Literature DB >> 21405991

Biological control of Rhizoctonia root rot on bean by phenazine- and cyclic lipopeptide-producing Pseudomonas CMR12a.

Jolien D'aes1, Gia Khuong Hoang Hua, Katrien De Maeyer, Joke Pannecoucque, Ilse Forrez, Marc Ongena, Lars E P Dietrich, Linda S Thomashow, Dmitri V Mavrodi, Monica Höfte.   

Abstract

Pseudomonas CMR12a was previously selected as an efficient biocontrol strain producing phenazines and cyclic lipopeptides (CLPs). In this study, biocontrol capacity of Pseudomonas CMR12a against Rhizoctonia root rot of bean and the involvement of phenazines and CLPs in this ability were tested. Two different anastomosis groups (AGs) of Rhizoctonia solani, the intermediately aggressive AG 2-2 and the highly aggressive AG 4 HGI, were included in growth-chamber experiments with bean plants. The wild-type strain CMR12a dramatically reduced disease severity caused by both R. solani AGs. A CLP-deficient and a phenazine-deficient mutant of CMR12a still protected bean plants, albeit to a lesser extent compared with the wild type. Two mutants deficient in both phenazine and CLP production completely lost their biocontrol activity. Disease-suppressive capacity of CMR12a decreased after washing bacteria before application to soil and thereby removing metabolites produced during growth on plate. In addition, microscopic observations revealed pronounced branching of hyphal tips of both R. solani AGs in the presence of CMR12a. More branched and denser mycelium was also observed for the phenazine-deficient mutant; however, neither the CLP-deficient mutant nor the mutants deficient in both CLPs and phenazines influenced hyphal growth. Together, results demonstrate the involvement of phenazines and CLPs during Pseudomonas CMR12a-mediated biocontrol of Rhizoctonia root rot of bean.

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Year:  2011        PMID: 21405991     DOI: 10.1094/PHYTO-11-10-0315

Source DB:  PubMed          Journal:  Phytopathology        ISSN: 0031-949X            Impact factor:   4.025


  15 in total

1.  Population structure and diversity of phenazine-1-carboxylic acid producing fluorescent Pseudomonas spp. from dryland cereal fields of central Washington State (USA).

Authors:  James A Parejko; Dmitri V Mavrodi; Olga V Mavrodi; David M Weller; Linda S Thomashow
Journal:  Microb Ecol       Date:  2012-03-02       Impact factor: 4.552

2.  Insect pathogenicity in plant-beneficial pseudomonads: phylogenetic distribution and comparative genomics.

Authors:  Pascale Flury; Nora Aellen; Beat Ruffner; Maria Péchy-Tarr; Shakira Fataar; Zane Metla; Ana Dominguez-Ferreras; Guido Bloemberg; Joachim Frey; Alexander Goesmann; Jos M Raaijmakers; Brion Duffy; Monica Höfte; Jochen Blom; Theo H M Smits; Christoph Keel; Monika Maurhofer
Journal:  ISME J       Date:  2016-02-19       Impact factor: 10.302

3.  Gene PA2449 is essential for glycine metabolism and pyocyanin biosynthesis in Pseudomonas aeruginosa PAO1.

Authors:  Benjamin R Lundgren; William Thornton; Mark H Dornan; Luis Roberto Villegas-Peñaranda; Christopher N Boddy; Christopher T Nomura
Journal:  J Bacteriol       Date:  2013-03-01       Impact factor: 3.490

4.  Biological control of wheat root diseases by the CLP-producing strain Pseudomonas fluorescens HC1-07.

Authors:  Ming-Ming Yang; Shan-Shan Wen; Dmitri V Mavrodi; Olga V Mavrodi; Diter von Wettstein; Linda S Thomashow; Jian-Hua Guo; David M Weller
Journal:  Phytopathology       Date:  2014-03       Impact factor: 4.025

5.  Antimicrobial and Insecticidal: Cyclic Lipopeptides and Hydrogen Cyanide Produced by Plant-Beneficial Pseudomonas Strains CHA0, CMR12a, and PCL1391 Contribute to Insect Killing.

Authors:  Pascale Flury; Pilar Vesga; Maria Péchy-Tarr; Nora Aellen; Francesca Dennert; Nicolas Hofer; Karent P Kupferschmied; Peter Kupferschmied; Zane Metla; Zongwang Ma; Sandra Siegfried; Sandra de Weert; Guido Bloemberg; Monica Höfte; Christoph J Keel; Monika Maurhofer
Journal:  Front Microbiol       Date:  2017-02-03       Impact factor: 5.640

6.  Basidiomycetes Are Particularly Sensitive to Bacterial Volatile Compounds: Mechanistic Insight Into the Case Study of Pseudomonas protegens Volatilome Against Heterobasidion abietinum.

Authors:  Maria Isabella Prigigallo; Angelo De Stradis; Abhishek Anand; Francesco Mannerucci; Floriane L'Haridon; Laure Weisskopf; Giovanni Bubici
Journal:  Front Microbiol       Date:  2021-05-31       Impact factor: 5.640

7.  Inhibition of Three Potato Pathogens by Phenazine-Producing Pseudomonas spp. Is Associated with Multiple Biocontrol-Related Traits.

Authors:  Adrien Biessy; Amy Novinscak; Renée St-Onge; Geneviève Léger; Antoine Zboralski; Martin Filion
Journal:  mSphere       Date:  2021-06-02       Impact factor: 4.389

8.  Characterization of the biocontrol activity of pseudomonas fluorescens strain X reveals novel genes regulated by glucose.

Authors:  Gerasimos F Kremmydas; Anastasia P Tampakaki; Dimitrios G Georgakopoulos
Journal:  PLoS One       Date:  2013-04-15       Impact factor: 3.240

9.  Take-all of Wheat and Natural Disease Suppression: A Review.

Authors:  Youn-Sig Kwak; David M Weller
Journal:  Plant Pathol J       Date:  2013-06       Impact factor: 1.795

10.  Biosynthesis, Chemical Structure, and Structure-Activity Relationship of Orfamide Lipopeptides Produced by Pseudomonas protegens and Related Species.

Authors:  Zongwang Ma; Niels Geudens; Nam P Kieu; Davy Sinnaeve; Marc Ongena; José C Martins; Monica Höfte
Journal:  Front Microbiol       Date:  2016-03-30       Impact factor: 5.640

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