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SecG is required for antibiotic activities ofPseudomonassp. YL23 againstErwinia amylovoraandDickeya chrysanthemi

Authors :
Junqing Qiao
Youzhou Liu
Shi-En Lu
Sonya M. Baird
Yan Du
Source :
Journal of Basic Microbiology. 55:617-624
Publication Year :
2015
Publisher :
Wiley, 2015.

Abstract

Strain YL23 was isolated from soybean root tips and identified to be Pseudomonas sp. This strain showed broad-spectrum antibacterial activity against bacterial pathogens that are economically important in agriculture. To characterize the genes dedicated to antibacterial activities against microbial phytopathogens, a Tn5-mutation library of YL23 was constructed. Plate bioassays revealed that the mutant YL23-93 lost its antibacterial activities against Erwinia amylovora and Dickeya chrysanthemi as compared with its wild type strain. Genetic and sequencing analyses localized the transposon in a homolog of the secG gene in the mutant YL23-93. Constitutive expression plasmid pUCP26-secG was constructed and electroporated into the mutant YL23-93. Introduction of the plasmid pUCP26-secG restored antibacterial activities of the mutant YL23-93 to E. amylovora and D. chrysanthemi. As expected, empty plasmid pUCP26 could not complement the phenotype of the antibacterial activity in the mutant. Thus the secG gene, belonging to the Sec protein translocation system, is required for antibacterial activity of strain YL23 against E. amylovora and D. chrysanthemi.

Details

ISSN :
0233111X
Volume :
55
Database :
OpenAIRE
Journal :
Journal of Basic Microbiology
Accession number :
edsair.doi...........c7baba8f08cf40644c8d18bd700b867e
Full Text :
https://doi.org/10.1002/jobm.201400491