Integrating metagenome-scale metabolic modelling and metabolomics to identify biochemical interactions in Microcystis phycospheres
This study combined metagenomics, metabolomics, and metabolic modeling to reveal that phycosphere-associated bacteria expand metabolic potential within *Microcystis* communities, with metabolomic profiles primarily driven by cyanobacterial outputs.
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The paper studied freshwater Microcystis phycospheres by integrating metagenomic sequencing, metabolomics, and metabolic modelling across twelve Microcystis strains isolated from a French pond. It found that Microcystis intracellular metabolic reaction distributions aligned with genospecies, while community-level metabolic landscapes did not follow cyanobacterial phylogeny, indicating functional decoupling between Microcystis and its microbiome. The authors reported that phycosphere-associated bacteria expand the system’s metabolic repertoire with functional redundancy, whereas metabolomic profiles were largely driven by cyanobacterial metabolic outputs, and modelling linked differences in metabolic potential across phycospheres to toxic specialized metabolites produced by specific biosynthetic gene clusters. The paper’s limitation is that it frames these results as characterizing phycosphere functioning and interactions in bloom-associated microbiomes, without claiming clinical relevance. The paper does not explicitly discuss endometriosis or adenomyosis; it was included in the corpus via a keyword match in the upstream search index.
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- europepmc
- last seen: 2026-05-20T01:45:00.602351+00:00
- unpaywall
- last seen: 2026-05-28T02:00:01.590549+00:00