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February 14, 2026Journal of Natural Products0 citations

MALDI-FISH for Colocalization of Brominated Metabolites and Pseudovibrio spp. in Aplysina Tissue

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AMAllyson McAtamneyCLCayla LagousisBCBradley M. Colquitt

Key Points

  • The study aims to investigate the spatial distribution of bromotyrosine metabolites in sponge tissue and their association with specific bacteria.
  • Utilized mass spectrometry imaging (MSI) to measure fistularin-3 levels
  • Employed fluorescent in situ hybridization (FISH) to identify and map bacteria
  • Analyzed colocalization of fistularin-3 and Pseudovibrio spp. in Aplysina sponge tissue
  • Fistularin-3 was successfully mapped in Aplysina tissue
  • Colocalization indicated spatial association with Pseudovibrio spp.
  • Findings suggest the role of bacterial strains in metabolite production

Abstract

Bromotyrosine-containing natural products have been isolated from marine sponges. While studying the uptake of engineered bacterial strains by sponges, we observed the production of fistularin-3 in the sponge. To explore these results, we employed multimodal imaging to colocalize metabolites with fluorescent in situ hybridization (FISH) probes. Using mass spectrometry imaging (MSI), we measured fistularin-3 and mapped this against the FISH probes to locate the bacteria. A recent study reported that P. brasiliensis produced fistularin-3 in pure culture, but these data have not yet been reproduced. We employed MSI and FISH to colocalize the fistularin-3 spatial distribution with P. brasiliensis in sponge tissue.

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Cite This Study

McAtamney et al. (2026) studied this question.

synapsesocial.com/papers/699011b32ccff479cfe5895bhttps://doi.org/10.1021/acs.jnatprod.5c01555
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