Mycosporines from freshwater yeasts: a trophic cul-de-sac?

Patricia Pérez1, Diego Libkind, María Del Carmen Diéguez

  • 1Laboratorio de Fotobiología, Centro Regional Universitario Bariloche, Universidad Nacional del Comahue, U. P. Universidad, 8400 Bariloche, Argentina. perezp@arnet.com.ar

Insights

Freshwater yeasts produce mycosporine-like amino acids (MAAs), but aquatic invertebrates like copepods and ciliates cannot accumulate these yeast-derived compounds. Their own MAA levels are influenced by diet and UV radiation exposure, not yeast intake.

Area of Science:

  • Aquatic Ecology
  • Biochemistry
  • Marine Biology

Background:

  • Mycosporine-like amino acids (MAAs) are vital photoprotective compounds found across aquatic life.
  • A novel MAA, mycosporine-glutaminol-glucoside (myc-glu-glu), has been identified in freshwater yeasts.
  • Animals typically acquire MAAs through their diet, efficiently accumulating them.

Purpose of the Study:

  • To investigate the dietary transfer and bioaccumulation of yeast-derived myc-glu-glu in aquatic invertebrates.
  • To assess the impact of diet and UV radiation on MAA accumulation in copepods and ciliates.

Main Methods:

  • Feeding experiments using the yeast Rhodotorula minuta and the yeast-eating invertebrates Boeckella antiqua (copepod) and Paramecium bursaria (ciliate).
  • Factorial experiments manipulated diet (algae vs. algae + yeast) and radiation (PAR vs. PAR + UVR) for B. antiqua.
  • High-performance liquid chromatography (HPLC) was used to quantify MAA concentrations in diet and consumers.

Main Results:

  • Neither B. antiqua nor P. bursaria accumulated myc-glu-glu from ingested yeast.
  • Copepods showed increased MAA concentrations when exposed to UV radiation, regardless of yeast presence in the diet.
  • Yeast-derived mycosporines did not significantly contribute to the total MAA content in the copepods.

Conclusions:

  • Aquatic invertebrates may not efficiently transfer or accumulate MAAs from yeast sources.
  • MAA concentrations in copepods are responsive to environmental factors like UV radiation, suggesting endogenous synthesis or alternative uptake pathways.
  • The contribution of yeast-derived MAAs to the photoprotective capacity of these aquatic consumers is negligible.

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