Research Article
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Year 2020, Volume: 15 Issue: 1, 37 - 34, 03.03.2020

Abstract

References

  • [1] Lagler KF. Freshwater Fishery Biology, WM.C. Brown Co., Publ., Dubuque, Iowa, 1956.
  • [2] Chugunova NI. Age and Growth Studies in Fish, Israel Prog. Sci. Transl. No: 610, Natl. Sci. Found Washington, D.C., 1963.
  • [3] Brothers EB, 1987. Methodological approaches to the examination of otoliths in aging studies. In: Age and Growth of Fish, Summertfelt, R.C. and G.E. Hall (Eds.), Iowa State University Press, 319-330.
  • [4] Çelikkale MS. Balık Biyolojisi, Karadeniz Teknik Üniversitesi Sürmene Deniz Bilimleri ve Teknolojisi Yüksekokulu Yayınları, No:101, Trabzon, 1991.
  • [5] Erkoyuncu İ. Balıkçılık Biyolojisi ve Populasyon Dinamiği, Ondokuz Mayıs Üniversitesi. Yayınları, No: 95, Sinop, 1995.
  • [6] Şen D, Aydın R, Çalta M. Relationships between fish length and otolith length in the population Capoeta capoeta umbla (Heckel, 1843) of inhabiting Hazar Lake, Elazığ, Turkey. Archives of Polish Fisheries, 2001; 9: 267-272. [7] Aydın R, Çalta M, Şen D. Age and growth of Capoeta trutta (Pisces: Cyprinidae) from Keban Dam Lake, Turkey. Archives of Polish Fisheries, 2003; 11(2): 237-243. [8] Eroğlu M, Şen D. Otolith size-total length relationship in spiny eel, Mastacembelus mastacembalus (Banks & Solander, 1794) inhabiting in Karakaya Dam Lake. Journal of FisheriesSciences.com, 2009; 3: 342-351.
  • [9] Geldiay R, Balık S. Türkiye Tatlısu Balıkları, Ege Üniversitesi Fen Fakültesi Kitaplar Serisi, No: 46, Bornova/İzmir, 2009.
  • [10] Miller GL, Nelson R. Goldeye, Hiodon alosoides, in Lake Oahe: Abundance, Age, Growth, Maturity, Food and the Fishery, 1963-69. Technical Papers of the U. S. Fish and Wildlife Service. United States Department of the Interior Fish of Fish and Wildlife Service, Washington, pp: 13, 1974.
  • [11] Nelson WR. Age, Growth, and Maturity of Thirteen Species of Fish from Lake Oahe during the Early Years of Impoundment, 1963-68. Technical Papers of the U. S. Fish and Wildlife Service. United States Department of the Interior Fish and Wildlife Service, Washington, pp: 30, 1974.
  • [12] Starostka VJ, Nelson WR. Age, Growth, Sexual Maturity, and Food of Channel Cat-fish in Central Lake Oahe, 1968-69. Technical Papers of the U. S. Fish and Wildlife Service. United States Department of The Interior Fish and wildlife Service Washington, 1974.
  • [13] Tanyolaç J. Age and Growth of Carp, Cyprinus carpio L. in Lake Eymir, Ankara. Communications de la Faculte des Sciences de I’ Universite d’Ankara, Tome 23, Serie, C3: zoologie, pp: 12, 1979.
  • [14] Duncan KW. On the back-calculation of fish lengths; modifications and extensions to the Frasier-Lee equation. Journal of Fish Biology, 1980; 16: 725-730.
  • [15] Bartlett JR, Randerson PF, Williams R, Ellis DM. The use of analysis of covariance in the back-calculation of growth in fish. Journal of Fish Biology, 1984; 24: 201-213.
  • [16] Francis RICC. (1990). Back-calculation of fish length: a critical review. Journal of Fish Biology, 1990; 36: 883-902.
  • [17] Zivkov M. Critique of proportional hypotheses and methods for back-calculation of fish growth, Environmental Biology of Fishes, 1996; 46: 309-320.
  • [18] Vigliola L, Meekan MG. The back-calculation of fish growth from otoliths. In tropical fish otoliths: information for assessment, management and ecology. Edited by B.S. Green, B.D. Mapstone, G. Carlos, and G.A. Begg. Springer, Heidelberg, Germany, 2009, pp. 174–211.
  • [19] Vigliola L, Harmelin-Vivien M., Meekan MG. Comparison of techniques of back-calculation of growth and settlement marks from the otoliths of three species of Diplodus from the Mediterranean Sea. Canadian Journal of Fisheries and Aquatic Sciences, 2000; 57(6): 1291-1299.
  • [20] Wilson JA, Vigliola L, Meekan MG. The back-calculation of size from otoliths: validation and comparison of models at an individual level. Journal of Experimental Marine Biology and Ecology, 2009; 368: 9-21.
  • [21] Çalta M, Ural MŞ. Acute toxicity of the synthetic pyrethroid deltamethrin to young mirror carp, Cyprinus carpio. Fresenius Environmental Bulletin, 2004; 13: 1179-1183.
  • [22] Ural MŞ, Çalta M. Acute toxicity of dichlorvos (DDVP) to fingerling mirror carp, Cyprinus carpio L. Bulletin of Environmental Contamination and Toxicology, 2005; 75: 368-373. [23] Güç G. Keban Baraj Gölü (Elazığ)’nde yaşayan aynalı sazan (Cyprinus carpio Linnaeus, 1758)’ın üreme biyolojisi. Fırat Üniversitesi Fen Bilimleri Enstitüsü, Yüksek Lisans Tezi, 59 s., Elazığ, 2006.
  • [24] Sayın B, Çalta M. Keban Baraj Gölü'nde yaşayan aynalı sazan (Cyprinus carpio Linnaeus, 1758)’nın otolit biyometrisi. Fırat Üniversitesi Fen Bilimleri Dergisi, 2017; 29: 27-32.
  • [25] Şen D, Yılayaz Ö. Keban Baraj Gölü’nde yaşayan Barbus rajanorum mystaceus (Heckel, 1843)’ ün geri hesaplama yöntemiyle uzunluklarının belirlenmesi. G.Ü. Gazi Eğitim Fakültesi Dergisi, 2001; 21(1): 53-57.
  • [26] Şen D, Aydın R. Keban Baraj Gölü’nde yaşayan Acanthobrama marmid Heckel, 1843’ün geri hesaplama metodu ile uzunluklarının belirlenmesi. G.Ü. Gazi Eğitim Fakültesi Dergisi, 2001; 21(1): 47-51.
  • [27] Teksar CK, Çalta M. Back-Calculation of Total Lengths of Luciobarbus mystaceus (Pallas, 1814) from Scale and Otolith Measurements. Turkish Journal of Science and Technology, 2019; 14(1): 33-36.
  • [28] Şen D, Aydın R, Çalta M. Back-calculation of fork lengths of Capoeta capoeta umbla (Pisces: Cyprinidae) from otolith lengths. Pakistan Journal of Biological Sciences, 2002; 5(4): 506-508.
  • [29] Fraser CM. Growth of spring salmon. Transactions of the Pacific Fisheries Society, 1916; 29-39. Fraser CM. Growth of spring salmon. Transactions of the Pacific Fisheries Society, 1916; 29-39.
  • [30] Lee RM. A review of the methods of age and growth determination in fishes by means of scales. Fisheries Investigations, Series II, Marine Fisheries, Great Britain Ministry of Agriculture, Fisheries and Food, 1920; 4(2): 1-35.
  • [31] Dahl K. The scales of the herring as a means of determining age, growth and migration. Reports on Norwegian Fishery and Marine Investigations, 1907; 2(6): 1-39.
  • [32] Lea E. On the methods used in the herring investigations. Publications de Circonstance, Conseil Permanent International pour I’Exploration de la Mer. 1910; 53: 7-25.

The Estimation of Total Lengths in the Earlier Ages of Mirror Carp (Cyprinus carpio L., 1758) Using Back-Calculation Methods

Year 2020, Volume: 15 Issue: 1, 37 - 34, 03.03.2020

Abstract

: In this study, the total lengths of the smaller mirror carp, that could not be caught, were estimated with the back-calculation methods using the scale and otolith lengths of larger fish. For this purpose, 50 fish samples were captured from Keban Dam Lake during October-November 2017 and October-December 2018. They were 4-9 in ages, 31.2-47.2 cm in total length and 442.5-1497.8 g in weight. The age of fish and the lengths of each age ring on scale and otolith were determined by using LAS V4.8 image analysis program attached to Leica S8APO microscope. The total lengths of fishes were calculated using Fraser-Lee and Dahl-Lea back-calculation equations for scale and otolith respectively. The mean total lengths calculated for all age groups from scale radius lengths and otolith lengths were L1:16.1, L2:21.3, L3:27.3, L4:30.5, L5:35.7, L6:36.7, L7:42.9, L8:45.3 ve L9: 45.9 cm and L1:14.2, L2:17.8, L3:22.8, L4:25.5, L5:33.1, L6:36.0, L7:41.0, L8:41.4 ve L9:44.0 cm respectively. In all age groups, total lengths of fish calculated from otolith lengths were found lower than total lengths of fish calculated from scale lengths.

References

  • [1] Lagler KF. Freshwater Fishery Biology, WM.C. Brown Co., Publ., Dubuque, Iowa, 1956.
  • [2] Chugunova NI. Age and Growth Studies in Fish, Israel Prog. Sci. Transl. No: 610, Natl. Sci. Found Washington, D.C., 1963.
  • [3] Brothers EB, 1987. Methodological approaches to the examination of otoliths in aging studies. In: Age and Growth of Fish, Summertfelt, R.C. and G.E. Hall (Eds.), Iowa State University Press, 319-330.
  • [4] Çelikkale MS. Balık Biyolojisi, Karadeniz Teknik Üniversitesi Sürmene Deniz Bilimleri ve Teknolojisi Yüksekokulu Yayınları, No:101, Trabzon, 1991.
  • [5] Erkoyuncu İ. Balıkçılık Biyolojisi ve Populasyon Dinamiği, Ondokuz Mayıs Üniversitesi. Yayınları, No: 95, Sinop, 1995.
  • [6] Şen D, Aydın R, Çalta M. Relationships between fish length and otolith length in the population Capoeta capoeta umbla (Heckel, 1843) of inhabiting Hazar Lake, Elazığ, Turkey. Archives of Polish Fisheries, 2001; 9: 267-272. [7] Aydın R, Çalta M, Şen D. Age and growth of Capoeta trutta (Pisces: Cyprinidae) from Keban Dam Lake, Turkey. Archives of Polish Fisheries, 2003; 11(2): 237-243. [8] Eroğlu M, Şen D. Otolith size-total length relationship in spiny eel, Mastacembelus mastacembalus (Banks & Solander, 1794) inhabiting in Karakaya Dam Lake. Journal of FisheriesSciences.com, 2009; 3: 342-351.
  • [9] Geldiay R, Balık S. Türkiye Tatlısu Balıkları, Ege Üniversitesi Fen Fakültesi Kitaplar Serisi, No: 46, Bornova/İzmir, 2009.
  • [10] Miller GL, Nelson R. Goldeye, Hiodon alosoides, in Lake Oahe: Abundance, Age, Growth, Maturity, Food and the Fishery, 1963-69. Technical Papers of the U. S. Fish and Wildlife Service. United States Department of the Interior Fish of Fish and Wildlife Service, Washington, pp: 13, 1974.
  • [11] Nelson WR. Age, Growth, and Maturity of Thirteen Species of Fish from Lake Oahe during the Early Years of Impoundment, 1963-68. Technical Papers of the U. S. Fish and Wildlife Service. United States Department of the Interior Fish and Wildlife Service, Washington, pp: 30, 1974.
  • [12] Starostka VJ, Nelson WR. Age, Growth, Sexual Maturity, and Food of Channel Cat-fish in Central Lake Oahe, 1968-69. Technical Papers of the U. S. Fish and Wildlife Service. United States Department of The Interior Fish and wildlife Service Washington, 1974.
  • [13] Tanyolaç J. Age and Growth of Carp, Cyprinus carpio L. in Lake Eymir, Ankara. Communications de la Faculte des Sciences de I’ Universite d’Ankara, Tome 23, Serie, C3: zoologie, pp: 12, 1979.
  • [14] Duncan KW. On the back-calculation of fish lengths; modifications and extensions to the Frasier-Lee equation. Journal of Fish Biology, 1980; 16: 725-730.
  • [15] Bartlett JR, Randerson PF, Williams R, Ellis DM. The use of analysis of covariance in the back-calculation of growth in fish. Journal of Fish Biology, 1984; 24: 201-213.
  • [16] Francis RICC. (1990). Back-calculation of fish length: a critical review. Journal of Fish Biology, 1990; 36: 883-902.
  • [17] Zivkov M. Critique of proportional hypotheses and methods for back-calculation of fish growth, Environmental Biology of Fishes, 1996; 46: 309-320.
  • [18] Vigliola L, Meekan MG. The back-calculation of fish growth from otoliths. In tropical fish otoliths: information for assessment, management and ecology. Edited by B.S. Green, B.D. Mapstone, G. Carlos, and G.A. Begg. Springer, Heidelberg, Germany, 2009, pp. 174–211.
  • [19] Vigliola L, Harmelin-Vivien M., Meekan MG. Comparison of techniques of back-calculation of growth and settlement marks from the otoliths of three species of Diplodus from the Mediterranean Sea. Canadian Journal of Fisheries and Aquatic Sciences, 2000; 57(6): 1291-1299.
  • [20] Wilson JA, Vigliola L, Meekan MG. The back-calculation of size from otoliths: validation and comparison of models at an individual level. Journal of Experimental Marine Biology and Ecology, 2009; 368: 9-21.
  • [21] Çalta M, Ural MŞ. Acute toxicity of the synthetic pyrethroid deltamethrin to young mirror carp, Cyprinus carpio. Fresenius Environmental Bulletin, 2004; 13: 1179-1183.
  • [22] Ural MŞ, Çalta M. Acute toxicity of dichlorvos (DDVP) to fingerling mirror carp, Cyprinus carpio L. Bulletin of Environmental Contamination and Toxicology, 2005; 75: 368-373. [23] Güç G. Keban Baraj Gölü (Elazığ)’nde yaşayan aynalı sazan (Cyprinus carpio Linnaeus, 1758)’ın üreme biyolojisi. Fırat Üniversitesi Fen Bilimleri Enstitüsü, Yüksek Lisans Tezi, 59 s., Elazığ, 2006.
  • [24] Sayın B, Çalta M. Keban Baraj Gölü'nde yaşayan aynalı sazan (Cyprinus carpio Linnaeus, 1758)’nın otolit biyometrisi. Fırat Üniversitesi Fen Bilimleri Dergisi, 2017; 29: 27-32.
  • [25] Şen D, Yılayaz Ö. Keban Baraj Gölü’nde yaşayan Barbus rajanorum mystaceus (Heckel, 1843)’ ün geri hesaplama yöntemiyle uzunluklarının belirlenmesi. G.Ü. Gazi Eğitim Fakültesi Dergisi, 2001; 21(1): 53-57.
  • [26] Şen D, Aydın R. Keban Baraj Gölü’nde yaşayan Acanthobrama marmid Heckel, 1843’ün geri hesaplama metodu ile uzunluklarının belirlenmesi. G.Ü. Gazi Eğitim Fakültesi Dergisi, 2001; 21(1): 47-51.
  • [27] Teksar CK, Çalta M. Back-Calculation of Total Lengths of Luciobarbus mystaceus (Pallas, 1814) from Scale and Otolith Measurements. Turkish Journal of Science and Technology, 2019; 14(1): 33-36.
  • [28] Şen D, Aydın R, Çalta M. Back-calculation of fork lengths of Capoeta capoeta umbla (Pisces: Cyprinidae) from otolith lengths. Pakistan Journal of Biological Sciences, 2002; 5(4): 506-508.
  • [29] Fraser CM. Growth of spring salmon. Transactions of the Pacific Fisheries Society, 1916; 29-39. Fraser CM. Growth of spring salmon. Transactions of the Pacific Fisheries Society, 1916; 29-39.
  • [30] Lee RM. A review of the methods of age and growth determination in fishes by means of scales. Fisheries Investigations, Series II, Marine Fisheries, Great Britain Ministry of Agriculture, Fisheries and Food, 1920; 4(2): 1-35.
  • [31] Dahl K. The scales of the herring as a means of determining age, growth and migration. Reports on Norwegian Fishery and Marine Investigations, 1907; 2(6): 1-39.
  • [32] Lea E. On the methods used in the herring investigations. Publications de Circonstance, Conseil Permanent International pour I’Exploration de la Mer. 1910; 53: 7-25.
There are 29 citations in total.

Details

Primary Language English
Journal Section TJST
Authors

Can Kaan Teksar 0000-0003-0554-2725

Metin Çalta 0000-0002-1652-8972

Publication Date March 3, 2020
Submission Date February 13, 2020
Published in Issue Year 2020 Volume: 15 Issue: 1

Cite

APA Teksar, C. K., & Çalta, M. (2020). The Estimation of Total Lengths in the Earlier Ages of Mirror Carp (Cyprinus carpio L., 1758) Using Back-Calculation Methods. Turkish Journal of Science and Technology, 15(1), 37-34.
AMA Teksar CK, Çalta M. The Estimation of Total Lengths in the Earlier Ages of Mirror Carp (Cyprinus carpio L., 1758) Using Back-Calculation Methods. TJST. March 2020;15(1):37-34.
Chicago Teksar, Can Kaan, and Metin Çalta. “The Estimation of Total Lengths in the Earlier Ages of Mirror Carp (Cyprinus Carpio L., 1758) Using Back-Calculation Methods”. Turkish Journal of Science and Technology 15, no. 1 (March 2020): 37-34.
EndNote Teksar CK, Çalta M (March 1, 2020) The Estimation of Total Lengths in the Earlier Ages of Mirror Carp (Cyprinus carpio L., 1758) Using Back-Calculation Methods. Turkish Journal of Science and Technology 15 1 37–34.
IEEE C. K. Teksar and M. Çalta, “The Estimation of Total Lengths in the Earlier Ages of Mirror Carp (Cyprinus carpio L., 1758) Using Back-Calculation Methods”, TJST, vol. 15, no. 1, pp. 37–34, 2020.
ISNAD Teksar, Can Kaan - Çalta, Metin. “The Estimation of Total Lengths in the Earlier Ages of Mirror Carp (Cyprinus Carpio L., 1758) Using Back-Calculation Methods”. Turkish Journal of Science and Technology 15/1 (March 2020), 37-34.
JAMA Teksar CK, Çalta M. The Estimation of Total Lengths in the Earlier Ages of Mirror Carp (Cyprinus carpio L., 1758) Using Back-Calculation Methods. TJST. 2020;15:37–34.
MLA Teksar, Can Kaan and Metin Çalta. “The Estimation of Total Lengths in the Earlier Ages of Mirror Carp (Cyprinus Carpio L., 1758) Using Back-Calculation Methods”. Turkish Journal of Science and Technology, vol. 15, no. 1, 2020, pp. 37-34.
Vancouver Teksar CK, Çalta M. The Estimation of Total Lengths in the Earlier Ages of Mirror Carp (Cyprinus carpio L., 1758) Using Back-Calculation Methods. TJST. 2020;15(1):37-4.