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Biocontrol of tomato wilt disease by <i> <scp>B</scp> acillus subtilis </i> isolates from natural environments depends on conserved genes mediating biofilm formation

Environmental Microbiology · 2012 · Vol. 15(3) · pp. 848–864
Yun ChenFang YanYunrong ChaiHongxia LiuRoberto KolterRichard LosickJianhua Guo

Abstract

Bacillus subtilis and other Bacilli have long been used as biological control agents against plant bacterial diseases but the mechanisms by which the bacteria confer protection are not well understood. Our goal in this study was to isolate strains of B. subtilis that exhibit high levels of biocontrol efficacy from natural environments and to investigate the mechanisms by which these strains confer plant protection. We screened a total of 60 isolates collected from various locations across China and obtained six strains that exhibited above 50% biocontrol efficacy on tomato plants against the plant pathogen Ralstonia solanacearum under greenhouse conditions. These wild strains were able to form robust biofilms both in defined medium and on tomato plant roots and exhibited strong antagonistic activities against various plant pathogens in plate assays. We show that plant protection by those strains depended on widely conserved genes required for biofilm formation, including regulatory genes and genes for matrix production. We provide evidence suggesting that matrix production is critical for bacterial colonization on plant root surfaces. Finally, we have established a model system for studies of B. subtilis-tomato plant interactions in protection against a plant pathogen.

Plant-Microbe Interactions and ImmunityBacterial biofilms and quorum sensingPlant Pathogenic Bacteria StudiesBiologyBiofilmBiological pest controlBacillus subtilisBacterial wiltMicrobiologyPathogenBacteriaGeneRalstonia solanacearum

MeSH terms

AntibiosisBacillus subtilisChinaPlant DiseasesBiofilmsPlant RootsSolanum lycopersicumRalstonia solanacearum

Funding

  • National Natural Science Foundation of China
  • Government of Jiangsu Province
  • China Scholarship Council
  • National Institutes of Health
  • Fundamental Research Funds for the Central Universities
  • Specialized Research Fund for the Doctoral Program of Higher Education of China
Citations
446
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30.98
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References
Root-Secreted Malic Acid Recruits Beneficial Soil Bacteria    
PLANT PHYSIOLOGY · 2008 · 1,125 citations
A master regulator for biofilm formation by <i>Bacillus subtilis</i>
Molecular Microbiology · 2004 · 605 citations
Recent trends in the biochemistry of surfactin
Applied Microbiology and Biotechnology · 1999 · 777 citations
MEGA4: Molecular Evolutionary Genetics Analysis (MEGA) Software Version 4.0
Molecular Biology and Evolution · 2007 · 28,792 citations
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