The physiological state of the Fucus vesiculosus L. of the Barents Sea in a prolonged air condition

The increase in anthropogenic pressure on ecosystems necessitated the implementation of measures aimed at purifying the environment and restoring disturbed biocoenoses. To remediate the marine environment from heavy metals, radionuclides, oil products, it has been proposed to use plantations-biofilt...

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Main Authors: Ryzhik, I. V., Makarov, M. V.
Format: Other Non-Article Part of Journal/Newspaper
Language:Russian
Published: 2018
Subjects:
Online Access:http://hdl.handle.net/1834/41539
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spelling ftoceandocs:oai:aquadocs.org:1834/41539 2023-05-15T15:38:54+02:00 The physiological state of the Fucus vesiculosus L. of the Barents Sea in a prolonged air condition Физиологическое состояние Fucus vesiculosus L. Баренцева моря при длительном нахождении в воздушной среде Ryzhik, I. V. Makarov, M. V. Barents Sea Баренцево море 2018 pp.253-260 http://hdl.handle.net/1834/41539 ru rus http://vestnik.mstu.edu.ru/show-eng.shtml?art=1948 http://vestnik.mstu.edu.ru/show.shtml?art=1948 http://hdl.handle.net/1834/41539 Attribution-NonCommercial-NoDerivatives 4.0 International http://creativecommons.org/licenses/by-nc-nd/4.0/ Fucus vesiculosus Oil pollution Bioremediation Sanitary plantation Загрязнение нефтепродуктами Биоремедиация Санитарная плантация ASFA_2015::B::Biofilters ASFA_2015::P::Photosynthesis ASFA_2015::P::Plant physiology Journal Contribution 2018 ftoceandocs 2023-04-06T17:06:58Z The increase in anthropogenic pressure on ecosystems necessitated the implementation of measures aimed at purifying the environment and restoring disturbed biocoenoses. To remediate the marine environment from heavy metals, radionuclides, oil products, it has been proposed to use plantations-biofilters, the biological components of which are seaweeds. Fucoids, in particular Fucus vesiculosus, have been identified as the most suitable objects as they have a high sorption activity to heavy metals, radionuclides, are able to include petroleum hydrocarbons in own metabolism. By the standard methods of plant physiological research (determination of photosynthetic activity, content of photosynthetic pigments, relative water content) the ability of F. vesiculosus to withstand prolonged exposure to air has been determined. In the experiment, the algae were placed on the netting, twisted into a roll wrapped with a tarp (to prevent drying plants) and set in different experimental conditions (in constant (8 ?C) and variable (7–19 ?C) temperatures). Algae retained the photosynthetic capacity for 30 days, but after 20 days there was a decrease in this process compared to control. After the experiment, algae recovered the level of photosynthetic capacity for one day. The total content of chlorophylls and the ratio of Chl A / Chl C during the experiment did not change, which also indicates the sustainability of the photosynthetic apparatus of F. vesiculosus. It has been shown that F. vesiculosus is able to maintain physiological activity within 30 days if it is under conditions that ensure moisture retention in the thalli is not less than 55 %. This ability expands the potential of using F. vesiculosus as an object of sanitary aquaculture: it is possible to pre-build modules of plantation-biofilter and their long transportation. Увеличение антропогенной нагрузки на экосистемы обусловило необходимость проведения мероприятий, направленных на очищение окружающей среды и восстановление нарушенных биоценозов. Для очистки морской ... Other Non-Article Part of Journal/Newspaper Barents Sea IODE-UNESCO: OceanDocs - E-Repository of Ocean Publications Barents Sea
institution Open Polar
collection IODE-UNESCO: OceanDocs - E-Repository of Ocean Publications
op_collection_id ftoceandocs
language Russian
topic Fucus vesiculosus
Oil pollution
Bioremediation
Sanitary plantation
Загрязнение нефтепродуктами
Биоремедиация
Санитарная плантация
ASFA_2015::B::Biofilters
ASFA_2015::P::Photosynthesis
ASFA_2015::P::Plant physiology
spellingShingle Fucus vesiculosus
Oil pollution
Bioremediation
Sanitary plantation
Загрязнение нефтепродуктами
Биоремедиация
Санитарная плантация
ASFA_2015::B::Biofilters
ASFA_2015::P::Photosynthesis
ASFA_2015::P::Plant physiology
Ryzhik, I. V.
Makarov, M. V.
The physiological state of the Fucus vesiculosus L. of the Barents Sea in a prolonged air condition
topic_facet Fucus vesiculosus
Oil pollution
Bioremediation
Sanitary plantation
Загрязнение нефтепродуктами
Биоремедиация
Санитарная плантация
ASFA_2015::B::Biofilters
ASFA_2015::P::Photosynthesis
ASFA_2015::P::Plant physiology
description The increase in anthropogenic pressure on ecosystems necessitated the implementation of measures aimed at purifying the environment and restoring disturbed biocoenoses. To remediate the marine environment from heavy metals, radionuclides, oil products, it has been proposed to use plantations-biofilters, the biological components of which are seaweeds. Fucoids, in particular Fucus vesiculosus, have been identified as the most suitable objects as they have a high sorption activity to heavy metals, radionuclides, are able to include petroleum hydrocarbons in own metabolism. By the standard methods of plant physiological research (determination of photosynthetic activity, content of photosynthetic pigments, relative water content) the ability of F. vesiculosus to withstand prolonged exposure to air has been determined. In the experiment, the algae were placed on the netting, twisted into a roll wrapped with a tarp (to prevent drying plants) and set in different experimental conditions (in constant (8 ?C) and variable (7–19 ?C) temperatures). Algae retained the photosynthetic capacity for 30 days, but after 20 days there was a decrease in this process compared to control. After the experiment, algae recovered the level of photosynthetic capacity for one day. The total content of chlorophylls and the ratio of Chl A / Chl C during the experiment did not change, which also indicates the sustainability of the photosynthetic apparatus of F. vesiculosus. It has been shown that F. vesiculosus is able to maintain physiological activity within 30 days if it is under conditions that ensure moisture retention in the thalli is not less than 55 %. This ability expands the potential of using F. vesiculosus as an object of sanitary aquaculture: it is possible to pre-build modules of plantation-biofilter and their long transportation. Увеличение антропогенной нагрузки на экосистемы обусловило необходимость проведения мероприятий, направленных на очищение окружающей среды и восстановление нарушенных биоценозов. Для очистки морской ...
format Other Non-Article Part of Journal/Newspaper
author Ryzhik, I. V.
Makarov, M. V.
author_facet Ryzhik, I. V.
Makarov, M. V.
author_sort Ryzhik, I. V.
title The physiological state of the Fucus vesiculosus L. of the Barents Sea in a prolonged air condition
title_short The physiological state of the Fucus vesiculosus L. of the Barents Sea in a prolonged air condition
title_full The physiological state of the Fucus vesiculosus L. of the Barents Sea in a prolonged air condition
title_fullStr The physiological state of the Fucus vesiculosus L. of the Barents Sea in a prolonged air condition
title_full_unstemmed The physiological state of the Fucus vesiculosus L. of the Barents Sea in a prolonged air condition
title_sort physiological state of the fucus vesiculosus l. of the barents sea in a prolonged air condition
publishDate 2018
url http://hdl.handle.net/1834/41539
op_coverage Barents Sea
Баренцево море
geographic Barents Sea
geographic_facet Barents Sea
genre Barents Sea
genre_facet Barents Sea
op_relation http://vestnik.mstu.edu.ru/show-eng.shtml?art=1948
http://vestnik.mstu.edu.ru/show.shtml?art=1948
http://hdl.handle.net/1834/41539
op_rights Attribution-NonCommercial-NoDerivatives 4.0 International
http://creativecommons.org/licenses/by-nc-nd/4.0/
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