Differential gene expression in Pyropia columbina (Bangiales, Rhodophyta) under natural hydration and desiccation conditions
In rocky shores, desiccation is triggered by daily tide changes, and experimental evidence suggests that local distribution of algal species across the intertidal rocky zone is related to their capacity to tolerate desiccation. In this context, the permanence of Pyropia columbina in the high interti...
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Escuela de Ciencias del Mar, Facultad de Recursos Naturales, Pontificia Universidad Católica de Valparaíso
2013-11-01
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doaj-43103d909c264e129bdb33291a9b49fb2021-08-02T02:57:09ZengEscuela de Ciencias del Mar, Facultad de Recursos Naturales, Pontificia Universidad Católica de ValparaísoLatin American Journal of Aquatic Research0718-560X2013-11-01415933958S0718-560X2013000500013Differential gene expression in Pyropia columbina (Bangiales, Rhodophyta) under natural hydration and desiccation conditionsLoretto Contreras-Porcia0Camilo López-Cristoffanini1Carlos Lovazzano2María Rosa Flores-Molina3Daniela Thomas4Alejandra Núñez5Camila Fierro6Eduardo Guajardo7Juan A Correa8Michael Kube9Richard Reinhardt10Universidad Andres BelloUniversidad Andres BelloUniversidad Andres BelloUniversidad Austral de ChileUniversidad Andres BelloUniversidad Andres BelloUniversidad Andres BelloUniversidad Andres BelloPontificia Universidad Católica de ChileHumboldt Universitát zu BerlinMax-Planck Institute for Molecular GeneticsIn rocky shores, desiccation is triggered by daily tide changes, and experimental evidence suggests that local distribution of algal species across the intertidal rocky zone is related to their capacity to tolerate desiccation. In this context, the permanence of Pyropia columbina in the high intertidal rocky zone is explained by its exceptional physiological tolerance to desiccation. This study explored the metabolic pathways involved in tolerance to desiccation in the Chilean P. columbina, by characterizing its transcriptome under contrasting conditions of hydration. We obtained 1,410 ESTs from two subtracted cDNA libraries in naturally hydrated and desiccated fronds. Results indicate that transcriptome from both libraries contain transcripts from diverse metabolic pathways related to tolerance. Among the transcripts differentially expressed, 15% appears involved in protein synthesis, processing and degradation, 14.4% are related to photosynthesis and chloroplast, 13.1% to respiration and mitochondrial function (NADH dehydrogenase and cytochrome c oxidase proteins), 10.6% to cell wall metabolism, and 7.5% are involved in antioxidant activity, chaperone and defense factors (catalase, thioredoxin, heat shock proteins, cytochrome P450). Both libraries highlight the presence of genes/proteins never described before in algae. This information provides the first molecular work regarding desiccation tolerance in P. columbina, and helps, to some extent, explaining the classical patterns of ecological distribution described for algae across the intertidal zone.http://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0718-560X2013000500013&lng=en&tlng=enPyropiaestrés por desecaciónESTsmacroalgastranscriptómicaproteínas |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Loretto Contreras-Porcia Camilo López-Cristoffanini Carlos Lovazzano María Rosa Flores-Molina Daniela Thomas Alejandra Núñez Camila Fierro Eduardo Guajardo Juan A Correa Michael Kube Richard Reinhardt |
spellingShingle |
Loretto Contreras-Porcia Camilo López-Cristoffanini Carlos Lovazzano María Rosa Flores-Molina Daniela Thomas Alejandra Núñez Camila Fierro Eduardo Guajardo Juan A Correa Michael Kube Richard Reinhardt Differential gene expression in Pyropia columbina (Bangiales, Rhodophyta) under natural hydration and desiccation conditions Latin American Journal of Aquatic Research Pyropia estrés por desecación ESTs macroalgas transcriptómica proteínas |
author_facet |
Loretto Contreras-Porcia Camilo López-Cristoffanini Carlos Lovazzano María Rosa Flores-Molina Daniela Thomas Alejandra Núñez Camila Fierro Eduardo Guajardo Juan A Correa Michael Kube Richard Reinhardt |
author_sort |
Loretto Contreras-Porcia |
title |
Differential gene expression in Pyropia columbina (Bangiales, Rhodophyta) under natural hydration and desiccation conditions |
title_short |
Differential gene expression in Pyropia columbina (Bangiales, Rhodophyta) under natural hydration and desiccation conditions |
title_full |
Differential gene expression in Pyropia columbina (Bangiales, Rhodophyta) under natural hydration and desiccation conditions |
title_fullStr |
Differential gene expression in Pyropia columbina (Bangiales, Rhodophyta) under natural hydration and desiccation conditions |
title_full_unstemmed |
Differential gene expression in Pyropia columbina (Bangiales, Rhodophyta) under natural hydration and desiccation conditions |
title_sort |
differential gene expression in pyropia columbina (bangiales, rhodophyta) under natural hydration and desiccation conditions |
publisher |
Escuela de Ciencias del Mar, Facultad de Recursos Naturales, Pontificia Universidad Católica de Valparaíso |
series |
Latin American Journal of Aquatic Research |
issn |
0718-560X |
publishDate |
2013-11-01 |
description |
In rocky shores, desiccation is triggered by daily tide changes, and experimental evidence suggests that local distribution of algal species across the intertidal rocky zone is related to their capacity to tolerate desiccation. In this context, the permanence of Pyropia columbina in the high intertidal rocky zone is explained by its exceptional physiological tolerance to desiccation. This study explored the metabolic pathways involved in tolerance to desiccation in the Chilean P. columbina, by characterizing its transcriptome under contrasting conditions of hydration. We obtained 1,410 ESTs from two subtracted cDNA libraries in naturally hydrated and desiccated fronds. Results indicate that transcriptome from both libraries contain transcripts from diverse metabolic pathways related to tolerance. Among the transcripts differentially expressed, 15% appears involved in protein synthesis, processing and degradation, 14.4% are related to photosynthesis and chloroplast, 13.1% to respiration and mitochondrial function (NADH dehydrogenase and cytochrome c oxidase proteins), 10.6% to cell wall metabolism, and 7.5% are involved in antioxidant activity, chaperone and defense factors (catalase, thioredoxin, heat shock proteins, cytochrome P450). Both libraries highlight the presence of genes/proteins never described before in algae. This information provides the first molecular work regarding desiccation tolerance in P. columbina, and helps, to some extent, explaining the classical patterns of ecological distribution described for algae across the intertidal zone. |
topic |
Pyropia estrés por desecación ESTs macroalgas transcriptómica proteínas |
url |
http://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0718-560X2013000500013&lng=en&tlng=en |
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