Significance of salinity and silicon levels for growth of a formerly estuarine eelgrass (Zostera marina) population (Lake Grevelingen, the Netherlands)

Since the early 1980s, the eelgrass, Zostera marina L., population in the saline Lake Gevelingen, The Netherlands, is rapidly declining. An earlier study, in which long-term data on eelgrass coverage in this former estuary were correlated with several environmental variables, showed only one signifi...

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Published in:Marine Biology
Main Authors: Kamermans, P., Hemminga, M.A., De Jong, D.J.
Format: Article in Journal/Newspaper
Language:English
Published: 1999
Subjects:
Online Access:https://pure.knaw.nl/portal/en/publications/9cf8ce06-1e0d-4b6b-aaab-95b0dc860c17
https://doi.org/10.1007/s002270050493
https://hdl.handle.net/20.500.11755/9cf8ce06-1e0d-4b6b-aaab-95b0dc860c17
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spelling ftknawnlpublic:oai:pure.knaw.nl:publications/9cf8ce06-1e0d-4b6b-aaab-95b0dc860c17 2024-09-15T17:47:04+00:00 Significance of salinity and silicon levels for growth of a formerly estuarine eelgrass (Zostera marina) population (Lake Grevelingen, the Netherlands) Kamermans, P. Hemminga, M.A. De Jong, D.J. 1999 https://pure.knaw.nl/portal/en/publications/9cf8ce06-1e0d-4b6b-aaab-95b0dc860c17 https://doi.org/10.1007/s002270050493 https://hdl.handle.net/20.500.11755/9cf8ce06-1e0d-4b6b-aaab-95b0dc860c17 eng eng https://pure.knaw.nl/portal/en/publications/9cf8ce06-1e0d-4b6b-aaab-95b0dc860c17 info:eu-repo/semantics/closedAccess Kamermans , P , Hemminga , M A & De Jong , D J 1999 , ' Significance of salinity and silicon levels for growth of a formerly estuarine eelgrass (Zostera marina) population (Lake Grevelingen, the Netherlands) ' , Marine Biology , vol. 133 , no. 3 , pp. 527-539 . https://doi.org/10.1007/s002270050493 article 1999 ftknawnlpublic https://doi.org/10.1007/s00227005049320.500.11755/9cf8ce06-1e0d-4b6b-aaab-95b0dc860c17 2024-07-22T23:43:54Z Since the early 1980s, the eelgrass, Zostera marina L., population in the saline Lake Gevelingen, The Netherlands, is rapidly declining. An earlier study, in which long-term data on eelgrass coverage in this former estuary were correlated with several environmental variables, showed only one significant correlation: coverage was positively related to water column silicon levels. In addition, a negative correlation with salinity was observed, but this was not significant. In the present study, the effect of silicon and the effect of salinity on the development of Z. marina were investigated experimentally. Enhancement of dissolved silicon concentrations in the water did not stimulate Z. marina above-ground production or an increase in final above- and below-ground biomass. The highly significant correlation between eelgrass coverage and water column silicon levels, thus, remains to be explained. The results of the growth experiments did, however, demonstrate a clear effect of salinity on Z. marina growth. Plants cultured at 22 psu showed a higher production of shoots and leaves, resulting in more above-ground biomass, than plants grown at 32 psu. In addition, below-ground biomass was also higher at 22 psu. Measurements of chlorophyll a fluorescence, performed with a PAM-fluorometer, indicated a reduction of photosynthesis in the high-salinity treatments. Thus, low salinity stimulates development of Z. marina from Lake Grevelingen. Eelgrass from such a historically estuarine area may be more sensitive to high salinities than other, more marine populations. Recovery of the autochthonous eelgrass population is expected to be favoured when the estuarine conditions of the seagrass area are re-established, or when restoration programmes are carried out with allochthonous ecotypes that are less sensitive to high salinities. [KEYWORDS: Seagrass halophila-ovalis; antarctica labill sonder; photosynthetic responses; western-australia; light; biomass; bay; fluorescence; transplants; adaptation] Since the early 1980s, the ... Article in Journal/Newspaper Antarc* Antarctica Royal Netherlands Academy of Arts and Sciences Research Portal (KNAW) Marine Biology 133 3 527 539
institution Open Polar
collection Royal Netherlands Academy of Arts and Sciences Research Portal (KNAW)
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description Since the early 1980s, the eelgrass, Zostera marina L., population in the saline Lake Gevelingen, The Netherlands, is rapidly declining. An earlier study, in which long-term data on eelgrass coverage in this former estuary were correlated with several environmental variables, showed only one significant correlation: coverage was positively related to water column silicon levels. In addition, a negative correlation with salinity was observed, but this was not significant. In the present study, the effect of silicon and the effect of salinity on the development of Z. marina were investigated experimentally. Enhancement of dissolved silicon concentrations in the water did not stimulate Z. marina above-ground production or an increase in final above- and below-ground biomass. The highly significant correlation between eelgrass coverage and water column silicon levels, thus, remains to be explained. The results of the growth experiments did, however, demonstrate a clear effect of salinity on Z. marina growth. Plants cultured at 22 psu showed a higher production of shoots and leaves, resulting in more above-ground biomass, than plants grown at 32 psu. In addition, below-ground biomass was also higher at 22 psu. Measurements of chlorophyll a fluorescence, performed with a PAM-fluorometer, indicated a reduction of photosynthesis in the high-salinity treatments. Thus, low salinity stimulates development of Z. marina from Lake Grevelingen. Eelgrass from such a historically estuarine area may be more sensitive to high salinities than other, more marine populations. Recovery of the autochthonous eelgrass population is expected to be favoured when the estuarine conditions of the seagrass area are re-established, or when restoration programmes are carried out with allochthonous ecotypes that are less sensitive to high salinities. [KEYWORDS: Seagrass halophila-ovalis; antarctica labill sonder; photosynthetic responses; western-australia; light; biomass; bay; fluorescence; transplants; adaptation] Since the early 1980s, the ...
format Article in Journal/Newspaper
author Kamermans, P.
Hemminga, M.A.
De Jong, D.J.
spellingShingle Kamermans, P.
Hemminga, M.A.
De Jong, D.J.
Significance of salinity and silicon levels for growth of a formerly estuarine eelgrass (Zostera marina) population (Lake Grevelingen, the Netherlands)
author_facet Kamermans, P.
Hemminga, M.A.
De Jong, D.J.
author_sort Kamermans, P.
title Significance of salinity and silicon levels for growth of a formerly estuarine eelgrass (Zostera marina) population (Lake Grevelingen, the Netherlands)
title_short Significance of salinity and silicon levels for growth of a formerly estuarine eelgrass (Zostera marina) population (Lake Grevelingen, the Netherlands)
title_full Significance of salinity and silicon levels for growth of a formerly estuarine eelgrass (Zostera marina) population (Lake Grevelingen, the Netherlands)
title_fullStr Significance of salinity and silicon levels for growth of a formerly estuarine eelgrass (Zostera marina) population (Lake Grevelingen, the Netherlands)
title_full_unstemmed Significance of salinity and silicon levels for growth of a formerly estuarine eelgrass (Zostera marina) population (Lake Grevelingen, the Netherlands)
title_sort significance of salinity and silicon levels for growth of a formerly estuarine eelgrass (zostera marina) population (lake grevelingen, the netherlands)
publishDate 1999
url https://pure.knaw.nl/portal/en/publications/9cf8ce06-1e0d-4b6b-aaab-95b0dc860c17
https://doi.org/10.1007/s002270050493
https://hdl.handle.net/20.500.11755/9cf8ce06-1e0d-4b6b-aaab-95b0dc860c17
genre Antarc*
Antarctica
genre_facet Antarc*
Antarctica
op_source Kamermans , P , Hemminga , M A & De Jong , D J 1999 , ' Significance of salinity and silicon levels for growth of a formerly estuarine eelgrass (Zostera marina) population (Lake Grevelingen, the Netherlands) ' , Marine Biology , vol. 133 , no. 3 , pp. 527-539 . https://doi.org/10.1007/s002270050493
op_relation https://pure.knaw.nl/portal/en/publications/9cf8ce06-1e0d-4b6b-aaab-95b0dc860c17
op_rights info:eu-repo/semantics/closedAccess
op_doi https://doi.org/10.1007/s00227005049320.500.11755/9cf8ce06-1e0d-4b6b-aaab-95b0dc860c17
container_title Marine Biology
container_volume 133
container_issue 3
container_start_page 527
op_container_end_page 539
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