Literature DB >> 33873412

Phenazines and their role in biocontrol by Pseudomonas bacteria.

Thomas F C Chin-A-Woeng1, Guido V Bloemberg1, Ben J J Lugtenberg1.   

Abstract

Various rhizosphere bacteria are potential (micro)biological pesticides which are able to protect plants against diseases and improve plant yield. Knowledge of the molecular mechanisms that govern these beneficial plant-microbe interactions enables optimization, enhancement and identification of potential synergistic effects in plant protection. The production of antifungal metabolites, induction of systemic resistance, and the ability to compete efficiently with other resident rhizobacteria are considered to be important prerequisites for the optimal performance of biocontrol agents. Intriguing aspects in the molecular mechanisms of these processes have been discovered recently. Phenazines and phloroglucinols are major determinants of biological control of soilborne plant pathogens by various strains of fluorescent Pseudomonas spp. This review focuses on the current state of knowledge on biocontrol by phenazine-producing Pseudomonas strains and the action, biosynthesis, and regulation mechanisms of the production of microbial phenazines.

Entities:  

Keywords:  Pseudomonas; biocontrol; biopesticides; colonization; phenazines; quorum sensing

Year:  2003        PMID: 33873412     DOI: 10.1046/j.1469-8137.2003.00686.x

Source DB:  PubMed          Journal:  New Phytol        ISSN: 0028-646X            Impact factor:   10.151


  91 in total

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Authors:  S H Choi; E P Greenberg
Journal:  J Bacteriol       Date:  1992-06       Impact factor: 3.490

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Journal:  Antimicrob Agents Chemother       Date:  1981-12       Impact factor: 5.191

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Authors:  D H Calhoun; M Carson; R A Jensen
Journal:  J Gen Microbiol       Date:  1972-10

7.  Use of signature-tagged transposon mutagenesis to identify Vibrio cholerae genes critical for colonization.

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Journal:  Mol Microbiol       Date:  1998-02       Impact factor: 3.501

8.  A regulatory RNA (PrrB RNA) modulates expression of secondary metabolite genes in Pseudomonas fluorescens F113.

Authors:  S Aarons; A Abbas; C Adams; A Fenton; F O'Gara
Journal:  J Bacteriol       Date:  2000-07       Impact factor: 3.490

9.  Iron transport-mediated antagonism between plant growth-promoting and plant-deleterious Pseudomonas strains.

Authors:  J S Buyer; J Leong
Journal:  J Biol Chem       Date:  1986-01-15       Impact factor: 5.157

10.  Revised structure for the phenazine antibiotic from Pseudomonas fluorescens 2-79 (NRRL B-15132).

Authors:  P G Brisbane; L J Janik; M E Tate; R F Warren
Journal:  Antimicrob Agents Chemother       Date:  1987-12       Impact factor: 5.191

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  14 in total

1.  The Novel Amidase PcnH Initiates the Degradation of Phenazine-1-Carboxamide in Sphingomonas histidinilytica DS-9.

Authors:  Yijun Ren; Mingliang Zhang; Siyuan Gao; Qian Zhu; Zhijian Ke; Wankui Jiang; Jiguo Qiu; Qing Hong
Journal:  Appl Environ Microbiol       Date:  2022-05-17       Impact factor: 5.005

Review 2.  Plant Beneficial Bacteria as Bioprotectants against Wheat and Barley Diseases.

Authors:  Emma Dutilloy; Feyisara Eyiwumi Oni; Qassim Esmaeel; Christophe Clément; Essaid Ait Barka
Journal:  J Fungi (Basel)       Date:  2022-06-14

Review 3.  Bioprospecting Plant Growth Promoting Rhizobacteria for Enhancing the Biological Properties and Phytochemical Composition of Medicinally Important Crops.

Authors:  Asfa Rizvi; Bilal Ahmed; Mohammad Saghir Khan; Hossam S El-Beltagi; Shahid Umar; Jintae Lee
Journal:  Molecules       Date:  2022-02-19       Impact factor: 4.411

Review 4.  Root-Associated Bacteria Are Biocontrol Agents for Multiple Plant Pests.

Authors:  Jang Hoon Lee; Anne J Anderson; Young Cheol Kim
Journal:  Microorganisms       Date:  2022-05-19

5.  Anti-Inflammatory Effects of an Extract from Pseudomonas aeruginosa and Its Purified Product 1-Hydroxyphenazine on RAW264.7 Cells.

Authors:  Jun Xiao; Aye Aye Thwe; Tingting Liu; Dafei Gong; Wanhua Lin; Changhua Shang; ZuJun Lu
Journal:  Curr Microbiol       Date:  2021-05-27       Impact factor: 2.188

Review 6.  Induced Systemic Resistance for Improving Plant Immunity by Beneficial Microbes.

Authors:  Yiyang Yu; Ying Gui; Zijie Li; Chunhao Jiang; Jianhua Guo; Dongdong Niu
Journal:  Plants (Basel)       Date:  2022-01-30

Review 7.  Leveraging Pseudomonas Stress Response Mechanisms for Industrial Applications.

Authors:  Kelly Craig; Brant R Johnson; Amy Grunden
Journal:  Front Microbiol       Date:  2021-05-10       Impact factor: 5.640

8.  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

9.  In Tuber Biocontrol of Potato Late Blight by a Collection of Phenazine-1-Carboxylic Acid-Producing Pseudomonas spp.

Authors:  Geneviève Léger; Amy Novinscak; Adrien Biessy; Simon Lamarre; Martin Filion
Journal:  Microorganisms       Date:  2021-12-07

10.  Interplay between Arabidopsis thaliana Genotype, Plant Growth and Rhizosphere Colonization by Phytobeneficial Phenazine-Producing Pseudomonas chlororaphis.

Authors:  Antoine Zboralski; Hara Saadia; Amy Novinscak; Martin Filion
Journal:  Microorganisms       Date:  2022-03-19
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