World's Best Scientists 2026 revealed!

D-Index & Metrics

Plant Science and Agronomy

D-Index
32
Citations
3517
World Ranking
6001
National Ranking
251

Best Publications

  • Direct interaction between the arbuscular mycorrhizal fungus Glomus intraradices and different rhizosphere microorganisms

    M. Filion;M. St-Arnaud;J. A. Fortin

  • Direct quantification of fungal DNA from soil substrate using real-time PCR.

    Martin Filion;Marc St-Arnaud;Suha H Jabaji-Hare

  • Production of DAPG and HCN by Pseudomonas sp. LBUM300 contributes to the biological control of bacterial canker of tomato.

    Unknown

  • Quantification of Fusarium solani f. sp. phaseoli in Mycorrhizal Bean Plants and Surrounding Mycorrhizosphere Soil Using Real-Time Polymerase Chain Reaction and Direct Isolations on Selective Media.

    M. Filion;M. St-Arnaud;S. H. Jabaji-Hare

  • Genetic factors involved in rhizosphere colonization by phytobeneficial Pseudomonas spp.

    Unknown

  • Phenazines in plant-beneficial Pseudomonas spp.: biosynthesis, regulation, function and genomics.

    Unknown

  • Molecular Profiling of Rhizosphere Microbial Communities Associated with Healthy and Diseased Black Spruce (Picea mariana) Seedlings Grown in a Nursery

    M. Filion;R. C. Hamelin;L. Bernier;M. St-Arnaud

  • Effects of temperatures near the freezing point on N2O emissions, denitrification and on the abundance and structure of nitrifying and denitrifying soil communities

    Sophie Wertz;Claudia Goyer;Bernie J. Zebarth;David L. Burton

  • A PCR-denaturing gradient gel electrophoresis approach to assess Fusarium diversity in asparagus.

    E. Yergeau;M. Filion;V. Vujanovic;M. St-Arnaud

  • Pseudomonas fluorescens LBUM223 Increases Potato Yield and Reduces Common Scab Symptoms in the Field.

    Unknown

  • Diversity of phytobeneficial traits revealed by whole-genome analysis of worldwide-isolated phenazine-producing Pseudomonas spp.

    Adrien Biessy;Amy Novinscak;Jochen Blom;Geneviève Léger

  • Genetic diversity of Streptomyces spp. causing common scab of potato in eastern Canada

    Unknown

  • Phenazine production by Pseudomonas sp. LBUM223 contributes to the biological control of potato common scab.

    Unknown

  • Interactions Between Bacillus Spp., Pseudomonas Spp. and Cannabis sativa Promote Plant Growth.

    Unknown

  • Phenazine-1-Carboxylic Acid Production by Pseudomonas fluorescens LBUM636 Alters Phytophthora infestans Growth and Late Blight Development

    Unknown

  • Influences of over winter conditions on denitrification and nitrous oxide-producing microorganism abundance and structure in an agricultural soil amended with different nitrogen sources

    Enrico Tatti;Claudia Goyer;Martin Chantigny;Sophie Wertz

  • Phloroglucinol Derivatives in Plant-Beneficial Pseudomonas spp.: Biosynthesis, Regulation, and Functions.

    Unknown

  • The ability of Pseudomonas sp. LBUM 223 to produce phenazine-1-carboxylic acid affects the growth of Streptomyces scabies, the expression of thaxtomin biosynthesis genes and the biological control potential against common scab of potato.

    Unknown

  • Biocontrol through antibiosis: exploring the role played by subinhibitory concentrations of antibiotics in soil and their impact on plant pathogens

    Unknown

  • Biocontrol of Potato Common Scab is Associated with High Pseudomonas fluorescens LBUM223 Populations and Phenazine-1-Carboxylic Acid Biosynthetic Transcript Accumulation in the Potato Geocaulosphere.

    Unknown

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