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Seasonal plasticity in photoprotection modulates UV‐induced hsp gene expression in copepods from a clear lake

Zooplankton from clear alpine lakes is exposed to stressful levels of solar UV radiation (UVR). As these pelagic organisms experience high UVR and large changes in solar radiation conditions between ice‐free and ice‐cover periods, they have evolved various strategies to minimize UVR exposure and dam...

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Autores principales: Tartarotti, B., Alfreider, A., Egg, M., Saul, N., Schneider, T., Sommaruga, R., Tischler, A., Vetter, J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6175331/
https://www.ncbi.nlm.nih.gov/pubmed/30333668
http://dx.doi.org/10.1002/lno.10793
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author Tartarotti, B.
Alfreider, A.
Egg, M.
Saul, N.
Schneider, T.
Sommaruga, R.
Tischler, A.
Vetter, J.
author_facet Tartarotti, B.
Alfreider, A.
Egg, M.
Saul, N.
Schneider, T.
Sommaruga, R.
Tischler, A.
Vetter, J.
author_sort Tartarotti, B.
collection PubMed
description Zooplankton from clear alpine lakes is exposed to stressful levels of solar UV radiation (UVR). As these pelagic organisms experience high UVR and large changes in solar radiation conditions between ice‐free and ice‐cover periods, they have evolved various strategies to minimize UVR exposure and damage. Here, we studied the relation between photoprotection levels (mycosporine‐like amino acids, carotenoids), antioxidant capacities, and gene expression of heat shock proteins (hsps) as indicator of stress in the copepod Cyclops abyssorum tatricus during the course of a year. Expression of hsp60, hsp70, and hsp90 was measured in the field (baseline expression [BE]) and after UVR exposure in the laboratory. The BE differed among genes and seasons (hsp60: high during summer, hsp70 and hsp90: high during the ice‐cover period). The gene expression of hsp70 was upregulated after exposure to UVR (up to 5.2‐fold change), while hsp60 and hsp90 were only constitutively expressed. A strong seasonal pattern was found in the photoprotective compounds and antioxidant capacities, with highest levels during the ice‐free period. The extent of upregulation of hsp70 gene expression increased with decreasing photoprotection levels and peaked 24 h post UVR exposure (9.6‐fold change) at the time of lowest photoprotection (February). Our data suggest that hsp70 gene expression is modulated by seasonal plasticity in photoprotection. This ability of adequate stress response is essential for survival in highly variable ecosystems such as alpine lakes.
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spelling pubmed-61753312018-10-15 Seasonal plasticity in photoprotection modulates UV‐induced hsp gene expression in copepods from a clear lake Tartarotti, B. Alfreider, A. Egg, M. Saul, N. Schneider, T. Sommaruga, R. Tischler, A. Vetter, J. Limnol Oceanogr Articles Zooplankton from clear alpine lakes is exposed to stressful levels of solar UV radiation (UVR). As these pelagic organisms experience high UVR and large changes in solar radiation conditions between ice‐free and ice‐cover periods, they have evolved various strategies to minimize UVR exposure and damage. Here, we studied the relation between photoprotection levels (mycosporine‐like amino acids, carotenoids), antioxidant capacities, and gene expression of heat shock proteins (hsps) as indicator of stress in the copepod Cyclops abyssorum tatricus during the course of a year. Expression of hsp60, hsp70, and hsp90 was measured in the field (baseline expression [BE]) and after UVR exposure in the laboratory. The BE differed among genes and seasons (hsp60: high during summer, hsp70 and hsp90: high during the ice‐cover period). The gene expression of hsp70 was upregulated after exposure to UVR (up to 5.2‐fold change), while hsp60 and hsp90 were only constitutively expressed. A strong seasonal pattern was found in the photoprotective compounds and antioxidant capacities, with highest levels during the ice‐free period. The extent of upregulation of hsp70 gene expression increased with decreasing photoprotection levels and peaked 24 h post UVR exposure (9.6‐fold change) at the time of lowest photoprotection (February). Our data suggest that hsp70 gene expression is modulated by seasonal plasticity in photoprotection. This ability of adequate stress response is essential for survival in highly variable ecosystems such as alpine lakes. John Wiley and Sons Inc. 2018-02-16 2018-07 /pmc/articles/PMC6175331/ /pubmed/30333668 http://dx.doi.org/10.1002/lno.10793 Text en © 2018 The Authors Limnology and Oceanography published by Wiley Periodicals, Inc. on behalf of Association for the Sciences of Limnology and Oceanography This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Tartarotti, B.
Alfreider, A.
Egg, M.
Saul, N.
Schneider, T.
Sommaruga, R.
Tischler, A.
Vetter, J.
Seasonal plasticity in photoprotection modulates UV‐induced hsp gene expression in copepods from a clear lake
title Seasonal plasticity in photoprotection modulates UV‐induced hsp gene expression in copepods from a clear lake
title_full Seasonal plasticity in photoprotection modulates UV‐induced hsp gene expression in copepods from a clear lake
title_fullStr Seasonal plasticity in photoprotection modulates UV‐induced hsp gene expression in copepods from a clear lake
title_full_unstemmed Seasonal plasticity in photoprotection modulates UV‐induced hsp gene expression in copepods from a clear lake
title_short Seasonal plasticity in photoprotection modulates UV‐induced hsp gene expression in copepods from a clear lake
title_sort seasonal plasticity in photoprotection modulates uv‐induced hsp gene expression in copepods from a clear lake
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6175331/
https://www.ncbi.nlm.nih.gov/pubmed/30333668
http://dx.doi.org/10.1002/lno.10793
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