Functional genomics analysis of plant growth-promoting rhizobacterial traits involved in rhizosphere competence

In soil, some specific bacterial populations, called plant growth-promoting rhizobacteria are able to promote plant growth and/or reduce the incidence of soil-borne diseases. Rhizosphere competence is an important prerequisite for the efficacy of these biocontrol strains. Therefore, over decades, mu...

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Published inBiology and fertility of soils Vol. 47; no. 7; pp. 729 - 743
Main Authors Barret, Matthieu, Morrissey, John P., O’Gara, Fergal
Format Journal Article
LanguageEnglish
Published Berlin/Heidelberg Springer-Verlag 01.10.2011
Springer Nature B.V
Springer Verlag
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Abstract In soil, some specific bacterial populations, called plant growth-promoting rhizobacteria are able to promote plant growth and/or reduce the incidence of soil-borne diseases. Rhizosphere competence is an important prerequisite for the efficacy of these biocontrol strains. Therefore, over decades, multiple approaches have been combined to understand the molecular basis of bacterial traits involved in rhizosphere competence. This review addresses the bacterial genes expressed during bacterial–plant interactions in the rhizosphere of different plant species. The distribution of these key genes in natural populations of rhizobacteria is also discussed.
AbstractList In soil, some specific bacterial populations, called plant growth-promoting rhizobacteria are able to promote plant growth and/or reduce the incidence of soil-borne diseases. Rhizosphere competence is an important prerequisite for the efficacy of these biocontrol strains. Therefore, over decades, multiple approaches have been combined to understand the molecular basis of bacterial traits involved in rhizosphere competence. This review addresses the bacterial genes expressed during bacterial–plant interactions in the rhizosphere of different plant species. The distribution of these key genes in natural populations of rhizobacteria is also discussed.
In soil, some specific bacterial populations, called plant growth-promoting rhizobacteria are able to promote plant growth and/or reduce the incidence of soil-borne diseases. Rhizosphere competence is an important prerequisite for the efficacy of these biocontrol strains. Therefore, over decades, multiple approaches have been combined to understand the molecular basis of bacterial traits involved in rhizosphere competence. This review addresses the bacterial genes expressed during bacterial-plant interactions in the rhizosphere of different plant species. The distribution of these key genes in natural populations of rhizobacteria is also discussed.[PUBLICATION ABSTRACT]
Author Morrissey, John P.
O’Gara, Fergal
Barret, Matthieu
Author_xml – sequence: 1
  givenname: Matthieu
  surname: Barret
  fullname: Barret, Matthieu
  organization: BIOMERIT Research Centre, Department of Microbiology, University College Cork
– sequence: 2
  givenname: John P.
  surname: Morrissey
  fullname: Morrissey, John P.
  organization: Department of Microbiology, University College Cork
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  givenname: Fergal
  surname: O’Gara
  fullname: O’Gara, Fergal
  email: f.ogara@ucc.ie
  organization: BIOMERIT Research Centre, Department of Microbiology, University College Cork
BackLink https://hal.inrae.fr/hal-02650050$$DView record in HAL
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Fri Jul 11 01:03:56 EDT 2025
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Thu Apr 24 22:54:51 EDT 2025
Tue Jul 01 02:30:57 EDT 2025
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Issue 7
Keywords Rhizosphere competence
PGPR
Transcriptome
Process-centric approach
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PublicationSubtitle Cooperating Journal of International Society of Soil Science
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Snippet In soil, some specific bacterial populations, called plant growth-promoting rhizobacteria are able to promote plant growth and/or reduce the incidence of...
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SubjectTerms Agriculture
Bacteria
Biological control
biological control agents
Biomedical and Life Sciences
functional diversity
gene expression
genes
Genomics
Life Sciences
Natural populations
Plant growth
plant growth-promoting rhizobacteria
Plant species
population
Review
Rhizosphere
rhizosphere bacteria
rhizosphere competence
soil
Soil Science & Conservation
Soil-borne diseases
strains
Vegetal Biology
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Title Functional genomics analysis of plant growth-promoting rhizobacterial traits involved in rhizosphere competence
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