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The rhizosphere effect on bacteria antagonistic towards the pathogenic fungus Verticillium differs depending on plant species and site

Zugehörigkeit
Institute for Life Sciences, University of Rostock, Microbiology, Germany
Berg, Gabriele;
Zugehörigkeit
Institute for Life Sciences, University of Rostock, Microbiology, Germany
Opelt, Katja;
Zugehörigkeit
Institute for Life Sciences, University of Rostock, Microbiology, Germany
Zachow, Christin;
Zugehörigkeit
Institute for Life Sciences, University of Rostock, Microbiology, Germany
Lottmann, Jana;
Zugehörigkeit
Federal Biological Research Centre for Agriculture and Forestry, Germany
Götz, Monika;
Zugehörigkeit
Federal Biological Research Centre for Agriculture and Forestry, Germany
Costa, Rodrigo;
GND
1058967878
Zugehörigkeit
Federal Biological Research Centre for Agriculture and Forestry, Germany
Smalla, Kornelia

Rhizobacteria with antagonistic activity towards plant pathogens play an essential role in root growth and plant health and are influenced by plant species in their abundance and composition. To determine the extent of the effect of the plant species and of the site on the abundance and composition of bacteria with antagonistic activity towards Verticillium dahliae, bacteria isolated from the rhizosphere of two Verticillium host plants, oilseed rape and strawberry, and from bulk soil were analysed at three different locations in Germany over two growing seasons. A total of 6732 bacterial isolates screened for in vitro antagonism towards Verticillium resulted in 560 active isolates, among which Pseudomonas (77%) and Serratia (6%) were the most dominant genera. The rhizosphere effect on the antagonistic bacterial community was shown by an enhanced proportion of antagonistic isolates, by enrichment of specific amplified ribosomal DNA restriction analysis types, species and genotypes, and by a reduced diversity in the rhizosphere in comparison to bulk soil. Such an effect was influenced by the plant species and by the site of its cultivation. Altogether, 16S rRNA gene sequencing of 66 isolates resulted in the identification of 22 different species. Antagonists of the genus Serratia were preferentially isolated from oilseed rape rhizosphere, with the exception of one site. For isolates of Pseudomonas and Serratia, plant-specific and site-specific genotypes were found. © 2005 Federation of European Microbiological Societies. Published by Blackwell Publishing Ltd. All rights reserved.

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