Enhanced molecular visualization of root colonization and growth promotion by Bacillus subtilis EA-CB0575 in different growth systems

Bacillus subtilis EA-CB0575 is a plant growth-promoting bacterium (PGPB) associated with banana and tomato crops. Root colonization is an important trait for PGPB microorganisms and potentiates the bacterial effect related to the mechanisms of plant growth promotion. Therefore, detection of bacteria...

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Published inMicrobiological research Vol. 217; pp. 69 - 80
Main Authors Posada, Luisa F., Álvarez, J.C., Romero-Tabarez, Magally, de-Bashan, Luz, Villegas-Escobar, Valeska
Format Journal Article
LanguageEnglish
Published Germany Elsevier GmbH 01.12.2018
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Abstract Bacillus subtilis EA-CB0575 is a plant growth-promoting bacterium (PGPB) associated with banana and tomato crops. Root colonization is an important trait for PGPB microorganisms and potentiates the bacterial effect related to the mechanisms of plant growth promotion. Therefore, detection of bacterial colonization of roots in different culture systems is important in the study of plant–microorganism interactions. In this study, fluorescent in situ hybridization (FISH) and catalyzed reporter deposition–FISH (CARD–FISH) were evaluated to determine the colonization ability of B. subtilis EA-CB0575 on banana and tomato roots planted on solid and liquid Murashige and Skoog medium (MS(S) and MS(L), respectively) and in soil for tomato plants. Results showed B. subtilis colonization 0–30 days post inoculation for banana and tomato plants in different culture systems with differential distribution of bacterial cells along tomato and banana roots. FISH and CARD–FISH methodologies were both successful in detecting B. subtilis colonies, but CARD–FISH proved to be superior due to its enhanced fluorescence signal. The presence of bacteria correlated with the promotion of plant growth in both plant species, providing clues to relate rhizospheric colonization with improvement in plant growth. FISH and CARD–FISH analysis results suggested the presence of native microbiota on the roots of in vitro banana plants, but not on those of tomato plants.
AbstractList Bacillus subtilis EA-CB0575 is a plant growth-promoting bacterium (PGPB) associated with banana and tomato crops. Root colonization is an important trait for PGPB microorganisms and potentiates the bacterial effect related to the mechanisms of plant growth promotion. Therefore, detection of bacterial colonization of roots in different culture systems is important in the study of plant-microorganism interactions. In this study, fluorescent in situ hybridization (FISH) and catalyzed reporter deposition-FISH (CARD-FISH) were evaluated to determine the colonization ability of B. subtilis EA-CB0575 on banana and tomato roots planted on solid and liquid Murashige and Skoog medium (MS and MS , respectively) and in soil for tomato plants. Results showed B. subtilis colonization 0-30 days post inoculation for banana and tomato plants in different culture systems with differential distribution of bacterial cells along tomato and banana roots. FISH and CARD-FISH methodologies were both successful in detecting B. subtilis colonies, but CARD-FISH proved to be superior due to its enhanced fluorescence signal. The presence of bacteria correlated with the promotion of plant growth in both plant species, providing clues to relate rhizospheric colonization with improvement in plant growth. FISH and CARD-FISH analysis results suggested the presence of native microbiota on the roots of in vitro banana plants, but not on those of tomato plants.
Bacillus subtilis EA-CB0575 is a plant growth-promoting bacterium (PGPB) associated with banana and tomato crops. Root colonization is an important trait for PGPB microorganisms and potentiates the bacterial effect related to the mechanisms of plant growth promotion. Therefore, detection of bacterial colonization of roots in different culture systems is important in the study of plant-microorganism interactions. In this study, fluorescent in situ hybridization (FISH) and catalyzed reporter deposition-FISH (CARD-FISH) were evaluated to determine the colonization ability of B. subtilis EA-CB0575 on banana and tomato roots planted on solid and liquid Murashige and Skoog medium (MS(S) and MS(L), respectively) and in soil for tomato plants. Results showed B. subtilis colonization 0-30 days post inoculation for banana and tomato plants in different culture systems with differential distribution of bacterial cells along tomato and banana roots. FISH and CARD-FISH methodologies were both successful in detecting B. subtilis colonies, but CARD-FISH proved to be superior due to its enhanced fluorescence signal. The presence of bacteria correlated with the promotion of plant growth in both plant species, providing clues to relate rhizospheric colonization with improvement in plant growth. FISH and CARD-FISH analysis results suggested the presence of native microbiota on the roots of in vitro banana plants, but not on those of tomato plants.
Author Posada, Luisa F.
Villegas-Escobar, Valeska
de-Bashan, Luz
Álvarez, J.C.
Romero-Tabarez, Magally
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Keywords Root colonization
Plant growth promoting bacteria (PGPR)
Bacillus sp
Catalyzed reporter deposition–FISH
Fluorescence in situ hybridization
Language English
License This article is made available under the Elsevier license.
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Snippet Bacillus subtilis EA-CB0575 is a plant growth-promoting bacterium (PGPB) associated with banana and tomato crops. Root colonization is an important trait for...
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SubjectTerms Agricultural Inoculants
Bacillus sp
Bacillus subtilis - growth & development
Bacillus subtilis - physiology
Catalyzed reporter deposition–FISH
Fluorescence in situ hybridization
In Situ Hybridization, Fluorescence
Lycopersicon esculentum - growth & development
Lycopersicon esculentum - microbiology
Microbiota
Microscopy, Electron, Scanning
Musa - growth & development
Musa - microbiology
Plant Development
Plant growth promoting bacteria (PGPR)
Plant Roots - microbiology
Rhizosphere
Root colonization
Seeds - microbiology
Soil
Soil Microbiology
Title Enhanced molecular visualization of root colonization and growth promotion by Bacillus subtilis EA-CB0575 in different growth systems
URI https://dx.doi.org/10.1016/j.micres.2018.08.017
https://www.ncbi.nlm.nih.gov/pubmed/30384910
https://search.proquest.com/docview/2129540023
Volume 217
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