World's Best Scientists 2026 revealed!
Michael J. Dilworth

Michael J. Dilworth

D-Index & Metrics

Biology and Biochemistry

D-Index
59
Citations
10558
World Ranking
12736
National Ranking
357

Overview

Michael J. Dilworth is affiliated with Murdoch University in Australia. Their academic contributions and research activities are linked to this institution.

No specific details about their recent papers, co-authors, publication venues, book publications, main fields or subfields of study, main research topics, or awards have been recorded in the available data.

Best Publications

  • Control of leghaemoglobin synthesis in snake beans.

    W. J. Broughton;M. J. Dilworth

  • Mineral constraints to nitrogen fixation

    Graham W. O'hara;Nantakorn Boonkerd;Michael J. Dilworth

  • Microvirga lupini sp. nov., Microvirga lotononidis sp. nov. and Microvirga zambiensis sp. nov. are alphaproteobacterial root-nodule bacteria that specifically nodulate and fix nitrogen with geographically and taxonomically separate legume hosts

    Julie K. Ardley;Matthew A. Parker;Sofie E. De Meyer;Robert D. Trengove

  • Maintenance of Intracellular pH and Acid Tolerance in Rhizobium meliloti.

    Graham W. O'Hara;Thomas J. Goss;Michael J. Dilworth;Andrew R. Glenn

  • The model legume Medicago truncatula A17 is poorly matched for N2 fixation with the sequenced microsymbiont Sinorhizobium meliloti 1021.

    Jason J. Terpolilli;Graham W. O’Hara;Ravi P. Tiwari;Michael J. Dilworth

  • Iron-deficiency specifically limits nodule development in peanut inoculated with Bradyrhizobium sp

    G. W. O'hara;M. J. Dilworth;N. Boonkerd;P. Parkpian

  • The role of iron in nodulation and nitrogen fixation in Lupinus angustifolius L

    Caixian Tang;Alan D. Robson;Michael J. Dilworth

  • Hydroxamate siderophores of root nodule bacteria

    Kerry C. Carson;Jean-Marie Meyer;Michael J. Dilworth

  • FACTORS AFFECTING THE REDUCTION OF ACETYLENE BY ROOT NODULES OF LUPINUS SPECIES

    M. J. Trinick;M. J. Dilworth;M. Grounds

  • Constructs for insertional mutagenesis, transcriptional signal localization and gene regulation studies in root nodule and other bacteria

    Wayne G. Reeve;Ravi P. Tiwari;Penelope S. Worsley;Michael J. Dilworth

  • Complete genome sequence of the Medicago microsymbiont Ensifer ( Sinorhizobium ) medicae strain WSM419

    Wayne Reeve;Patrick S. G. Chain;Patrick S. G. Chain;Graham O'Hara;Julie Ardley

  • Properties of organic acid utilization mutants of Rhizobium leguminosarum strain 300

    R. Arwas;I. A. McKAY;F. R. P. Rowney;M. J. Dilworth

  • Acid tolerance in Rhizobium meliloti strain WSM419 involves a two-component sensor-regulator system.

    Ravi P. Tiwari;Wayne G. Reeve;Michael J. Dilworth;Andrew R. Glenn

  • Siderophore and organic acid production in root nodule bacteria

    K. C. Carson;S. Holliday;A. R. Glenn;M. J. Dilworth

  • The interaction between aluminium and root nodule bacteria

    S.E. Flis;A.R. Glenn;M.J. Dilworth

  • Hydrazine is a product of dinitrogen reduction by the vanadium-nitrogenase from Azotobacter chroococcum.

    M J Dilworth;R R Eady

  • Identification and characterization of fast- and slow-growing root nodule bacteria from South-Western Australian soils able to nodulate Acacia saligna

    Nada D.S Marsudi;Andrew R Glenn;Michael J Dilworth

  • The uptake and hydrolysis of disaccharides by fast-and slow-growing species of Rhizobium

    A. R. Glenn;M. J. Dilworth

  • Differential Effects on N2 Binding and Reduction, HD Formation, and Azide Reduction with α-195His- and α-191Gln-Substituted MoFe Proteins of Azotobacter vinelandii Nitrogenase†

    Karl Fisher;Michael J. Dilworth;William E. Newton

  • The model legume Medicago truncatula A17 is poorly matched for N2fixation with the sequenced microsymbiont Sinorhizobium meliloti 1021

    J.J. Terpolilli;G.W. O'Hara;R.P. Tiwari;M.J. Dilworth

Frequent Co-Authors

John Howieson
John Howieson Murdoch University
Graham O’Hara
Graham O’Hara Murdoch University
Alan Robson
Alan Robson University of Western Australia
Caixian Tang
Caixian Tang La Trobe University
Anne Willems
Anne Willems Ghent University
Philip S. Poole
Philip S. Poole University of Oxford
Robert R. Eady
Robert R. Eady University of Liverpool
Loren Hauser
Loren Hauser Digital Infuzion (United States)
Miriam Land
Miriam Land Oak Ridge National Laboratory
Patrick S. G. Chain
Patrick S. G. Chain Los Alamos National Laboratory

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