A technical pipeline for screening microbial communities as a function of substrate specificity through single cell fluorescent imaging
Leivers, S. A.; Lagos, L.; La Rosa, S. L.; Westereng, B.
Show abstract
The study of specific glycan uptake and metabolism has been shown to be an effective tool in aiding with the continued unravelling of the complexities in the human gut microbiome. To this aim fluorescent labelling of glycans may provide a powerful route towards target. In this study, we successfully used the fluorescent label 2-aminobenzamide (2-AB), most commonly employed for enhancing the detection of protein anchored glycans, to monitor and study microbial degradation of labelled glycans. Both single strain and co-cultured fermentations of microbes from the common human-gut derived Bacteroides genus, were able to grow when supplemented with 2-AB labelled glycans of different monosaccharide composition, degrees of acetylation and polymerization. Utilizing a multifaceted approach that combines chromatography, mass spectrometry, microscopy and flow cytometry techniques, it was possible to comprehensively track the metabolism of the labelled glycans in both supernatants and at a single cell level. We envisage this combination of complimentary techniques will help further the understanding of substrate specificity and the role it plays within microbial communities. IMPORTANCEInformation on how bacterial consortia utilize polysaccharides at strain level, whilst progressing rapidly in recent years still lacks a suitable way to study the vast range of ornamentations and structural motifs found in the natural glycans we consume in everyday life. As multi-omic approaches commonly require complex and costly analysis, a screening platform, as described in our work, could be seen as both a complementary and essential new tool in the understanding of microbial polysaccharide metabolism. Our study demonstrates a fast and efficient glycan labelling technique composed of several integrated procedures and advanced analytical methodologies. Chromatography and mass spectrometry are applied in the tracking of metabolized labelled glycans whilst microscopy and flow cytometry are used in the visualization of labelled bacteria at a single cell level.
Matching journals
The top 10 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Conversion of mammalian cell culture media waste to microbial fermentation feed efficiently supports production of recombinant protein by Escherichia coli 93%
- Genome sequencing and functional characterization of a Dictyopanus pusillus fungal extract offers a promising alternative for lignocellulose pretreatment of oil palm residues 92%
- Spatially resolved analysis of Pseudomonas aeruginosa biofilm proteomes measured by laser ablation sample transfer 91%
Similar papers in this journal
- Volatile aroma compound production is affected by growth rate in S. cerevisiae 94%
- Loosenin-like proteins from Phanerochaete carnosa impact both cellulose and chitin fiber networks 93%
- The maize pathogen Ustilago maydis secretes glycoside hydrolases and carbohydrate oxidases directed towards components of the fungal cell wall 93%
Similar papers in this journal
- Development and validation of an HPLC method to quantify 2-Keto-3-deoxy-gluconate (KDG), a major metabolite in pectin and alginate degradation pathways 94%
- Glycopeptide variable window SWATH for improved Data Independent Acquisition glycoprotein analysis 90%
- A Fundamental Approach to Buoyant Density Determination by DGE-AUC 89%
Similar papers in this journal
- Construction and Characterisation of a Structured, Tuneable, and Transparent 3D Culture Platform for Soil Bacteria 92%
- A guide for membrane potential measurements in Gram-negative bacteria using voltage-sensitive dyes 91%
- The antimicrobial activity of the macrophage metabolite itaconate is synergistic with acidity. 91%
Similar papers in this journal
- Plant Cell Wall Enzymatic Hydrolysis: Predicting Yield Dynamics from Autofluorescence and Morphological Temporal Changes 92%
- Marine Bacteria Associated with the Green Seaweed Ulva sp. for the Production of Polyhydroxyalkanoates 92%
- Plant Cell Wall Enzymatic Deconstruction: Bridging the Gap Between Micro and Nano Scales 91%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.