Cargando…

Effects of CO(2) enrichment on photosynthesis, growth, and nitrogen metabolism of the seagrass Zostera noltii

Seagrass ecosystems are expected to benefit from the global increase in CO(2) in the ocean because the photosynthetic rate of these plants may be C(i)-limited at the current CO(2) level. As well, it is expected that lower external pH will facilitate the nitrate uptake of seagrasses if nitrate is cot...

Descripción completa

Detalles Bibliográficos
Autores principales: Alexandre, Ana, Silva, João, Buapet, Pimchanok, Björk, Mats, Santos, Rui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3492787/
https://www.ncbi.nlm.nih.gov/pubmed/23145346
http://dx.doi.org/10.1002/ece3.333
_version_ 1782249169678761984
author Alexandre, Ana
Silva, João
Buapet, Pimchanok
Björk, Mats
Santos, Rui
author_facet Alexandre, Ana
Silva, João
Buapet, Pimchanok
Björk, Mats
Santos, Rui
author_sort Alexandre, Ana
collection PubMed
description Seagrass ecosystems are expected to benefit from the global increase in CO(2) in the ocean because the photosynthetic rate of these plants may be C(i)-limited at the current CO(2) level. As well, it is expected that lower external pH will facilitate the nitrate uptake of seagrasses if nitrate is cotransported with H(+) across the membrane as in terrestrial plants. Here, we investigate the effects of CO(2) enrichment on both carbon and nitrogen metabolism of the seagrass Zostera noltii in a mesocosm experiment where plants were exposed for 5 months to two experimental CO(2) concentrations (360 and 700 ppm). Both the maximum photosynthetic rate (P(m)) and photosynthetic efficiency (α) were higher (1.3- and 4.1-fold, respectively) in plants exposed to CO(2)-enriched conditions. On the other hand, no significant effects of CO(2) enrichment on leaf growth rates were observed, probably due to nitrogen limitation as revealed by the low nitrogen content of leaves. The leaf ammonium uptake rate and glutamine synthetase activity were not significantly affected by increased CO(2) concentrations. On the other hand, the leaf nitrate uptake rate of plants exposed to CO(2)-enriched conditions was fourfold lower than the uptake of plants exposed to current CO(2) level, suggesting that in the seagrass Z. noltii nitrate is not cotransported with H(+) as in terrestrial plants. In contrast, the activity of nitrate reductase was threefold higher in plant leaves grown at high-CO(2) concentrations. Our results suggest that the global effects of CO(2) on seagrass production may be spatially heterogeneous and depend on the specific nitrogen availability of each system. Under a CO(2) increase scenario, the natural levels of nutrients will probably become limiting for Z. noltii. This potential limitation becomes more relevant because the expected positive effect of CO(2) increase on nitrate uptake rate was not confirmed.
format Online
Article
Text
id pubmed-3492787
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Blackwell Publishing Ltd
record_format MEDLINE/PubMed
spelling pubmed-34927872012-11-09 Effects of CO(2) enrichment on photosynthesis, growth, and nitrogen metabolism of the seagrass Zostera noltii Alexandre, Ana Silva, João Buapet, Pimchanok Björk, Mats Santos, Rui Ecol Evol Original Research Seagrass ecosystems are expected to benefit from the global increase in CO(2) in the ocean because the photosynthetic rate of these plants may be C(i)-limited at the current CO(2) level. As well, it is expected that lower external pH will facilitate the nitrate uptake of seagrasses if nitrate is cotransported with H(+) across the membrane as in terrestrial plants. Here, we investigate the effects of CO(2) enrichment on both carbon and nitrogen metabolism of the seagrass Zostera noltii in a mesocosm experiment where plants were exposed for 5 months to two experimental CO(2) concentrations (360 and 700 ppm). Both the maximum photosynthetic rate (P(m)) and photosynthetic efficiency (α) were higher (1.3- and 4.1-fold, respectively) in plants exposed to CO(2)-enriched conditions. On the other hand, no significant effects of CO(2) enrichment on leaf growth rates were observed, probably due to nitrogen limitation as revealed by the low nitrogen content of leaves. The leaf ammonium uptake rate and glutamine synthetase activity were not significantly affected by increased CO(2) concentrations. On the other hand, the leaf nitrate uptake rate of plants exposed to CO(2)-enriched conditions was fourfold lower than the uptake of plants exposed to current CO(2) level, suggesting that in the seagrass Z. noltii nitrate is not cotransported with H(+) as in terrestrial plants. In contrast, the activity of nitrate reductase was threefold higher in plant leaves grown at high-CO(2) concentrations. Our results suggest that the global effects of CO(2) on seagrass production may be spatially heterogeneous and depend on the specific nitrogen availability of each system. Under a CO(2) increase scenario, the natural levels of nutrients will probably become limiting for Z. noltii. This potential limitation becomes more relevant because the expected positive effect of CO(2) increase on nitrate uptake rate was not confirmed. Blackwell Publishing Ltd 2012-10 2012-09-19 /pmc/articles/PMC3492787/ /pubmed/23145346 http://dx.doi.org/10.1002/ece3.333 Text en © 2012 Published by Blackwell Publishing Ltd. http://creativecommons.org/licenses/by/2.5/ Re-use of this article is permitted in accordance with the Creative Commons Deed, Attribution 2.5, which does not permit commercial exploitation.
spellingShingle Original Research
Alexandre, Ana
Silva, João
Buapet, Pimchanok
Björk, Mats
Santos, Rui
Effects of CO(2) enrichment on photosynthesis, growth, and nitrogen metabolism of the seagrass Zostera noltii
title Effects of CO(2) enrichment on photosynthesis, growth, and nitrogen metabolism of the seagrass Zostera noltii
title_full Effects of CO(2) enrichment on photosynthesis, growth, and nitrogen metabolism of the seagrass Zostera noltii
title_fullStr Effects of CO(2) enrichment on photosynthesis, growth, and nitrogen metabolism of the seagrass Zostera noltii
title_full_unstemmed Effects of CO(2) enrichment on photosynthesis, growth, and nitrogen metabolism of the seagrass Zostera noltii
title_short Effects of CO(2) enrichment on photosynthesis, growth, and nitrogen metabolism of the seagrass Zostera noltii
title_sort effects of co(2) enrichment on photosynthesis, growth, and nitrogen metabolism of the seagrass zostera noltii
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3492787/
https://www.ncbi.nlm.nih.gov/pubmed/23145346
http://dx.doi.org/10.1002/ece3.333
work_keys_str_mv AT alexandreana effectsofco2enrichmentonphotosynthesisgrowthandnitrogenmetabolismoftheseagrasszosteranoltii
AT silvajoao effectsofco2enrichmentonphotosynthesisgrowthandnitrogenmetabolismoftheseagrasszosteranoltii
AT buapetpimchanok effectsofco2enrichmentonphotosynthesisgrowthandnitrogenmetabolismoftheseagrasszosteranoltii
AT bjorkmats effectsofco2enrichmentonphotosynthesisgrowthandnitrogenmetabolismoftheseagrasszosteranoltii
AT santosrui effectsofco2enrichmentonphotosynthesisgrowthandnitrogenmetabolismoftheseagrasszosteranoltii