Cargando…

Desiccation Induces Accumulations of Antheraxanthin and Zeaxanthin in Intertidal Macro-Alga Ulva pertusa (Chlorophyta)

For plants and algae, exposure to high light levels is deleterious to their photosynthetic machineries. It also can accelerate water evaporation and thus potentially lead to drought stress. Most photosynthetic organisms protect themselves against high light caused photodamages by xanthophyll cycle-d...

Descripción completa

Detalles Bibliográficos
Autores principales: Xie, Xiujun, Gao, Shan, Gu, Wenhui, Pan, Guanghua, Wang, Guangce
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3764160/
https://www.ncbi.nlm.nih.gov/pubmed/24039824
http://dx.doi.org/10.1371/journal.pone.0072929
_version_ 1782283107211149312
author Xie, Xiujun
Gao, Shan
Gu, Wenhui
Pan, Guanghua
Wang, Guangce
author_facet Xie, Xiujun
Gao, Shan
Gu, Wenhui
Pan, Guanghua
Wang, Guangce
author_sort Xie, Xiujun
collection PubMed
description For plants and algae, exposure to high light levels is deleterious to their photosynthetic machineries. It also can accelerate water evaporation and thus potentially lead to drought stress. Most photosynthetic organisms protect themselves against high light caused photodamages by xanthophyll cycle-dependent thermal energy dissipation. It is generally accepted that high light activates xanthophyll cycle. However, the relationship between xanthophyll cycle and drought stress remains ambiguous. Herein, Ulva pertusa (Chlorophyta), a representative perennial intertidal macro-algae species with high drought-tolerant capabilities and simple structures, was used to investigate the operation of xanthophyll cycle during desiccation in air. The results indicate that desiccation under dim light induced accumulation of antheraxanthin (Ax) and zeaxanthin (Zx) at the expense of violaxanthin (Vx). This accumulation could be arrested by dithiothreitol completely and by uncoupler (carbonyl cyanide p-trifluoromethoxyphenylhydrazone) partially, implying the participation of Vx de-epoxidase in conversion of Vx to Ax and Zx. Treatment with inhibitors of electron transport along thylakoid membrane, e.g. DCMU, PG and DBMIB, did not significantly arrest desiccation-induced accumulation of Ax and Zx. We propose that for U. pertusa, besides excess light, desiccation itself could also induce accumulation of Ax and Zx. This accumulation could proceed without electron transport along thylakoid membrane, and is possibly resulting from the reduction of thylakoid lumen volume during desiccation. Considering the pleiotropic effects of Ax and Zx, accumulated Ax and Zx may function in protecting thylakoid membrane and enhancing thermal quenching during emersion in air.
format Online
Article
Text
id pubmed-3764160
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-37641602013-09-13 Desiccation Induces Accumulations of Antheraxanthin and Zeaxanthin in Intertidal Macro-Alga Ulva pertusa (Chlorophyta) Xie, Xiujun Gao, Shan Gu, Wenhui Pan, Guanghua Wang, Guangce PLoS One Research Article For plants and algae, exposure to high light levels is deleterious to their photosynthetic machineries. It also can accelerate water evaporation and thus potentially lead to drought stress. Most photosynthetic organisms protect themselves against high light caused photodamages by xanthophyll cycle-dependent thermal energy dissipation. It is generally accepted that high light activates xanthophyll cycle. However, the relationship between xanthophyll cycle and drought stress remains ambiguous. Herein, Ulva pertusa (Chlorophyta), a representative perennial intertidal macro-algae species with high drought-tolerant capabilities and simple structures, was used to investigate the operation of xanthophyll cycle during desiccation in air. The results indicate that desiccation under dim light induced accumulation of antheraxanthin (Ax) and zeaxanthin (Zx) at the expense of violaxanthin (Vx). This accumulation could be arrested by dithiothreitol completely and by uncoupler (carbonyl cyanide p-trifluoromethoxyphenylhydrazone) partially, implying the participation of Vx de-epoxidase in conversion of Vx to Ax and Zx. Treatment with inhibitors of electron transport along thylakoid membrane, e.g. DCMU, PG and DBMIB, did not significantly arrest desiccation-induced accumulation of Ax and Zx. We propose that for U. pertusa, besides excess light, desiccation itself could also induce accumulation of Ax and Zx. This accumulation could proceed without electron transport along thylakoid membrane, and is possibly resulting from the reduction of thylakoid lumen volume during desiccation. Considering the pleiotropic effects of Ax and Zx, accumulated Ax and Zx may function in protecting thylakoid membrane and enhancing thermal quenching during emersion in air. Public Library of Science 2013-09-05 /pmc/articles/PMC3764160/ /pubmed/24039824 http://dx.doi.org/10.1371/journal.pone.0072929 Text en © 2013 Xie et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Xie, Xiujun
Gao, Shan
Gu, Wenhui
Pan, Guanghua
Wang, Guangce
Desiccation Induces Accumulations of Antheraxanthin and Zeaxanthin in Intertidal Macro-Alga Ulva pertusa (Chlorophyta)
title Desiccation Induces Accumulations of Antheraxanthin and Zeaxanthin in Intertidal Macro-Alga Ulva pertusa (Chlorophyta)
title_full Desiccation Induces Accumulations of Antheraxanthin and Zeaxanthin in Intertidal Macro-Alga Ulva pertusa (Chlorophyta)
title_fullStr Desiccation Induces Accumulations of Antheraxanthin and Zeaxanthin in Intertidal Macro-Alga Ulva pertusa (Chlorophyta)
title_full_unstemmed Desiccation Induces Accumulations of Antheraxanthin and Zeaxanthin in Intertidal Macro-Alga Ulva pertusa (Chlorophyta)
title_short Desiccation Induces Accumulations of Antheraxanthin and Zeaxanthin in Intertidal Macro-Alga Ulva pertusa (Chlorophyta)
title_sort desiccation induces accumulations of antheraxanthin and zeaxanthin in intertidal macro-alga ulva pertusa (chlorophyta)
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3764160/
https://www.ncbi.nlm.nih.gov/pubmed/24039824
http://dx.doi.org/10.1371/journal.pone.0072929
work_keys_str_mv AT xiexiujun desiccationinducesaccumulationsofantheraxanthinandzeaxanthininintertidalmacroalgaulvapertusachlorophyta
AT gaoshan desiccationinducesaccumulationsofantheraxanthinandzeaxanthininintertidalmacroalgaulvapertusachlorophyta
AT guwenhui desiccationinducesaccumulationsofantheraxanthinandzeaxanthininintertidalmacroalgaulvapertusachlorophyta
AT panguanghua desiccationinducesaccumulationsofantheraxanthinandzeaxanthininintertidalmacroalgaulvapertusachlorophyta
AT wangguangce desiccationinducesaccumulationsofantheraxanthinandzeaxanthininintertidalmacroalgaulvapertusachlorophyta