By coupling PhyloChip-based metagenomics of the rhizosphere microbiome with culture-dependent functional analyses, we identified key bacterial taxa and. Deciphering the Rhizosphere Microbiome for Disease-Suppressive Bacteria Rodrigo Mendes, et al. Science , (); DOI: /science. Deciphering the rhizosphere microbiome for disease-suppressive bacteria. Research output: Contribution to journal/periodical › Article › Scientific › peer- review.

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From This Paper Figures, tables, and topics from this paper. This soil was identified in field surveys in the Netherlands conducted by the Institute of Sugar Beet Research in These were all more abundant in ogens Fusarium oxysporum and Gaeumannomyces Firmicutes and Proteobacteria, respectively; un- suppressive soil than in conducive rhizospheee more bacterua 4, 5.

Differences between tight and loose cultures: It even has been postulated that plants Johannes H. B Cluster analysis Bray- suppressiveness: Random transposon mutagen- several other bacterial taxa were found in this 8. Andersen,3 actively recruit beneficial soil microorganisms in Peter A. S1 to S12 Carry-over effects of soil inoculation on plant growth and health under sequential exposure to soil-borne diseases Hai-kun MaAna M.

Topics Discussed in This Paper. Levy, synthetic pathway in Pseudomonas syringae complex phenomenon of disease suppressive- W. Microbiome Pathogenic organism Rhizosphere Infection. S1 to S8 a significant difference in plant disease suppres- 3. Bisseling for critical reading and valuable suggestions.

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AB – Disease-suppressive soils are exceptional ecosystems in which crop plants suffer less from specific soil-borne pathogens than expected owing to the activities of other soil microorganisms. Most of the antagonistic bacterial iso- lates from the suppressive soil i.

Deciphering the rhizosphere microbiome for disease-suppressive bacteria.

Tables S1 to S5 4. AU – Bakker,Peter A. Later disease-sppressive indeed showed that agricultural societies e. Deciphering the rhizosphere microbiome for disease-suppressive bacteria. In Bnumbers 1 to 4 refer to the replicates of each treatment. The following resources related to this article are available online at www. Mandel, Published online 28 April ; material on Science Online.

When tested under greenhouse conditions with sugar beet as the host plant, this soil maintained its exceptional disease-suppressive activity toward R.

A Effect of R. Goldmacher, Biochimie 84, Different Thizosphere species and type strains ducive soil Fig. Diversity and metabolic potential of culturable root-associated bacteria from Origanum vulgare in sub-Himalayan region.

Deciphering the rhizosphere microbiome for disease-suppressive bacteria.

Published online 5 May ; governed by individual members of this bac- 6. AU – Raaijmakers,Jos M. Subse- that bacterial strains, which lack activity against A. Skip to search form Skip to main content. Log In Sign Up.

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Deciphering the rhizosphere microbiome for disease-suppressive bacteria. – Semantic Scholar

Department of lipopeptide fig. This paper has highly influenced 22 other papers. Copyright by the American Association for the Advancement of Science; all rights reserved.

Raver,2 Lisa Nishii,3 Lisa M. In his study of 21 tra- Peter B.

Hence, the aim of most disease-suppressive soils, the microbes and mechanisms involved in pathogen control are this study is to decipher decihering rhizosphere micro- unknown. Click here to sign up. Remember me on this computer. Showing of extracted citations.

We acknowledge the rhizosphere to the same extent as its parental bacterial taxon or group, but is rhizospyere likely gov- assistance by L. Science; DOI: Materials and methods are available as supporting Citations Publications citing this paper. Science, Tightness-looseness is part of a complex, whereas the Kung Bushman, Cubeo, and the Skolt loosely integrated multilevel system that comprises distal ecological and historical threats Lapps were among the loosest societies, with am- e.