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Ağır Metal Kirliliğinde Kerevitlerin Biyoindikatör Tür Olarak Kullanımı Üzerine Derleme

The Use of Crayfish as a Bioindicator at the Heavy Metal Pollution

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Abstract (2. Language): 
Heavy metal pollution continues to subject the ecosystem to increasing amounts of environmental stress and constitutes a health hazard for a large variety of species. Taking into consideration the scale of the potential threat posed by those pollutants, it is vital to gain a greater understanding of their impact on the environment. The use of bioindicator species is one of the most precise and accurate methods available for the study of heavy metal pollution and its effects. Prior studies indicate that crayfish are capable of accumulating heavy metals with rates dependent on the external concentration of the metal in question. As such, crayfish have long been in use as bioindicator species, and it is the purpose of this review to investigate the success of this taxon as bioindicators.
Abstract (Original Language): 
Ağır metal kirliliği ekosistemler üzerinde her geçen gün daha büyük baskı oluşturmakta, dahası tüm canlıların hayatlarını tehdit eder bir hal almaktadır. Ağır metal kirliliğinin ekosistemlerdeki boyutunu anlamak, yarattığı tehditin büyüklüğü düşünülecek olunduğunda her geçen gün daha da önem kazanmaktadır. Ağır metal akümülasyonunu anlamanın en doğru ve hassas yöntemlerinden biride de biyoindikatör türlerin kullanılmasıdır. Kerevitler yürütülen pek çok çalışmada görülmüştür ki, önemli miktarlarda ağır metal akümüle edebilme yeteneğine sahiptirler ve akümüle ettikleri ağır metal miktarları ortamdaki o ağır metal miktarının değişimine göre de değişiklik gösterebilmektedir. Bu özelliklerinden dolayı kerevitler gerçekleştirilen çalışmalarda biyoindikatör olarak kullanılmışlardır. Bu derlemenin amacı biyoindikatör tür olarak kerevitin bu konudaki başarısını araştırmaktır.
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REFERENCES

References: 

Alcorlo, P., Otero, M., Crehuet, M., Baltanás, A.,
Montes, C. 2006. The Use of the Red Swamp
Crayfish (Procambarus clarkii, Girard) as Indicator
of the Bioavailability of Heavy Metals in
Environmental Monitoring in the River Guadiamar
(Sw, Spain). Science of The Total Environment,
366(1): 380-390.
Alexopoulos, E., McCrohan, C. R., Powell, J. J.,
Jugdaohsingh, R., White, K. N. 2003. Bioavailability
and Toxicity of Freshly Neutralized Aluminium to
the Freshwater Crayfish Pacifastacus leniusculus.
Archives of Environmental Contamination and
Toxicology, 45(4): 509-514.
Alhas, E., Oymak, S. A., Karadede Akin, H. 2008.
Heavy Metal Concentrations in Two Barb, Barbus
xanthopterus and Barbus rajanorum Mystaceus
from Atatürk Dam Lake, Turkey. Environmental
Monitoring and Assessment, 148(1-4): 11-18.
Alikhan, M. A., Bagatto, G., Zia, S. 1990. The Crayfish
as a Biological Indicator of Aquatic Contamination
by Heavy-Metals. Water Research, 24(9): 1069-
1076.
Allert, A. L., Fairchild, J. F., DiStefano, R. J., Schmitt,
C. J., Brumbaugh, W. G., Besser, J. M. 2009.
Ecological Effects of Lead Mining on Ozark
Streams: In-Situ Toxicity to Woodland Crayfish
(Orconectes hylas). Ecotoxicology and
Environmental Safety, 72(4): 1207-1219.
Altindag, A., Yigit, S. 2005. Assessment of Heavy
Metal Concentrations in the Food Web of Lake
Beyşehir, Turkey. Chemosphere, 60(4): 552-556.
Altug, G., Okgerman, H. 2008. Levels of Some Toxic
Elements in the Surface Sediment and Some Biota
from the Sapanca Lake, Turkey. Fresenius
Environmental Bulletin, 17(1): 24-28.
Anderson, M. B., Preslan, J. E., Jolibois, L., Bollinger,
J. E., George, W. J. 1997a. Bioaccumulation of Lead
Nitrate in Red Swamp Crayfish (Procambarus
clarkii). Journal of Hazardous Materials, 54(1-2):
15-29.
Anderson, M. B., Reddy, P., Preslan, J. E., Fingerman,
M., Bollinger, J., Jolibois, L., Maheshwarudu, G.,
George, W. J. 1997b. Metal Accumulation in
Crayfish, Procambarus clarkii, Exposed to a
Petroleum-Contaminated Bayou in Louisiana.
ecotoxicology and environmental Safety, 37: 267-
272.
Anton, A., Serrano, T., Angulo, E., Ferrero, G., Rallo,
A. 2000. The Use of Two Species of Crayfish as
Environmental Quality Sentinels: The Relationship
between Heavy Metal Content, Cell and Tissue
Biomarkers and Physico-Chemical Characteristics of
the Environment. Science of The Total
Environment, 247(2-3): 239-251.
Arain, M. B., Kazi, T. G., Jamali, M. K., Jalbani, N.,
Afridi, H. I., Shah, A. 2008. Total Dissolved and
Bioavailable Elements in Water and Sediment
Samples and Their Accumulation in Oreochromis
mossambicus of Polluted Manchar Lake.
Chemosphere, 70(10): 1845-1856.
Bagatto, G., Alikhan, M. A. 1987a. Copper, Cadmium,
and Nickel Accumulation in Crayfish Populations
near Copper Nickel Smelters at Sudbury, Ontario,
Canada. Bulletin of Environmental Contamination
and Toxicology, 38(3): 540-545.
Bagatto, G., Alikhan, M. A. 1987b. Metals in Crayfish
from Neutralized Acidic and Nonacidic Lakes.
Bulletin of Environmental Contamination and
Toxicology, 39(3): 401-405.
Barlas, N., Akbulut, N., Aydoğan, M. 2005. Assessment
of Heavy Metal Residues in the Sediment and Water
Samples of Uluabat Lake, Turkey. Bulletin of
Environmental Contamination and Toxicology,
74(2): 286-293.
Bollinger, J. E., Bundy, K., Anderson, M. B., Millet, L.,
Preslan, J. E., Jolibois, L., Chen, H. L., Kamath, B.,
JGeorge, W. 1997. Bioaccumulation of Chromium
in Red Swamp Crayfish (Procambarus clarkii)
Journal of Hazardous Materials, 54: 1-13
BriggsReed, L. M., Heagler, M. G. 1997. A
Comparative Analysis of Lead Concentrations in
Purged and Unpurged Crayfish (Procambarus
clarkii): The Significance of Digestive Tract
Removal Prior to Consumption by Humans.
Microchemical Journal, 55(1): 122-128.
Çevik, U., Damla, N., Kobya, A. I., Bulut, V. N., Duran,
C., Dalgıc, G., Bozacı, R. 2008. Assessment of
Metal Element Concentrations in Mussel (M.
galloprovincialis) in Eastern Black Sea, Turkey.
Journal of Hazardous Materials, 160(2-3): 396-401.
Dickson, G. W., Briese, L. A., Giesy, J. P. 1979. Tissue
Metal Concentrations in 2 Crayfish Species
Cohabiting a Tennessee Cave Stream. Oecologia,
44(1): 8-12.
Erdoğrul, Ö., Tosyalı, C., Erbilir, F. 2005.
Kahramanmaraş’ ta Yetişen Bazı Sebzelerde Demir,
Bakır, Mangan, Kadmiyum ve Nikel Düzeyleri.
KSÜ. Fen ve Mühendislik Dergisi, 8(2): 27-29.
Finerty, M. W., Madden, J. D., Feagley, S. E., Grodner,
R. M. 1990. Effect of Environs and Seasonality on
Metal Residues in Tissues of Wild and Pond-Raised
Crayfish in Southern Louisiana. Archives of
Environmental Contamination and Toxicology,
19(1): 94-100.
Guner, U. 2007. Freshwater Crayfish Astacus
leptodactylus (Eschscholtz, 1823) Accumulates and
Depurates Copper. Environmental Monitoring and
Assessment, 133(1-3): 365-369.
Guner, U. 2010. Cadmium Bioaccumulation and
Depuration by Freshwater Crayfish, Astacus
leptodactylus. Ekoloji, 19(77): 23-28.
Hagen, J. P., Sneddon, J. 2009. Determination of
Copper, Iron, and Zinc in Crayfish (Procambrus
clarkii) by Inductively Coupled Plasma-Optical
Emission Spectrometry. Spectroscopy Letters, 42(1):
58-61. Hothem, R. L., Bergen, D. R., Bauer, M. L., Crayon, J.
J., Meckstroth, A. M. 2007. Mercury and Trace
Elements in Crayfish from Northern California.
Bulletin of Environmental Contamination and
Toxicology, 79(6): 628-632.
Kara, Y., Zeytunluoglu, A. 2007. Bioaccumulation of
Toxic Metals (Cd and Cu) by Groenlandia densa
(L.) Fourr. Bulletin of Environmental Contamination
and Toxicology, 79(6): 609-612.
Khan, A. T., Forester, D. M., Mielke, H. W. 1995.
Heavy-Metal Concentrations in 2 Populations of
Crayfish. Veterinary and Human Toxicology, 37(5):
426-428.
King, H. M., Baldwin, D. S., Rees, G. N., McDonald, S.
1999. Apparent Bioaccumulation of Mn Derived
from Paper-Mill Effluent by the Freshwater Crayfish
Cherax destructor the Role of Mn Oxidising
Bacteria. The Science of the Total Environment 226:
261-267.
Kouba, A., Buřič, M., Kozák, P. 2009. Bioaccumulation
and Effects of Heavy Metals in Crayfish: A Review.
Water, Air, & Soil Pollution, 211(1-4): 5-16.
Kurun, A., Balkıs, N., Erkan, M., Balkıs, H., Aksu, A.,
Erşan, M. S. 2009. Total Metal Levels in Crayfish
Astacus leptodactylus (Eschscholtz, 1823), and
Surface Sediments in Lake Terkos, Turkey.
Environmental Monitoring and Assessment, 169(1-
4): 385-395.
Lopez, F. J. S., Garcia, M. D. G., Vidal, J. L. M.,
Aguilera, P. A., GarridoFrenich, A. 2004.
Assessment of Metal Contamination in Doñana
National Park (Spain) Using Crayfish (Procamburus
clarkii). Environmental Monitoring and Assessment,
93: 17-29.
Madigosky, S., Alvarezhernandez, X., Glass, J. 1991.
Lead, Cadmium, and Aluminum Accumulation in
the Red Swamp Crayfish Procambarus clarkii G.
Collected from Roadside Drainage Ditches in
Louisiana. Archives of Environmental
Contamination and Toxicology 20(2): 253-258.
Morales, E., Shrestha, K. 1977. Copper, Iron and Zinc
Levels in Crayfish, Penaeus-brasiliensis, of
Caribbean Sea, Northeast of Margarita, Venezuela.
Acta Cientifica Venezolana, 28: 150-150.
Moss, J. C., Hardaway, C. J., Richert, J. C., Sneddon, J.
2010. Determination of Cadmium Copper, Iron,
Nickel, Lead and Zinc in Crawfish (Procambrus
clarkii) by Inductively Coupled Plasma Optical
Emission Spectrometry: A Study over the 2009
Season in Southwest Louisiana. Microchemical
Journal, 95(1): 5-10.
Naghshbandi, N., Zare, S., Heidari, R., Razzaghzadeh,
S. 2007. Concentration of Heavy Metal in Different
Tissues of Astacus leptodactylus from Aras Dam of
Iran. Pakistan Journal of Biyological Science,
10(21): 3956-3959.
Nakayama, S. M. M., Ikenaka, Y., Muzandu, K.,
Choongo, K., Oroszlany, B., Teraoka, H., Mizuno,
N., Ishizuka, M. 2010. Heavy Metal Accumulation
in Lake Sediments, Fish (Oreochromis niloticus and
Serranochromis thumbergi), and Crayfish (Cherax
quadricarinatus) in Lake Itezhi-Tezhi and Lake
Kariba, Zambia. Archives of Environmental
Contamination and Toxicology, 59(2): 291-300.
Peng, K., Luo, C., Lou, L., Li, X., Shen, Z. 2008.
Bioaccumulation of Heavy Metals by the Aquatic
Plants Potamogeton pectinatus L. And Potamogeton
malaianus miq. And Their Potential Use for
Contamination Indicators and in Wastewater
Treatment. Science of The Total Environment,
392(1): 22-29.
Richert, J. C., Sneddon, J. 2008. Determination of
Heavy Metals in Crawfish (Procambrus clarkii) by
Inductively Coupled Plasma–Optical Emission
Spectrometry: A Study over the Season in Southwest
Louisiana. Analytical Letters, 41(17): 3198-3209.
Rinconleon, F., Zureracosano, G., Pozolora, R. 1988.
Lead and Cadmium Concentrations in Red Crayfish
(Procambarus clarkii, G) in the Guadalquivir River
Marshes (Spain). Archives of Environmental
Contamination and Toxicology, 17(2): 251-256.
Santerre, C. R., Bush, P. B., Xu, D. H., Levis, G. W.,
Davis, J. T., Grodner, R. M., Ingram, R., Wei, C. I.,
Hinshaw, J. M. 2001. Metal Residues in Farm-
Raised Channel Catfish, Rainbow Trout and Red
Swamp Crayfish from the Southern U.S. Journal of
Food Science, 66(2) : 270-273.
Schilderman, P. A. E. L., Moonen, E. J. C., Maas, L.
M., Welle, I., Kleinjans, J. C. S. 1999. Use of
Crayfish in Biomonitoring Studies of Environmental
Pollution of the River Meuse. Ecotoxicology and
Environmental Safety 44: 241-252.
Schmitt, C. J., Brumbaugh, W. G., Linder, G. L., Hinck,
J. E. 2006. A Screening-Level Assessment of Lead,
Cadmium, and Zinc in Fish and Crayfish from
Northeastern Oklahoma, USA. Environmental
Geochemistry and Health, 28(5): 445-471.
Stinson, M. D., Eaton, D. L. 1983. Concentrations of
Lead, Cadmium, Mercury, and Copper in the
Crayfish (Pacifasticus-leniusculus) Obtained from a
Lake Receiving Urban Runoff. Archives of
Environmental Contamination and Toxicology,
12(6): 693-700.
Suárez-Serrano, A., Alcaraz, C., Ibáñez, C., Trobajo, R.,
Barata, C. 2010. Procambarus clarkii as a
Bioindicator of Heavy Metal Pollution Sources in
the Lower Ebro River and Delta. Ecotoxicology and
Environmental Safety, 73(3): 280-286. Taylor, R. M., Watson, G. D., Alikhan, M. A. 1995.
Comparative Sublethal and Lethal Acute Toxicity of
Copper to the Fresh-Water Crayfish, Cambarusrobustus
(Cambaridae, Decapoda, Crustacea) from
an Acidic Metal-Contaminated Lake and a
Circumneutral Uncontaminated Stream. Water
Research, 29(2): 401-408.
Tunca, E. 2011. Yeniçağa (Bolu) Gölü Su, Sediment ve
Tatlisu Istakozunda (Astacus Leptodactylus,
Eschscholtz, 1823) Bazi Ağir Metal Birikimlerinin
Mevsimsel Değişimi. Ankara Üniversitesi, Fen. Bil.
Ens., Hidrobiyoloji ABD, Doktora Tezi 72 s.
Üçüncü, E. 2011. Su Mercimeği (Lemna minor
Linneaus 1753) Kullanarak Farklı
Konsantrasyonlardaki Ağır Metal (Cu, Cr, Pb)
Karışımlarının Laboratuvar Ortamında
Biyoremediasyonu. Ankara Üniversitesi, Fen. Bil.
Ens., Hidrobiyoloji ABD, Yüksek Lisans Tezi 84 s.
Vioquefernandez, A., Dealmeida, E., Ballesteros, J.,
Garciabarrera, T., Gomezariza, J., Lopezbarea, J.
2007. Doñana National Park Survey Using Crayfish
(Procambarus clarkii) as Bioindicator: Esterase
Inhibition and Pollutant Levels. Toxicology Letters,
168(3): 260-268.
Yilmaz, A., Yilmaz, L. 2007. Influences of Sex and
Seasons on Levels of Heavy Metals in Tissues of
Green Tiger Shrimp (Penaeus semisulcatus De
Hann, 1844). Food Chemistry, 101(4): 1664-1669.
Young, L. B., Harvey, H. H. 1991. Metal
Concentrations in Crayfish Tissues in Relation to
Lake Ph and Metal Concentrations in Water and
Sediments. Canadian Journal of Zoology-Revue
Canadienne De Zoologie, 69(4): 1076-1082.

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