Projects per year
Abstract
Competitive behaviours of plant growth promoting rhizobacteria (PGPR) are integral to their ability to colonize and persist on plant roots and outcompete phytopathogenic fungi, oomycetes and bacteria. PGPR engage in a range of antagonistic behaviours that have been studied in detail, such as the production and secretion of compounds inhibitory to other microbes. In contrast, their defensive activities that enable them to tolerate exposure to inhibitory compounds produced by their neighbours are less well understood. In this study, the genes involved in the Pseudomonas protegens Pf-5 response to metabolites from eight diverse rhizosphere competitor organisms, Fusarium oxysporum, Rhizoctonia solani, Gaeumannomyces graminis var. tritici, Pythium spinosum, Bacillus subtilis QST713, Pseudomonas sp. Q2-87, Streptomyces griseus and Streptomyces bikiniensis subspecies bikiniensi, were examined. Proximity induced excreted metabolite responses were confirmed for Pf-5 with all partner organisms through HPLC before culturing a dense Pf-5 transposon mutant library adjacent to each of these microbes. This was followed by transposon-directed insertion site sequencing (TraDIS), which identified genes that influence Pf-5 fitness during these competitive interactions. A set of 148 genes was identified that were associated with increased fitness during competition, including cell surface modification, electron transport, nucleotide metabolism, as well as regulatory genes. In addition, 51 genes were identified for which loss of function resulted in fitness gains during competition. These included genes involved in flagella biosynthesis and cell division. Considerable overlap was observed in the set of genes observed to provide a fitness benefit during competition with all eight test organisms, indicating commonalities in the competitive response to phylogenetically diverse micro-organisms and providing new insight into competitive processes likely to take place in the rhizosphere.
Original language | English |
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Article number | 000671 |
Pages (from-to) | 1-13 |
Number of pages | 13 |
Journal | Microbial Genomics |
Volume | 7 |
Issue number | 11 |
Early online date | 17 Nov 2021 |
DOIs | |
Publication status | Published - 2021 |
Bibliographical note
Version archived for private and non-commercial use with the permission of the author/s and according to publisher conditions. For further rights please contact the publisher.Keywords
- Biocontrol
- Competition
- Interkingdom interactions
- PGPR
- Rhizosphere
- Saturation mutagenesis
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Improving the efficacy of pseudomonad biocontrol bacteria
Paulsen, I., Hassan, K., Tetu, S., Loper, J. & MQRES, M.
30/06/16 → …
Project: Research
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Toxic Oceans: how do anthropogenic pollutants impact vital marine microbes?
1/06/15 → 31/12/20
Project: Research
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Building virtual cyanobacteria: moving beyond the genomics era
Paulsen, I., PhD Contribution (ARC), P. C., PhD Contribution 2 (ARC), P. C. 2., MQRES, M., MQRES 3 (International), M. 3. & MQRES 4 (International), M.
1/12/14 → 30/11/20
Project: Research