Biodiversity of benthic animal communities and quality of waters in the Neva estuary under anthropogenic stress

E.V. Balushkina and S.M. Golubkov

Proceedings of the Zoological Institute RAS, 2015, 319(2): 229–243   ·   https://doi.org/10.31610/trudyzin/2015.319.2.229

Full text  

Abstract

In the eastern part of the Gulf of Finland 129 in the Neva Bay 127 species and superspecies taxa of benthic animals were found. In total in 1994–2014 188 taxa of benthic animals were recorded in the estuary of the Neva River. Among these 68 are common for the Neva Bay and the eastern Gulf of Finland. At present zoobenthos communities in the estuary are dominated by eurybiont indicator species inhabiting “polluted” and “dirty” waters responding positively to an increase of organic pollution and eutrophication of the ecosystem and resistant to high concentrations of heavy metals and pollutants. Integrated mean assessment of water quality over the entire Neva Bay by means of (IP') (for the 1994–2014) remained relatively stable during the whole period, waters (except in 2006) were assessed as “polluted”. In the health-resort zone of the eastern Gulf of Finland IP' changed during the period of studies from 67.4 to 71.5% characterizing the quality of waters as “polluted-dirty”, which is one class lower than waters of the Neva Bay. As a result of pollution species diversity of benthic animals in the resort zone of the eastern Gulf of Finland is notably lower than in the Neva Bay.

Key words

anthropogenic stress, biodiversity, zoobenthos, water quality

Submitted February 15, 2015  ·  Accepted March 25, 2015  ·  Published June 25, 2015

References

Alekseeva N.A. 1986. Zoobenthos. Review of pollution of the eastern Gulf of Finland by hydrobiological characteristics in 1985. State committee of the USSR for hydrometeorology and environmental monitoring. Northwestern territorial department for hydrometeorology and environmental monitoring. Leningrad: 243–255.

Alimov A.F. and Golubkov S.M. 2008. Changes in the ecosystems of the eastern Gulf of Finland. Bulletin of the Russian Academy of Sciences, 78(3): 223–234. https://doi.org/10.1134/S1019331608020019

Alimov A.F., Balushkina E.V. and Golubkov S.M. 2005. Development of unified methodological approach for assessing water quality and the state of ecosystems using of biological characteristics. Aquaterra. Procedings of Conference, Saint-Petersburg: 264–273. [In Russian].

Alimov A.F., Balushkina E.V. and Umnov A.A. 1996. Approaches to the assessment of condition of water ecosystems. In: S.G. Inge-Vechtomov and V.V. Hudoley (Eds.). Environment impact assessment and criterions of ecological standartization. Scientific Centre RAS, Saint-Petersburg: 37–47. [In Russian].

Balushkina E.V. 1976. Chironomids as indicators of the degree of water pollution. In: O.A. Scarlato and G.G. Winberg (Eds.). Methods of biological analysis of fresh waters. Zoological Institute of RAS, Leningrad: 106–118. [In Russian].

Balushkina E.V. 1987. Functional significance of chironomid larvae in continental reservoirs. Nauka, Leningrad, 180 p. [In Russian].

Balushkina E.V. 1995. New method for the assessment of water quality on the basis of zoobethos parameters. Modern problems of hydrobiology, Zoological Institute, Saint-Petersburg: 8.

Balushkina E.V. 1997a. The use of for water quality assessment by structural characteristics of benthic communities. In: A.F. Alimov (Ed.). Response of lacustrine ecosystems to changes in internal conditions. Zool. Inst.RAS, Saint-Petersburg: 266–292. [In Russian].

Balushkina E.V. 1997b. New Integrated Index for water quality evaluation based on structural charcteristics of zoobenthos. Proceedings of the Final Seminar of the Gulf of Finland Year 1996. Painopaikka: Oy Edita Ab, Helsinki: 177–202.

Balushkina. E.V. 1998. Assessment of water quality and state of the system Ladoga Lake – Neva River – Neva Bay eastern Gulf of Finland based on structural features of macrozoobenthos. Proceedings of the Zoological Institute RAS, 276: 35–42.

Balushkina E.V. 2002. Structure of benthic animal communities and assessment of ecological state of the Izhora river. Part 1. Assessment of water quality of the Izhora river by structural characteristics of benthic animals in different years. Inland water biology, 4: 61–67. [In Russian].

Balushkina E.V. 2003. Structure of benthic animal communities and assessment of ecological state of the Izhora river. Part 2. Impact of water hydrophysical and hydrochemical parameters on structural characteristics of benthic animal communities. Inland water biology, 1: 74–80. [In Russian].

Balushkina E.V. 2004. Changes in the structure of benthic animal communities under anthropogenic impact on aquatic ecosystems (by the example of small lakes of Leningrad Region). Euroasian Entomological Journal, 3(4): 276–282. [In Russian].

Balushkina E.V. 2009. Assessment of the Neva estuary ecosystem state on the basis of the structural characteristics of benthic animal communities in 1994–2005. Inland water biology, 2(4): 355–363. https://doi.org/10.1134/S1995082909040105

Balushkina E.V. 2012. Using the integrated index for the assessment of the state of biodiversity and water quality. In: A.F. Alimov and S.M. Golubkov (Eds.). Dynamics of biodiversity and bioresources of inland waters. Nauka, Saint-Petersburg: 243–258. [In Russian].

Balushkina E.V. and Golubkov S.M. 2014. Biodiversity change of benthic animals in the open part of the Neva River estuary under anthropogenic stress in the 1982–2013. XV International Environmental Forum “Baltic Sea Day”. Thesis collection. Roswodresurs, Saint-Petersburg: 225–226.

Balushkina E.V., Golubkov S.M., Umnova L.P. and Tsiplenkina I.G. 2004. Structural and functional characteristics of communities of benthic animals as an indicator of water quality and state of aquatic ecosystems (by the example of Slavianka and Mga Rivers). In: A.F. Alimov and M.B. Ivanova (Eds.). Regularities of hydrobiological regime in water bodies of different types. Scientific World, Moscow: 235–249. [In Russian].

Balushkina E.V., Maksimov A.A. and Golubkov S.M. 2008a. Zoobenthos of the open waters of the Neva River estuary. In: A.F Alimov. and S.M. Golubkov (Eds.). Ecosystem of the Neva River estuary: biodiversity and ecological problems. KMC Press, Moscow: 156–184. [In Russian].

Balushkina E.V. Golubkov S.M., Golubkov M.S. and Maksimov A.A. 2008b. The role of anthropogenic factors in the dynamics of zoobenthic communities. In: A.F. Alimov and S.M. Golubkov (Eds.). Ecosystem of the Neva River estuary: biodiversity and ecological problems. KMC Press, Moscow: 356–371. [In Russian].

Balushkina E.V., Maksimov A.A. and S.M.Golubkov. 2012. The impact of anthropogenic factors on the biodiversity of benthic animal communities with reference to the Neva Estuary. In: A.F.Alimov and S.M. Golubkov (Eds.). Dynamics of biodiversity and bioresources of the Inland waters. Nauka, Saint-Petersburg: 167–175. [In Russian].

Balushkina E.V. and Finogenova N.P. 2003. Changes in benthic community structure and assessment of state and quality of waters of ecosystems of the Neva Bay and the Gulf of Finland in 1994–2001. Proceedings of the Estonian Academy of Sciences; Biology. 52(4): 365–377. https://doi.org/10.3176/biol.ecol.2003.4.01

Basova, S.L., Kobeleva, N.I., Leonova, M.V. and Frumin, G.T. 2002. Characterization of the state of the Neva Bay by hydrochemical indices in 2001. In: D.A. Golubev and N.D. Sorokin (Eds.). Environmental protection, nature management and providing ecological safety in Saint-Petersburg in 2001. Saint-Petersburg: 175–182. [In Russian].

Basova S.L., Rybalko A.E. and Fedorova N.K. 2006. Results of state monitoring of the eastern part of the Gulf of Finland Carried out by the branches of the Russian hydrometeorological service and the Ministry of nature resources of the Russian Federation. VII International Environmental Forum “Baltic Sea Day” Saint-Petersburg, 2: 83–86.

Criteria of assessment of ecological situation of territories for revealing zones of emergency ecological situation and ecological disaster. 1992. The Ministry of Protection of Environment, Mosсow, 58 p. [In Russian].

Derjugin K.M. 1923. Hydrological and hydrobiological studies of the Neva Bay. 1 Hydrobiology and benthos. Studies of the Neva River and its basin, Petrograd: 31–38. [In Russian].

Derjugin K.M. 1925. Hydrological and hydrobiological studies of the Neva Bay. In 4. Hydrology and benthos of the eastern part of the Gulf of Finland. Studies of the Neva River and its Basin, Leningrad: 3–48. [In Russian].

Directive 2000/60/EC of the European Parliament of the Council of the 23 October 2000 establishing a framework for community action in the field of water policy official journal L 327 22/12/2000: 1–73.

Dmitrieva O., Podgornyj K. and Semenova A. 2014. The approaches to the study of biological diversity of plankton communities Sous-East of the Baltic Sea. XV International Environmental Forum “Baltic Sea Day”. Roswodresurs, Saint-Petersburg: 229–230.

Eremina T.R., Khaimina O.V., Isaev A.V., Lange E.K., Ershova A.A., Maximov A.A., Zaytsev V.M. and Markovets I.M. 2009. Assessment of environmental state of the easternpart of the Gulf of Finland and Neva Bay on the basis of monitoring held in 2008. X International Environmental Forum “Baltic Sea Day”. Maxi-Print, Saint-Petersburg: 225–226.

Finogenova N.P., Golubkov S.M., Panov V.E., Balushkina E.V, Pankratova V.Ya. Lobasheva T.M. and Pavlov A.M. 1987. Macrobenthos. Neva Bay. In: G.G. Winberg (Eds.). Hydrobiological study. Nauka, Leningrad: 111–120. [In Russian].

Finogenova N.P., Slepukhina T.D., Golubkov S.M., Balushkina E.V., Starobogatov Ya.I. and Barbashova M.A. 1999. Composition and quantitaive indices of benthic invertebrates. In: V.A. Rumiancev and V.G. Drabkova (Eds.). Gulf of Finland under conditions of anthropogenic impact. Institute of Limnology RAS, Saint-Petersburg: 189–211. [In Russian]

Frumin G.T. and Kryuchkov A.M. 1999. Hydrochemical characteristics. In: V.A. Rumiancev and V.G. Drabkova (Eds.). Gulf of Finland under anthropogenic impact. Institute of Limnology RAS, Saint-Petersburg: 48–65.

Golubkov M.S. 2009. Primary production of the Neva estuary at the turn of the XX–XXI century. Inland water biology, 4: 20–26. https://doi.org/10.1134/S199508290904004X

Golubkov S.M. and Alimov A.F. 2010. Ecosystem changes in the Neva Estuary (Baltic Sea): Natural dynamics or response to anthropogenic impacts? Marine Pollution Bulletin, 61: 198–204. https://doi.org/10.1016/j.marpolbul.2010.02.014

Golubkov S., Balushkina E., Berezina N. and Maximov A. 2009. Effects of eutrophication and contamination on modern dynamics of bottom animal communities in Neva Bay and the eastern Gulf of Finland. Thesises collection. X International Environmental Forum “Baltic Sea Day”. Maxi-Print, Saint-Petersburg: 48.

Golubkov S.M., Balushkina E.V., Rybalko A.E. Berezina N.A., Maximov A.A., Gubelit Yu.I. and Golubkov M.S. 2011. Quality of water and bottom deposits in the Russian part of the Gulf of Finland by hydrobiological indices Thesises collection. X International Environmental Forum “Baltic Sea Day”. Color-Print, Saint-Petersburg: 311–312.

Goodnight C.J. and Whitley L.S. 1961. Oligochaetes as indicators of pollution. Proceedings 15-th Ind. Waste Conference, 106: 139–142.

Jakovlev V.A. 1988. The assessment of freshwaters quality of Kola North for hydrobiological parameters and the data of toxicity tests. In: V.V. Kruchkov (Ed.). Kola Branch AS USSR, Apatity: 1–25. [In Russian].

Materials for the study of the benthos of the Neva Bay. 1949. Scientific notes of the Leningrad University, series of biological sciences, 21: 107–141.

Newsletter N10. 2008. Saint-Petersburg. FGU NPP on Marine and Exploration “SEVMORGEO”: 51 p.

A review of the state of aquatic objects by hydrobiological parameters on the territory SZUGKS in 1980. 1981. Hydrometeorological control environment. Northwest Territorial. Upravlenie Hydrometeorological control environment. Leningrad: 201 p.

Rybalko A.E. and Fedorova N.K. 1996. Sediments and geochemical processes in the barrier zone “bottom-water” in the southern part of Lake Ladoga – r. Neva – Neva estuary. In: A.F. Alimov and A.K. Frolov. Ecological state of the Neva River drainage-area. Scientific Center of the Russian Academy of Sciences, Saint-Petersburg: 68–91. [In Russian].

Rybalko A.E., Zhakovskaya Z.A., Khoroshko L.O., Petrova V.N., Tsarev V.S. and Nikonov V.A. 2009. Results of estimation of some hazardous substances contents in bottom sediments samples of Eastern part of gulf of Finland (according to the Rosnedra federal monitoring). X International Environmental Forum “Baltic Sea Day”. Tesises collection. Maxi-Print, Saint-Petersburg: 418–419.

Sementchenko V.P. 2004. Principles and systems Bioindication flowing waters. Walnut, Minsk, 125 p.

Sementchenko V.P. and Razlutsky V.I. 2010. Ecological quality of surface waters. Navuka, Minsk, 329 p.

Skorikov A.S. 1910. Zoological studies of Ladoga water as drinking water. Saint-Petersburg, 123 p. [In Russian].

Susloparova O.N., Tereshenkova T.V., Khozyaykin A.A., Zuev J.A., Tamulenis A.J., Sendek D.S., Bogdanov D.V. and Shuruhin A.S. 2014. Estimstion of negative impact consecuences of technogenic loading on water biological resources of the Neva bay of the Gulf of Finland according to long-term monitoring. XV International Environmental Forum “Baltic Sea Day”. Rosvodresursy, Saint-Petersburg: 234–235.

Woodowiss F.S. 1964. The biological system of stream classification used by the Trent Board. Chemistry and Industry, 11: 443–447.

 

© Zoological Institute of the Russian Academy of Sciences
Last modified: March 25, 2024