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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
Abstract:
Mycosporine-like amino-acids (MAAs) are found in aquatic bacteria, algae, and animals. A related compound, the mycosporine-glutaminol-glucoside (myc-glu-glu), has recently been reported in freshwater yeasts. Although animals depend on other organisms as their source of MAAs, they can efficiently accumulate them in their tissues. In this work we assessed the potential transfer of the yeast mycosporine myc-glu-glu from the diet into the copepod Boeckella antiqua and the ciliate Paramecium bursaria. For this purpose, we performed experiments to study the feeding of B. antiqua and P. bursaria on the yeast Rhodotorula minuta and their ability to bioaccumulate myc-glu-glu. Bioaccumulation of myc-glu-glu in B. antiqua was assessed through long-term factorial experiments manipulating the diet (Chlamydomonas reinhardii and C. reinhardii + yeasts) and radiation exposure (PAR and PAR + UVR). Shorter term experiments were designed in the case of P. bursaria. The composition and concentration of MAAs in the diet and in the consumers were determined by HPLC analyses. Our results showed that even though both consumers ingested yeast cells, they were unable to accumulate myc-glu-glu. Moreover, when exposed to conditions that stimulated the accumulation of photoprotective compounds (i.e. UVR exposure), an increase in MAAs concentration occurred in copepods fed C. reinhardii plus yeasts as well as in those fed only C. reinhardii. This suggests that the copepods were able to modify their tissue concentrations of MAAs in response to environmental clues but also that the contribution of yeast mycosporines to total MAAs concentration was negligible.
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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