Metabolic resource overlap impacts competition among phyllosphere bacteria
Перекрытие метаболических ресурсов влияет на конкуренцию среди бактерий филлосферы
2023-06-24
SCID: 54.1/f2bqev6p
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Arabidopsis thaliana phyllospherePantoea eucalypti 299Rgenome-scale metabolic modellingphyllosphere bacteriaresource overlap
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Abstract (AI)
The phyllosphere is densely colonised by microbial communities, despite sparse and heterogeneously distributed resources. The limitation of resources is expected to drive bacterial competition resulting in exclusion or coexistence based on fitness differences and resource overlap between individual colonisers. We studied the impact of resource competition by determining the effects of different bacterial colonisers on the growth of the model epiphyte Pantoea eucalypti 299R (Pe299R). Resource overlap was predicted based on genome-scale metabolic modelling. By combining results of metabolic modelling and pairwise competitions in the Arabidopsis thaliana phyllosphere and in vitro, we found that ten resources sufficed to explain fitness of Pe299R. An effect of both resource overlap and phylogenetic relationships was found on competition outcomes in vitro as well as in the phyllosphere. However, effects of resource competition were much weaker in the phyllosphere when compared to in vitro experiments. When investigating growth dynamics and reproductive success at the single-cell resolution, resource overlap and phylogenetic relationships are only weakly correlated with epiphytic Pe299R reproductive success, indicating that the leaf's spatial heterogeneity mitigates resource competition. Although the correlation is weak, the presence of competitors led to the development of Pe299R subpopulations that experienced different life histories and cell divisions. In some in planta competitions, Pe299R benefitted from the presence of epiphytes despite high resource overlap to the competitor strain suggesting other factors having stronger effects than resource competition. This study provides fundamental insights into how bacterial communities are shaped in heterogeneous environments and a framework to predict competition outcomes.
Key Findings
1
At single-cell resolution, resource overlap and phylogenetic relatedness only weakly correlate with Pe299R reproductive success, with spatial heterogeneity reducing competition.
2
Both metabolic resource overlap and phylogenetic relationships affect competition outcomes in vitro and in the Arabidopsis thaliana phyllosphere.
3
Effects of resource competition are much weaker in the phyllosphere than in vitro, indicating the leaf environment mitigates competition.
4
Genome-scale metabolic modelling and pairwise competition experiments identified ten resources that suffice to explain fitness of Pantoea eucalypti 299R (Pe299R).
5
Presence of some competitors can benefit Pe299R in planta despite high resource overlap, implying additional ecological factors can override resource competition.
Research Object
Pantoea eucalypti 299R (Pe299R) interactions with competitor phyllosphere bacteria on Arabidopsis thaliana leaves and in vitro
Research Subject
Effects of metabolic resource overlap and phylogenetic relationships on competition outcomes, growth dynamics, and reproductive success of Pe299R, and how leaf spatial heterogeneity modulates these effects
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2023-06-24
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