Long-term changes in phytoplankton and macrophyte communities in an eutrophic shallow reservoir and prospects for its restoration

被引:1
作者
Rusanov, Alexander [1 ]
Trifonova, Irina [1 ]
Ignatyeva, Natalia [1 ]
Pavlova, Oksana [1 ]
机构
[1] Russian Acad Sci, Inst Limnol, Sevastyanova Str 9, St Petersburg 196105, Russia
关键词
phytoplankton; cyanobacteria; macrophytes; shallow lakes; alternative stable states; eutrophication; LAKE RESTORATION; REGIME SHIFTS; WATER BODIES; RESPONSES; FAILURES;
D O I
10.1515/ohs-2020-0016
中图分类号
Q17 [水生生物学];
学科分类号
071004 ;
摘要
Long-term changes in hydrochemistry and community structure of phytoplankton and macrophytes were analyzed in the Sestroretskiy Razliv reservoir (northwestern Russia). The average content of total phosphorus (TP) in May-October increased from 73 mu g P l(-1) in 1980 to 163 mu g P l(-1) in 2000. A significant increase in average chlorophyll a content from 16.6 mu g l(-1) in 1980 to 84.7 mu g l(-1) in 2000 and a shift in phytoplankton composition to the dominance of cyanobacteria over diatoms indicated a change in the trophic status of the reservoir from meso-eutrophic to hypertrophic. In 2016 and 2018, average TP was 96 and 101 mu g P l(-1), respectively. The average content of chlorophyll a was 43.6 mu g l(-1) in 2016 and 66.6 mu g l(-1) in warmer 2018, indicating persistent eutrophic conditions. Diatoms dominated both in 2016 and 2018, especially in 2016 characterized by unfavorable weather conditions. Cyanobacteria were more abundant in 2018 with higher summer temperatures. The decline of the total area covered by aquatic vegetation from 157 ha in 1980 to 76 ha in 2016 likely resulted from an increase in phytoplankton biomass and water turbidity. Based on the results of our observations, in addition to further reduction in nutrient loading, biomanipulation by introducing predatory fish as a restoration measure was proposed to improve the ecological status of the reservoir.
引用
收藏
页码:168 / 183
页数:16
相关论文
共 51 条
[1]  
Ahlgren G., 1978, VERH INT VEREIN THEO, V20, P840
[2]  
[Anonymous], 1982, EUTROPHICATION WATER, P154
[3]  
[Anonymous], UNESCO MON OC METH
[4]   Effect of light stress from phytoplankton on the relationship between aquatic vegetation and the propagule bank in shallow lakes [J].
Arthaud, Florent ;
Mousset, Mathilde ;
Vallod, Dominique ;
Robin, Joel ;
Wezel, Alexander ;
Bornette, Gudrun .
FRESHWATER BIOLOGY, 2012, 57 (04) :666-675
[5]  
Belyakov V.P., 2002, WATER OBJECTS SAINT, P247
[6]   Possibilities and limits for controlling eutrophication by biomanipulation [J].
Benndorf, J .
INTERNATIONALE REVUE DER GESAMTEN HYDROBIOLOGIE, 1995, 80 (04) :519-534
[7]  
Chernova E.N., 2014, REGIONAL ECOLOGY, V35, P88
[8]  
CHORUS I, 1988, PROC INT ASSOC THE 2, V23, P719
[9]   Ecosystem response to changes in water level of Lake Ontario marshes: lessons from the restoration of Cootes Paradise Marsh [J].
Chow-Fraser, P .
HYDROBIOLOGIA, 2005, 539 (1) :189-204
[10]   THE EFFECT OF CHANGES IN THE NUTRIENT INCOME ON THE CONDITION OF LAKE WASHINGTON [J].
EDMONDSON, WT ;
LEHMAN, JT .
LIMNOLOGY AND OCEANOGRAPHY, 1981, 26 (01) :1-29