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Microbiology

D-Index
94
Citations
29336
World Ranking
575
National Ranking
61

Overview

J. Colin Murrell is affiliated with the University of East Anglia in the United Kingdom. Their research intersects the fields of Environmental Science and Biochemistry, Genetics and Molecular Biology, with a focus on subfields including Pollution, Molecular Biology, Oceanography, Inorganic Chemistry, and Ecology.

The scientist's work broadly covers topics such as microbial bioremediation and biosurfactants, microbial metabolism and enzyme function, microbial metabolic engineering and bioproduction, microbial community ecology and physiology, biofuel production and bioconversion, methane hydrates and related phenomena, and metal-catalyzed oxygenation mechanisms.

Murrell has contributed to several peer-reviewed publications. Notable recent papers include:

  • The impacts of ocean acidification on marine trace gases and the implications for atmospheric chemistry and climate, 2020, Proceedings of the Royal Society A Mathematical Physical and Engineering Sciences
  • A unique bacteriohopanetetrol stereoisomer of marine anammox, 2020, Organic Geochemistry
  • Genome Scale Metabolic Model of the versatile methanotroph Methylocella silvestris, 2020, Microbial Cell Factories
  • Isoprene Oxidation by the Gram-Negative Model bacterium Variovorax sp. WS11, 2020, Microorganisms
  • Molecular Ecology of Isoprene-Degrading Bacteria, 2020, Microorganisms

The scholar has published multiple papers in venues such as Microorganisms, Proceedings of the Royal Society A Mathematical Physical and Engineering Sciences, Organic Geochemistry, Microbial Cell Factories, and The ISME Journal.

Frequent co-authors have included Andrew T. Crombie, Muhammad Farhan Ul Haque, Robin A. Dawson, Nasmille L. Larke-Mejía, and Leanne P. Sims.

Best Publications

  • Stable-isotope probing as a tool in microbial ecology

    Stefan Radajewski;Philip Ineson;Nisha R. Parekh;J. Colin Murrell

  • Evidence that participate methane monooxygenase and ammonia monooxygenase may be evolutionarily related

    Andrew J. Holmes;Andria Costello;Mary E. Lidstrom;J. Colin Murrell

  • Stable isotope probing - linking microbial identity to function.

    Marc G. Dumont;J. Colin Murrell

  • Unravelling rhizosphere–microbial interactions: opportunities and limitations

    Brajesh K. Singh;Peter Millard;Andrew S. Whiteley;J.Colin Murrell

  • Metabolic aspects of aerobic obligate methanotrophy.

    Yuri A Trotsenko;John Colin Murrell

  • Sea surface microlayers: A unified physicochemical and biological perspective of the air–ocean interface

    Michael Cunliffe;Anja Engel;Sanja Frka;Blaženka Gašparović

  • Molecular ecology techniques for the study of aerobic methanotrophs.

    Ian R. McDonald;Levente Bodrossy;Yin Chen;J. Colin Murrell

  • Methane, microbes and models: fundamental understanding of the soil methane cycle for future predictions

    Loïc Nazaries;J. Colin Murrell;Pete Millard;Liz Baggs

  • Development and validation of a diagnostic microbial microarray for methanotrophs

    Levente Bodrossy;Nancy Stralis-Pavese;J. Colin Murrell;Stefan Radajewski

  • Improved group-specific PCR primers for denaturing gradient gel electrophoresis analysis of the genetic diversity of complex microbial communities.

    Martin Mühling;John Woolven-Allen;J Colin Murrell;Ian Joint

  • Identification of active methylotroph populations in an acidic forest soil by stable-isotope probing.

    Stefan Radajewski;Gordon Webster;David S. Reay;Samantha A. Morris

  • Characterization of Methanotrophic Bacterial Populations in Soils Showing Atmospheric Methane Uptake

    Andrew J. Holmes;Andrew J. Holmes;Peter Roslev;Ian R. McDonald;Niels Iversen

  • Stable-isotope probing of nucleic acids: a window to the function of uncultured microorganisms.

    Stefan Radajewski;Ian R McDonald;Ian R McDonald;J Colin Murrell

  • A comparison of labeling and label-free mass spectrometry-based proteomics approaches.

    Vibhuti J. Patel;Konstantinos Thalassinos;Susan E. Slade;Joanne B. Connolly

  • Analysis of methanotrophic bacteria in Movile Cave by stable isotope probing.

    Elena Hutchens;Stefan Radajewski;Marc G. Dumont;Ian R. McDonald

  • Regulation of expression of methane monooxygenases by copper ions

    J.Colin Murrell;Ian R McDonald;Bettina Gilbert

  • Who eats what, where and when? Isotope-labelling experiments are coming of age.

    Josh D Neufeld;Michael Wagner;J Colin Murrell

  • Comparison of pmoA PCR Primer Sets as Tools for Investigating Methanotroph Diversity in Three Danish Soils

    David G. Bourne;Ian R. McDonald;J. Colin Murrell

  • Identification of the Functionally Active Methanotroph Population in a Peat Soil Microcosm by Stable-Isotope Probing

    Samantha A. Morris;Stefan Radajewski;Toby W. Willison;J. Colin Murrell

  • Methodological Considerations for the Use of Stable Isotope Probing in Microbial Ecology

    Josh D. Neufeld;Marc G. Dumont;Jyotsna Vohra;J. Colin Murrell

  • Detection of methanotrophic bacteria in environmental samples with the PCR.

    I R McDonald;E M Kenna;J C Murrell

Frequent Co-Authors

Ian R. McDonald
Ian R. McDonald University of Waikato
Levente Bodrossy
Levente Bodrossy Commonwealth Scientific and Industrial Research Organisation
Josh D. Neufeld
Josh D. Neufeld University of Waterloo
Terry J. McGenity
Terry J. McGenity University of Essex
Alan A. DiSpirito
Alan A. DiSpirito Iowa State University
Thomas J. Smith
Thomas J. Smith Johns Hopkins University School of Medicine
Howard Dalton
Howard Dalton University of Warwick
Mike S. M. Jetten
Mike S. M. Jetten Radboud University
Huub J. M. Op den Camp
Huub J. M. Op den Camp Radboud University
Peter F. Dunfield
Peter F. Dunfield University of Calgary

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