Response of planktonic copepods of the White Sea to the water salinity changes in acute and chronic experiments

In the White Sea, planktonic copepods Calanus glacialis, Pseudocalanus spp., Triconia borealis, and Metridia longa are usually not considered as tolerant to the water salinity decrease, and Oithona similis is generally attributed to the euryhaline species. However, the life cycle of the first two ge...

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Published in:Ecosystem Transformation
Main Authors: Daria M. Martynova, Yury V. Ivankovich
Format: Article in Journal/Newspaper
Language:English
Russian
Published: Cherepovets State University 2020
Subjects:
Online Access:https://doi.org/10.23859/estr-200427
https://doaj.org/article/f40cd6a5c4d140bdaf6139f65e86a4da
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spelling ftdoajarticles:oai:doaj.org/article:f40cd6a5c4d140bdaf6139f65e86a4da 2023-05-15T15:48:06+02:00 Response of planktonic copepods of the White Sea to the water salinity changes in acute and chronic experiments Daria M. Martynova Yury V. Ivankovich 2020-12-01T00:00:00Z https://doi.org/10.23859/estr-200427 https://doaj.org/article/f40cd6a5c4d140bdaf6139f65e86a4da EN RU eng rus Cherepovets State University http://en.ecosysttrans.com/publikatsii/ecosystem-transformation-volume-3-no-4-2020/response-of-planktonic-copepods-of-the-white-sea-to-the-water-salinity-changes-in-acute-and-chronic-/ https://doaj.org/toc/2619-094X https://doaj.org/toc/2619-0931 doi:10.23859/estr-200427 2619-094X 2619-0931 https://doaj.org/article/f40cd6a5c4d140bdaf6139f65e86a4da Трансформация экосистем, Vol 3, Iss 4, Pp 51-64 (2020) salinity tolerance epipelagic copepods mesopelagic copepods calanus pseudocalanus metridia triconia oithona Environmental sciences GE1-350 article 2020 ftdoajarticles https://doi.org/10.23859/estr-200427 2022-12-31T08:04:57Z In the White Sea, planktonic copepods Calanus glacialis, Pseudocalanus spp., Triconia borealis, and Metridia longa are usually not considered as tolerant to the water salinity decrease, and Oithona similis is generally attributed to the euryhaline species. However, the life cycle of the first two genera includes active feeding during the spring ice melting, when a large part of their food sources are concentrated in the upper water layer characterized by salinity less than 18‰. M. longa and T. borealis are considered to be deep-dwelling species. The first one reproduces in autumn and thus relies on the spring phytoplankton bloom the least, the second spawns in spring in deep water layers; however, they are both found in the productive (photic) layer during this season. In order to study if these copepods can use food-rich freshened water layers to get enough energy for growth and reproduction, a series of experiments were performed in July 2019 and March 2020, including chronic and acute ones. The copepod mortality was analyzed at 25‰ or 26‰ (control), 18‰ and 15‰ (experiment). Surprisingly, C. glacialis and Pseudocalanus spp. stood the salinity decrease with minor mortality rates ranging from 0 up to 1.1 ± 0.2% in short-term 24-h experiments. The mortality rate in these species was the highest after five days of gradual water freshening down to 15‰ (12.1 ± 1.8%), while the mortality rate was half as much in control vials at 25/26‰ and at 18‰ (6.4 ± 0.5% and 6.9 ± 0.6%, respectively). T. borealis was the most stenohaline species, exhibiting the 100% mortality rate already at 18‰ after 2 hours of exposure. M. longa did not tolerate the salinity stress at 15‰, reaching 100% mortality in 24 h. O. similis tolerated the salinity decrease well and thus exhibited euryhaline features as reported for this species in different areas of its range. Article in Journal/Newspaper Calanus glacialis White Sea Copepods Directory of Open Access Journals: DOAJ Articles White Sea Ecosystem Transformation 3 4
institution Open Polar
collection Directory of Open Access Journals: DOAJ Articles
op_collection_id ftdoajarticles
language English
Russian
topic salinity tolerance
epipelagic copepods
mesopelagic copepods
calanus
pseudocalanus
metridia
triconia
oithona
Environmental sciences
GE1-350
spellingShingle salinity tolerance
epipelagic copepods
mesopelagic copepods
calanus
pseudocalanus
metridia
triconia
oithona
Environmental sciences
GE1-350
Daria M. Martynova
Yury V. Ivankovich
Response of planktonic copepods of the White Sea to the water salinity changes in acute and chronic experiments
topic_facet salinity tolerance
epipelagic copepods
mesopelagic copepods
calanus
pseudocalanus
metridia
triconia
oithona
Environmental sciences
GE1-350
description In the White Sea, planktonic copepods Calanus glacialis, Pseudocalanus spp., Triconia borealis, and Metridia longa are usually not considered as tolerant to the water salinity decrease, and Oithona similis is generally attributed to the euryhaline species. However, the life cycle of the first two genera includes active feeding during the spring ice melting, when a large part of their food sources are concentrated in the upper water layer characterized by salinity less than 18‰. M. longa and T. borealis are considered to be deep-dwelling species. The first one reproduces in autumn and thus relies on the spring phytoplankton bloom the least, the second spawns in spring in deep water layers; however, they are both found in the productive (photic) layer during this season. In order to study if these copepods can use food-rich freshened water layers to get enough energy for growth and reproduction, a series of experiments were performed in July 2019 and March 2020, including chronic and acute ones. The copepod mortality was analyzed at 25‰ or 26‰ (control), 18‰ and 15‰ (experiment). Surprisingly, C. glacialis and Pseudocalanus spp. stood the salinity decrease with minor mortality rates ranging from 0 up to 1.1 ± 0.2% in short-term 24-h experiments. The mortality rate in these species was the highest after five days of gradual water freshening down to 15‰ (12.1 ± 1.8%), while the mortality rate was half as much in control vials at 25/26‰ and at 18‰ (6.4 ± 0.5% and 6.9 ± 0.6%, respectively). T. borealis was the most stenohaline species, exhibiting the 100% mortality rate already at 18‰ after 2 hours of exposure. M. longa did not tolerate the salinity stress at 15‰, reaching 100% mortality in 24 h. O. similis tolerated the salinity decrease well and thus exhibited euryhaline features as reported for this species in different areas of its range.
format Article in Journal/Newspaper
author Daria M. Martynova
Yury V. Ivankovich
author_facet Daria M. Martynova
Yury V. Ivankovich
author_sort Daria M. Martynova
title Response of planktonic copepods of the White Sea to the water salinity changes in acute and chronic experiments
title_short Response of planktonic copepods of the White Sea to the water salinity changes in acute and chronic experiments
title_full Response of planktonic copepods of the White Sea to the water salinity changes in acute and chronic experiments
title_fullStr Response of planktonic copepods of the White Sea to the water salinity changes in acute and chronic experiments
title_full_unstemmed Response of planktonic copepods of the White Sea to the water salinity changes in acute and chronic experiments
title_sort response of planktonic copepods of the white sea to the water salinity changes in acute and chronic experiments
publisher Cherepovets State University
publishDate 2020
url https://doi.org/10.23859/estr-200427
https://doaj.org/article/f40cd6a5c4d140bdaf6139f65e86a4da
geographic White Sea
geographic_facet White Sea
genre Calanus glacialis
White Sea
Copepods
genre_facet Calanus glacialis
White Sea
Copepods
op_source Трансформация экосистем, Vol 3, Iss 4, Pp 51-64 (2020)
op_relation http://en.ecosysttrans.com/publikatsii/ecosystem-transformation-volume-3-no-4-2020/response-of-planktonic-copepods-of-the-white-sea-to-the-water-salinity-changes-in-acute-and-chronic-/
https://doaj.org/toc/2619-094X
https://doaj.org/toc/2619-0931
doi:10.23859/estr-200427
2619-094X
2619-0931
https://doaj.org/article/f40cd6a5c4d140bdaf6139f65e86a4da
op_doi https://doi.org/10.23859/estr-200427
container_title Ecosystem Transformation
container_volume 3
container_issue 4
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