. K. Bhupathiraju;Ralph S. Tanner;Carl R. Woese

  • Team-Based Learning Enhances Long-Term Retention and Critical Thinking in an Undergraduate Microbial Physiology Course

    Michael J. Mcinerney;L. Dee Fink

  • In Situ Biosurfactant Production by Bacillus Strains Injected into a Limestone Petroleum Reservoir

    N. Youssef;D. R. Simpson;K. E. Duncan;M. J. McInerney

  • Properties of the biosurfactant produced by Bacillus licheniformis strain JF-2.

    Michael J. McInerney;M. Javaheri;David P. Nagle

  • Anaerobic Production of a Biosurfactant by Bacillus licheniformis JF-2.

    Mohammad Javaheri;Gary E. Jenneman;Michael J. McInerney;Roy M. Knapp

  • Anaerobic benzene biodegradation—a new era

    John D. Coates;Romy Chakraborty;Michael J. McInerney

  • Anaerobic Degradation of Lactate by Syntrophic Associations of Methanosarcina barkeri and Desulfovibrio Species and Effect of H(2) on Acetate Degradation.

    Michael J. McInerney;Marvin P. Bryant

  • Rhamnolipid biosurfactant mixtures for environmental remediation.

    Thu T. Nguyen;Noha H. Youssef;Michael J. McInerney;David A. Sabatini

  • Effect of nitrate on biogenic sulfide production.

    Gary E. Jenneman;M. J. McInerney;Roy M. Knapp

  • The genome of Syntrophomonas wolfei: new insights into syntrophic metabolism and biohydrogen production.

    Jessica R. Sieber;David R. Sims;Cliff Han;Edwin Kim

Frequent Co-Authors

Joseph M. Suflita
Joseph M. Suflita University of Oklahoma
Robert P. Gunsalus
Robert P. Gunsalus University of California, Los Angeles
Mostafa S. Elshahed
Mostafa S. Elshahed Oklahoma State University
Lee R. Krumholz
Lee R. Krumholz University of Oklahoma
Alla Lapidus
Alla Lapidus Saint Petersburg State University
Bernhard Schink
Bernhard Schink University of Konstanz
Alfons J. M. Stams
Alfons J. M. Stams Wageningen University & Research
Marvin P. Bryant
Marvin P. Bryant University of Illinois at Urbana-Champaign
Wolfgang Buckel
Wolfgang Buckel Philipp University of Marburg
Derek R. Lovley
Derek R. Lovley University of Massachusetts Amherst

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