Changes in the Structure of the Subtidal Phytocoenosis along the Gradient of the Concentrations of Biogenic Elements in the Sukhoputnaya Bay (Ussuriisky Bay, Sea of Japan)
The modification of the structure of the subtidal phytocoenosis was investigated along the gradient of the concentration of nutrients brought with sewage effluents into the Sukhoputnaya Bay (Ussuriisky Bay, the Sea of Japan). It was shown that an increase in the concentration of dissolved inorganic...
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Published in | Russian journal of marine biology Vol. 44; no. 5; pp. 373 - 382 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
Moscow
Pleiades Publishing
01.09.2018
Springer Nature B.V |
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Abstract | The modification of the structure of the subtidal phytocoenosis was investigated along the gradient of the concentration of nutrients brought with sewage effluents into the Sukhoputnaya Bay (Ussuriisky Bay, the Sea of Japan). It was shown that an increase in the concentration of dissolved inorganic nitrogen (DIN) from 4.2 to 16.6 μM was followed by a decrease of 1.7 times in species richness, while the relative biomass of opportunistic species increased simultaneously by more than 1.5 times and by more than 5 times for
Ulva lactuca.
A decrease in the number of dominant species and in the number of layers in the structure simplified the algal phytocoenoses. The complex polydominant multi-layered phytocoenosis of
Stephanocystis crassipes
–
Laurencia nipponica
+
Ulva lactuca
–
Ahnfeltiopsis flabelliformis
was first substituted for a bidominant two-layered phytocoenosis of
Stephanocystis crassipes
–
Tichocarpus crinitus,
and further by a one-layer monodominant phytocoenosis of
Ulva lactuca
. A comparison of our own and published data allows us to conclude that complex phytocoenoses of perennial macrophytes can develop in water areas with DIN concentrations that do not exceed 15 μM. |
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AbstractList | The modification of the structure of the subtidal phytocoenosis was investigated along the gradient of the concentration of nutrients brought with sewage effluents into the Sukhoputnaya Bay (Ussuriisky Bay, the Sea of Japan). It was shown that an increase in the concentration of dissolved inorganic nitrogen (DIN) from 4.2 to 16.6 μM was followed by a decrease of 1.7 times in species richness, while the relative biomass of opportunistic species increased simultaneously by more than 1.5 times and by more than 5 times for
Ulva lactuca.
A decrease in the number of dominant species and in the number of layers in the structure simplified the algal phytocoenoses. The complex polydominant multi-layered phytocoenosis of
Stephanocystis crassipes
–
Laurencia nipponica
+
Ulva lactuca
–
Ahnfeltiopsis flabelliformis
was first substituted for a bidominant two-layered phytocoenosis of
Stephanocystis crassipes
–
Tichocarpus crinitus,
and further by a one-layer monodominant phytocoenosis of
Ulva lactuca
. A comparison of our own and published data allows us to conclude that complex phytocoenoses of perennial macrophytes can develop in water areas with DIN concentrations that do not exceed 15 μM. The modification of the structure of the subtidal phytocoenosis was investigated along the gradient of the concentration of nutrients brought with sewage effluents into the Sukhoputnaya Bay (Ussuriisky Bay, the Sea of Japan). It was shown that an increase in the concentration of dissolved inorganic nitrogen (DIN) from 4.2 to 16.6 μM was followed by a decrease of 1.7 times in species richness, while the relative biomass of opportunistic species increased simultaneously by more than 1.5 times and by more than 5 times for Ulva lactuca. A decrease in the number of dominant species and in the number of layers in the structure simplified the algal phytocoenoses. The complex polydominant multi-layered phytocoenosis of Stephanocystis crassipes–Laurencia nipponica + Ulva lactuca–Ahnfeltiopsis flabelliformis was first substituted for a bidominant two-layered phytocoenosis of Stephanocystis crassipes–Tichocarpus crinitus, and further by a one-layer monodominant phytocoenosis of Ulva lactuca. A comparison of our own and published data allows us to conclude that complex phytocoenoses of perennial macrophytes can develop in water areas with DIN concentrations that do not exceed 15 μM. |
Author | Kalita, T. L. Skriptsova, A. V. Sabitova, L. I. |
Author_xml | – sequence: 1 givenname: A. V. surname: Skriptsova fullname: Skriptsova, A. V. email: askriptsova@mail.ru organization: Zhirmunsky Institute of Marine Biology, National Scientific Centre of Marine Biology, Far East Branch, Russian Academy of Sciences – sequence: 2 givenname: T. L. surname: Kalita fullname: Kalita, T. L. organization: Zhirmunsky Institute of Marine Biology, National Scientific Centre of Marine Biology, Far East Branch, Russian Academy of Sciences – sequence: 3 givenname: L. I. surname: Sabitova fullname: Sabitova, L. I. organization: Zhirmunsky Institute of Marine Biology, National Scientific Centre of Marine Biology, Far East Branch, Russian Academy of Sciences |
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Cites_doi | 10.1134/S1063074012030121 10.1134/S1063074018010054 10.1007/s10811-013-0194-1 10.1016/j.marpolbul.2016.02.017 10.1016/j.ecolmodel.2009.01.022 10.1134/S1063074014060157 10.1515/BOT.2003.024 10.1016/j.ecss.2007.11.002 10.1080/14634988.2016.1140952 10.12681/mms.266 10.1017/S0025315411000968 10.1016/j.marpolbul.2006.08.023 10.1016/j.seares.2014.11.004 |
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Keywords | Sea of Japan seaweeds subtidal zone phytocoenosis structure gradient of nutrient concentration eutrophication |
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SubjectTerms | Algae Aquatic plants Biomedical and Life Sciences Dominant species Effluents Freshwater & Marine Ecology Life Sciences Macrophytes Mineral nutrients Nutrients Original Papers Sewage Sewage effluents Sewerage Species richness Ulva lactuca |
Title | Changes in the Structure of the Subtidal Phytocoenosis along the Gradient of the Concentrations of Biogenic Elements in the Sukhoputnaya Bay (Ussuriisky Bay, Sea of Japan) |
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