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Martin Filion

Showing results (41-50 of 66) with videos related to

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BMC Genomics|June 20, 2018
Transcriptome alteration in Phytophthora infestans in response to phenazine-1-carboxylic acid production by Pseudomonas fluorescens strain LBUM223Roxane Roquigny, Amy Novinscak, Tanya Arseneault, et al.
Applied and Environmental Microbiology|December 8, 2019
Metabolic and Genomic Traits of Phytobeneficial Phenazine-Producing <i>Pseudomonas</i> spp. Are Linked to Rhizosphere Colonization in <i>Arabidopsis thaliana</i> and <i>Solanum tuberosum</i>Antoine Zboralski, Adrien Biessy, Marie-Claude Savoie, et al.
Frontiers in Plant Science|December 16, 2020
Expression of Putative Defense Responses in Cannabis Primed by <i>Pseudomonas</i> and/or <i>Bacillus</i> Strains and Infected by <i>Botrytis cinerea</i>Carole Balthazar, Gabrielle Cantin, Amy Novinscak, et al.
Phytopathology|June 21, 2012
Production of DAPG and HCN by Pseudomonas sp. LBUM300 contributes to the biological control of bacterial canker of tomatoCarine Lanteigne, Vijay J Gadkar, Thérèse Wallon, et al.
Phytopathology|July 23, 2021
Biocontrol Activity of <i>Bacillus</i> spp. and <i>Pseudomonas</i> spp. Against <i>Botrytis cinerea</i> and Other Cannabis Fungal PathogensCarole Balthazar, Amy Novinscak, Gabrielle Cantin, et al.
FEMS Microbiology Ecology|November 16, 2010
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 potatoRenée St-Onge, Vijay J Gadkar, Tanya Arseneault, et al.
Applied and Environmental Microbiology|April 23, 2017
Interaction between 2,4-Diacetylphloroglucinol- and Hydrogen Cyanide-Producing Pseudomonas brassicacearum LBUM300 and Clavibacter michiganensis subsp. michiganensis in the Tomato RhizosphereMélanie M Paulin, Amy Novinscak, Carine Lanteigne, et al.
Phytopathology|June 27, 2023
Seasonal Dynamics of Various Scab-Causing <i>Streptomyces</i> Genotypes Among Potato Fields on Prince Edward IslandCindy Hudec, Adrien Biessy, Geneviève Léger, et al.
Microbiology Resource Announcements|May 18, 2026
Genome sequences of five <i>Streptomyces</i> type strains (<i>Streptomyces argenteolus</i>, <i>Streptomyces pratensis</i>, <i>Streptomyces puniceus</i>, <i>Streptomyces spiroverticillatus</i>, and <i>Streptomyces sundarbansensis</i>)Adrien Biessy, Anuradha Jayathissa, William Jordan, et al.
Msphere|June 2, 2021
Inhibition of Three Potato Pathogens by Phenazine-Producing <i>Pseudomonas</i> spp. Is Associated with Multiple Biocontrol-Related TraitsAdrien Biessy, Amy Novinscak, Renée St-Onge, et al.
Pageof 7

Showing results (41-50 of 66) with videos related to

Sort By:
Pageof 7
BMC Genomics|June 20, 2018
Transcriptome alteration in Phytophthora infestans in response to phenazine-1-carboxylic acid production by Pseudomonas fluorescens strain LBUM223Roxane Roquigny, Amy Novinscak, Tanya Arseneault, et al.
Applied and Environmental Microbiology|December 8, 2019
Metabolic and Genomic Traits of Phytobeneficial Phenazine-Producing <i>Pseudomonas</i> spp. Are Linked to Rhizosphere Colonization in <i>Arabidopsis thaliana</i> and <i>Solanum tuberosum</i>Antoine Zboralski, Adrien Biessy, Marie-Claude Savoie, et al.
Frontiers in Plant Science|December 16, 2020
Expression of Putative Defense Responses in Cannabis Primed by <i>Pseudomonas</i> and/or <i>Bacillus</i> Strains and Infected by <i>Botrytis cinerea</i>Carole Balthazar, Gabrielle Cantin, Amy Novinscak, et al.
Phytopathology|June 21, 2012
Production of DAPG and HCN by Pseudomonas sp. LBUM300 contributes to the biological control of bacterial canker of tomatoCarine Lanteigne, Vijay J Gadkar, Thérèse Wallon, et al.
Phytopathology|July 23, 2021
Biocontrol Activity of <i>Bacillus</i> spp. and <i>Pseudomonas</i> spp. Against <i>Botrytis cinerea</i> and Other Cannabis Fungal PathogensCarole Balthazar, Amy Novinscak, Gabrielle Cantin, et al.
FEMS Microbiology Ecology|November 16, 2010
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 potatoRenée St-Onge, Vijay J Gadkar, Tanya Arseneault, et al.
Applied and Environmental Microbiology|April 23, 2017
Interaction between 2,4-Diacetylphloroglucinol- and Hydrogen Cyanide-Producing Pseudomonas brassicacearum LBUM300 and Clavibacter michiganensis subsp. michiganensis in the Tomato RhizosphereMélanie M Paulin, Amy Novinscak, Carine Lanteigne, et al.
Phytopathology|June 27, 2023
Seasonal Dynamics of Various Scab-Causing <i>Streptomyces</i> Genotypes Among Potato Fields on Prince Edward IslandCindy Hudec, Adrien Biessy, Geneviève Léger, et al.
Microbiology Resource Announcements|May 18, 2026
Genome sequences of five <i>Streptomyces</i> type strains (<i>Streptomyces argenteolus</i>, <i>Streptomyces pratensis</i>, <i>Streptomyces puniceus</i>, <i>Streptomyces spiroverticillatus</i>, and <i>Streptomyces sundarbansensis</i>)Adrien Biessy, Anuradha Jayathissa, William Jordan, et al.
Msphere|June 2, 2021
Inhibition of Three Potato Pathogens by Phenazine-Producing <i>Pseudomonas</i> spp. Is Associated with Multiple Biocontrol-Related TraitsAdrien Biessy, Amy Novinscak, Renée St-Onge, et al.
Pageof 7