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March 10, 2026Environmental Microbiology Reports0 citationsOpen Access

Interactions of Mucus Monosaccharides and the Epidermal Microbiome in Four Benthic Elasmobranchs

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EKEmma N. KerrLYLong YuRHRyan D. Hesse

Key Points

  • This research aims to investigate the carbohydrate composition of mucus in elasmobranchs and its effect on the associated microbiomes.
  • Quantification of monosaccharide composition from mucus samples of four elasmobranch species.
  • Identification of microbial genes linked to carbohydrate utilization in host and water microbiomes.
  • Comparative analysis of microbial gene abundance between elasmobranchs and surrounding water.
  • Identified four key monosaccharides in elasmobranch mucus: glucose, glucosamine, galactose, and fucose.
  • Elasmobranchs showed lower total mucus and carbohydrate content compared to other marine organisms.
  • Distinct monosaccharide signatures were found for each elasmobranch species, indicating species-specific variations.
  • Elasmobranch microbiomes exhibited higher abundance of carbon utilization genes than the surrounding water.

Abstract

Epidermal mucus is a complicated mixture of macromolecules which acts as the first line of defence for organisms against abrasions and infections. We quantified the carbohydrate (monosaccharide) composition of the mucus from four Elasmobranchii hosts, including eagle rays (Myliobatis tenuicaudatus), Port Jackson sharks (Heterodontus portusjacksoni), Australian angelsharks (Squatina australis) and whitespotted skates (Dentiraja cerva). Elasmobranchii had low amounts of mucus and a low proportion of carbohydrates (< 10%) compared with other marine organisms. Four key monosaccharides: glucose, glucosamine, galactose and fucose, were identified in mucus samples. Hosts exhibited distinct, species-specific monosaccharide signatures. We identified key carbohydrate microbial genes from host and water microbiomes. Elasmobranch microbiomes had a higher relative abundance of carbon utilisation genes compared to the water column and contained gene pathways for the utilisation of specific monosaccharides found in host mucus, suggesting that the host mucus was a regulator of the microbiome. Elasmobranch epidermal microbiomes have the genetic machinery required for detecting, transporting and metabolising monosaccharides and other carbohydrates present in the host mucus, demonstrating the selective nature of Elasmobranch epidermal mucus.

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Cite This Study

Kerr et al. (2026) studied this question.

synapsesocial.com/papers/69af963170916d39fea4e235https://doi.org/10.1111/1758-2229.70303
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