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New Insights From Transcriptomic Data Reveal Differential Effects of CO(2) Acidification Stress on Photosynthesis of an Endosymbiotic Dinoflagellate in hospite
Ocean acidification (OA) has both detrimental as well as beneficial effects on marine life; it negatively affects calcifiers while enhancing the productivity of photosynthetic organisms. To date, many studies have focused on the impacts of OA on calcification in reef-building corals, a process parti...
Autores principales: | , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Frontiers Media S.A.
2021
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8326563/ https://www.ncbi.nlm.nih.gov/pubmed/34349734 http://dx.doi.org/10.3389/fmicb.2021.666510 |
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author | Herrera, Marcela Liew, Yi Jin Venn, Alexander Tambutté, Eric Zoccola, Didier Tambutté, Sylvie Cui, Guoxin Aranda, Manuel |
author_facet | Herrera, Marcela Liew, Yi Jin Venn, Alexander Tambutté, Eric Zoccola, Didier Tambutté, Sylvie Cui, Guoxin Aranda, Manuel |
author_sort | Herrera, Marcela |
collection | PubMed |
description | Ocean acidification (OA) has both detrimental as well as beneficial effects on marine life; it negatively affects calcifiers while enhancing the productivity of photosynthetic organisms. To date, many studies have focused on the impacts of OA on calcification in reef-building corals, a process particularly susceptible to acidification. However, little is known about the effects of OA on their photosynthetic algal partners, with some studies suggesting potential benefits for symbiont productivity. Here, we investigated the transcriptomic response of the endosymbiont Symbiodinium microadriaticum (CCMP2467) in the Red Sea coral Stylophora pistillata subjected to different long-term (2 years) OA treatments (pH 8.0, 7.8, 7.4, 7.2). Transcriptomic analyses revealed that symbionts from corals under lower pH treatments responded to acidification by increasing the expression of genes related to photosynthesis and carbon-concentrating mechanisms. These processes were mostly up-regulated and associated metabolic pathways were significantly enriched, suggesting an overall positive effect of OA on the expression of photosynthesis-related genes. To test this conclusion on a physiological level, we analyzed the symbiont’s photochemical performance across treatments. However, in contrast to the beneficial effects suggested by the observed gene expression changes, we found significant impairment of photosynthesis with increasing pCO(2). Collectively, our data suggest that over-expression of photosynthesis-related genes is not a beneficial effect of OA but rather an acclimation response of the holobiont to different water chemistries. Our study highlights the complex effects of ocean acidification on these symbiotic organisms and the role of the host in determining symbiont productivity and performance. |
format | Online Article Text |
id | pubmed-8326563 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | Frontiers Media S.A. |
record_format | MEDLINE/PubMed |
spelling | pubmed-83265632021-08-03 New Insights From Transcriptomic Data Reveal Differential Effects of CO(2) Acidification Stress on Photosynthesis of an Endosymbiotic Dinoflagellate in hospite Herrera, Marcela Liew, Yi Jin Venn, Alexander Tambutté, Eric Zoccola, Didier Tambutté, Sylvie Cui, Guoxin Aranda, Manuel Front Microbiol Microbiology Ocean acidification (OA) has both detrimental as well as beneficial effects on marine life; it negatively affects calcifiers while enhancing the productivity of photosynthetic organisms. To date, many studies have focused on the impacts of OA on calcification in reef-building corals, a process particularly susceptible to acidification. However, little is known about the effects of OA on their photosynthetic algal partners, with some studies suggesting potential benefits for symbiont productivity. Here, we investigated the transcriptomic response of the endosymbiont Symbiodinium microadriaticum (CCMP2467) in the Red Sea coral Stylophora pistillata subjected to different long-term (2 years) OA treatments (pH 8.0, 7.8, 7.4, 7.2). Transcriptomic analyses revealed that symbionts from corals under lower pH treatments responded to acidification by increasing the expression of genes related to photosynthesis and carbon-concentrating mechanisms. These processes were mostly up-regulated and associated metabolic pathways were significantly enriched, suggesting an overall positive effect of OA on the expression of photosynthesis-related genes. To test this conclusion on a physiological level, we analyzed the symbiont’s photochemical performance across treatments. However, in contrast to the beneficial effects suggested by the observed gene expression changes, we found significant impairment of photosynthesis with increasing pCO(2). Collectively, our data suggest that over-expression of photosynthesis-related genes is not a beneficial effect of OA but rather an acclimation response of the holobiont to different water chemistries. Our study highlights the complex effects of ocean acidification on these symbiotic organisms and the role of the host in determining symbiont productivity and performance. Frontiers Media S.A. 2021-07-19 /pmc/articles/PMC8326563/ /pubmed/34349734 http://dx.doi.org/10.3389/fmicb.2021.666510 Text en Copyright © 2021 Herrera, Liew, Venn, Tambutté, Zoccola, Tambutté, Cui and Aranda. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms. |
spellingShingle | Microbiology Herrera, Marcela Liew, Yi Jin Venn, Alexander Tambutté, Eric Zoccola, Didier Tambutté, Sylvie Cui, Guoxin Aranda, Manuel New Insights From Transcriptomic Data Reveal Differential Effects of CO(2) Acidification Stress on Photosynthesis of an Endosymbiotic Dinoflagellate in hospite |
title | New Insights From Transcriptomic Data Reveal Differential Effects of CO(2) Acidification Stress on Photosynthesis of an Endosymbiotic Dinoflagellate in hospite |
title_full | New Insights From Transcriptomic Data Reveal Differential Effects of CO(2) Acidification Stress on Photosynthesis of an Endosymbiotic Dinoflagellate in hospite |
title_fullStr | New Insights From Transcriptomic Data Reveal Differential Effects of CO(2) Acidification Stress on Photosynthesis of an Endosymbiotic Dinoflagellate in hospite |
title_full_unstemmed | New Insights From Transcriptomic Data Reveal Differential Effects of CO(2) Acidification Stress on Photosynthesis of an Endosymbiotic Dinoflagellate in hospite |
title_short | New Insights From Transcriptomic Data Reveal Differential Effects of CO(2) Acidification Stress on Photosynthesis of an Endosymbiotic Dinoflagellate in hospite |
title_sort | new insights from transcriptomic data reveal differential effects of co(2) acidification stress on photosynthesis of an endosymbiotic dinoflagellate in hospite |
topic | Microbiology |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8326563/ https://www.ncbi.nlm.nih.gov/pubmed/34349734 http://dx.doi.org/10.3389/fmicb.2021.666510 |
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