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A Re-assessment of the Growth Index for Quantifying Growth in Length of Fish with Application to Roach, Rutilus rutilus (L., 1758)

Yıl 2016, , 49 - 58, 20.04.2016
https://doi.org/10.17216/LimnoFish-5000127509

Öz

Comparative assessments of mean growth rates in length across fish populations are useful for gaining insights into the conservation, management and control of species, especially at larger scales of distribution. The purpose of this study was to refine the Growth Index (GI), a useful measure for comparing species-specific growth rates in fish. Using literature-based length-at-age data for 299 populations of roach Rutilus rutilus, a widespread freshwater fish of Eurasian distribution, the GI was calibrated and the previously semi-quantitatively defined ‘slow’, ‘average’ and ‘fast’ growth categories were quantitatively re-defined. A threshold value of 114% GI separated ‘slow’ from ‘average’ growth populations and of 155% GI ‘average’ from ‘fast’ growth populations. Slow growth rates were identified along the entire latitudinal range of the species’ distribution, whereas below ≈37ºN all types of growth were encountered, indicating the importance of waterbody-related environmental factors in affecting growth in roach. Given the relatively widespread usage of the GI, species-specific calibrations leading to improved definition of corresponding growth bands are recommended for other widespread fish species of both economic value and ecological concern.

Kaynakça

  • Anderson MJ. 2001. Permutation tests for univariate or multivariate analysis of variance and regression. Can J Fish Aquat Sci. 58(3):626–639. doi: 10.1139/f01-004
  • Anderson MJ, Robinson J. 2001. Permutation tests for linear models. Aust NZ J Stat. 43(1):75–88. doi: 10.1111/1467-842X.00156
  • Anderson MJ, Gorley RN, Clarke KR. 2008. PERMANOVA+ for PRIMER: Guide to software and statistical methods. PRIMER-E Ltd., Plymouth, UK.
  • Angélibert S, Brosse S, Dauba F, Lek S. 1999. Change in roach (Rutilus rutilus L.) population structure induced on draining a large reservoir. CR Acad Sci III-Vie. 322(4):331–338. doi: 10.1016/S0764-4469(99)80069-9
  • Arzbach H-H. 1997. Untersuchungen zur allgemeinen Ökologie, Radioökologie, und Trophodynamik am Fischbestand des Plußsees in Schleswig-Holstein. PhD Thesis, University of Hamburg, Germany.
  • Auvinen H. 1987. Growth, mortality and management of whitefish (Coregonus lavaretus L. s.l.), vendace (Coregonus albula L.), roach (Rutilus rutilus L.) and perch (Perca fluviatilis L.) in Lake Pyhäjärvi (Karelia). Finn Fish Res. 8(1):38-47.
  • Banks JW. 1970. Observations on the fish population of Rostherne Mere, Cheshire. Fld Stud 3(2):357–379.
  • Baranova VV. 1984. Growth of roach, Rutilus rutilus (Cyprinidae), in the Reservoirs of the Upper Volga Basin. Vopr Ikhtiol. 24:253–257.
  • Başkurt S, Emiroğlu Ö, Tarkan AS, Vilizzi L. 2015. The life-history traits of widespread freshwater fish species: the case of roach Rutilus rutilus (Linnaeus, 1758) (Pisces: Teleostei) in water bodies at the southern limits of distribution. Zool Middle East. 61(4): 339–348. doi: 10.1080/09397140.2015.1095516
  • Beardsley H, Britton JR. 2012. Contribution of temperature and nutrient loading to growth rate variation of three cyprinid fishes in a lowland river. Aquat Ecol. 46(1):146–152. doi: 10.1007/s10452-011-9387-3
  • Beddington JR, Kirkwood GP. 2005. The estimation of potential yield and stock status using life-history parameters. Phil Trans Roy Soc B. 360(1453):163–170. doi: 10.1098/rstb.2004.1582
  • Bewick V, Cheek L, Ball J. 2004. Statistics review 13: Receiver operating characteristic curves. Crit Care. 8(6):508–512. doi: 10.1186/cc3000
  • Britton JR, Davies GD, Pegg J. 2012. Spatial variation in the somatic growth rates of European barbel Barbus barbus: a UK perspective. Ecol Freshwat Fish. 22(1):21–29. doi: 10.1111/j.1600-0633.2012.00588.x
  • Britton JR. 2007. Reference data for evaluating the growth of common riverine fishes in the UK. J Appl Ichthyol. 23(5):555–560. doi: 10.1111/j.1439-0426.2007.00845.x
  • Burrough RJ, Kennedy CR. 1979. The occurrence and natural alleviation of stunting in a population of roach, Rutilus rutilus (L.). J Fish Biol. 15(1):93–109. doi: 10.1111/j.1095-8649.1979.tb03574.x
  • Büsser P, Tschumi PA. 1987. Nahrungsökologie der Rotaugen (Rutilus rutilus L.) im Litoral und Pelagial des Bielersees. Swiss J Hydrol. 49(1):62–74. doi: 10.1007/BF02540380
  • Chitravadivelu K. 1974. Growth, age composition, population density, mortality, production and yield of Alburnus alburnus (Linnaeus, 1758) and Rutilus rutilus (Linnaeus, 1758) in the inundation region of Danube – Žofín. Acta U Carol Biol. 1972:1–76.
  • Copp GH, Bianco PG, Bogutskaya NG, Erős T, Falka I, Ferreira MT, Fox MG, Freyhof J, Gozlan RE, Grabowska J, Kováč V, Moreno-Amich R, Naseka AM, Peňáz M, Povž M, Przybylski M, Robillard M, Russell IC, Stakėnas S, Šumer S, Vila-Gispert A, Wiesner C. 2005. To be, or not to be, a non-native freshwater fish? J Appl Ichthyol. 21(4):242–262. doi: 10.1111/j.1439-0426.2005.00690.x
  • Copp GH, Britton JR, Cucherousset J, García-Berthou E, Kirk R, Peeler EJ, Stakėnas S. 2009. Voracious invader or benign feline? A review of the environmental biology of European catfish Silurus glanis in its native and introduced range. Fish Fish. 10(3):252–282. doi: 10.1111/j.1467-2979.2008.00321.x
  • Copp GH, Fox MG, Przybylski M, Godinho FN, Vila-Gispert A. 2004. Life-time growth patterns of pumpkinseed Lepomis gibbosus introduced to Europe, relative to native North American populations. Folia Zool. 53(3):237–254.
  • Cowx IG. 1988. Distribution and variation in the growth of roach, Rutilus rutilus (L.), and dace, Leuciscus leuciscus (L.), in a river catchment in south‐west England. J Fish Biol. 33(1):59–72. doi: 10.1111/j.1095-8649.1988.tb05448.x
  • Cowx IG. 1989. Interaction between the roach, Rutilus rutilus, and dace, Leuciscus leuciscus, populations in a river catchment in south‐west England. J Fish Biol. 35(sA):279–284. doi: 10.1111/j.1095-8649.1989.tb03071.x
  • Cragg-Hine D, Jones JW. 1969. The growth of dace Leuciscus leuciscus (L.), roach Rutilus rutilus (L.) and chub Squalius cephalus (L.) in Willow Brook, Northamptonshire. J Fish Biol. 1(1):59–82. doi: 10.1111/j.1095-8649.1969.tb03845.x
  • Cryer M, Peirson G, Townsend CR. 1986. Reciprocal interactions between roach, Rutilus rutilus, and zooplankton in a small lake: prey dynamics and fish growth and recruitment. Limnology and Oceanography. 31(5):1022–1038. doi: 10.4319/lo.1986.31.5.1022
  • Emiroğlu Ö, Tarkan AS, Top N, Başkurt S, Sülün Ş. 2012. Growth and life history traits of a highly exploited population of non-native gibel carp, Carassius gibelio from a large eutrophic lake (Lake Uluabat, NW Turkey): is reproduction the key factor for establishment success? Turk J Fish Aquat Sci. 12(4):925–936. doi: 10.4194/1303-2712-v12_4_20
  • Epler P, Popek W, Luszczek-Trojnar E, Drag-Kozak E, Szczerbik P, Socha M. 2005. Age and growth rate of the roach (Rutilus rutilus L.) from the Solina and the Tresna (Zywieckie Lake) dam reservoires [sic]. Acta Sci Polon Pisc. 4(1–2):59–70.
  • Ergüden S(A), Ergüden D, Göksu MZL. 2008. Seyhan Baraj Göl'ündeki (Adana) kızılgöz (Rutilus rutilus L., 1758)’ün büyüme özellikleri. J FisheriesSciences.com. 2(1):77–87. [In Turkish with an abstract in English] doi: 10.3153/jfscom.2008008
  • Estlander S, Nurminen L, Olin M, Vinni M, Immonen S, Rask M, Ruuhijärvi J, Horppila J, Lehtonen H. 2010. Diet shifts and food selection of perch Perca fluviatilis and roach Rutilus rutilus in humic lakes of varying water colour. J Fish Biol. 77(1):241–256. doi: 10.1111/j.1095-8649.2010.02682.x
  • Frank S. 1962. A contribution to the growth of roach, rudd sand white bream in some waters of Czechoslovakia and Poland. Věst Česk Spol Zool. 26(1):65–74.
  • Frimodt C. 1995. Multilingual illustrated guide to the world’s commercial coldwater fish. Oxford: Blackwell Science 264 p.
  • Frisk MG, Miller TJ, Dulvy NK. 2005. Life histories and vulnerability to exploitation of elasmobranchs: inferences from elasticity, perturbation and phylogenetic analyses. J NW Atl Fish Sci. 37:27–45. doi: 10.2960/J.v35.m514
  • Froese R, Pauly D. (Eds). 2015. FishBase. World Wide Web electronic publication (version 04/2015); [accessed 2015 Jun 23]. Available at www.fishbase.org
  • García-Berthou E. 1999. Spatial heterogeneity in roach (Rutilus rutilus) diet among contrasting basins whitin a lake. Arch Hydrobiol. 146(2):239–256.
  • Gee AS. 1978. The distribution and growth of coarse fish in gravel-pit lakes in south-east England. Freshwat Biol. 8(4):385–394. doi: 10.1111/j.1365-2427.1978.tb01459.x
  • Goldspink CR. 1978. Comparative observations on the growth rate and year class strength of roach Rutilus rutilus L. in two Cheshire lakes, England. J Fish Biol. 12(5):421–433. doi: 10.1111/j.1095-8649.1978.tb04185.x
  • Goldspink CR. 1979. The population density, growth rate and production of roach Rutilus rutilus (L.) in Tjeukemeer, The Netherlands. J Fish Biol. 15(4):473–498. doi: 10.1111/j.1095-8649.1979.tb03632.x
  • Graham CT, Harrod C. 2009. Implications of climate change for the fishes of the British Isles. J Fish Biol. 74(6):1143–1205. doi: 10.1111/j.1095-8649.2009.02180.x
  • Griffiths D. 1997. The status of the Irish freshwater fish fauna: a review. J Appl Ichthyol. 13(1):9–13. doi: 10.1111/j.1439-0426.1997.tb00091.x
  • Guthruf J. 2002. Die biologie des Rotauges im Luganer-see (Kanton TI). BUWAL Mitteilungen zur Fischerei 74.
  • Hanel L. 1991. Růst čtyř druhů kaprovitých ryb v řece Berounce [Growth of four cyprinid fishes in the River Berounka, Central Bohemia]. Živočišná Výroba. 36(1):929–937. [In Czech with an abstract in English]
  • Harrod C, Griffiths D, McCarthy TK, Rosell R. 2001. The Irish pollan, Coregonus autumnalis: options for its conservation. J Fish Biol. 59(sA):339–355. doi: 10.1111/j.1095-8649.2001.tb01395.x
  • Hart P. 1971. The roach (Rutilus rutilus L.) in the River Nene, Northants and its relationship to four other fish species. In 5th British Conference Proceedings, University of Liverpool, UK, pp 138–145.
  • Hartley PHT. 1947. The coarse fishes of Britain. Freshwater Biological Association, Scientific Publication No. 12, Wray Castle, Ambleside, Westmorland.
  • Hellawell JM. 1972. The growth, reproduction and food of the roach Rutilus rutilus (L.) of River Lugg, Hertfordshire. J Fish Biol. 4(4):469–486. doi: 10.1111/j.1095-8649.1972.tb05696.x
  • Hickley P, Dexter FK. 1979. A comparative index of quantifying growth in length of fish. Fish Manage. 10(4):147–151. doi: 10.1111/j.1365-2109.1979.tb00270.x
  • Hofstede AE. 1974. Studies on growth, ageing and back-calculation of roach Rutilus rutilus (L.), and dace Leuciscus leuciscus (L.). In: Bagenal TB, The Ageing of Fish. Farnham, Unwin Brothers, pp. 137–147.
  • Holčík J. 1967a. Life history of the roach-Rutilus rutilus – (Linnaeus, 1758) in the Klíčava valley reservoir. Věst Česk Spol Zool. 31(2):213–229.
  • Holčík J. 1967b. Age, growth and life history of the roach-Rutilus rutilus carpathorossicus Vladikov, 1930, in the Orava valley reservoir. Zool Listy. 16(1):87–97.
  • Hornatkiewicz-Żbik ZA. 2003. Fecundity of roach Rutilus rutilus (L.) from the coastal lakes Gardno and Łebsko. Acta Sci Pol Pisc. 2(1):71–86.
  • Horppila J. 1994. The diet and growth of roach (Rutilus rutilus) in Lake Vesijärvi and possible changes in the course of biomanipulation. Hydrobiologia. 294(1):35–41. doi: 10.1007/BF00017623
  • Horppila J. 2000. The effect of length frequency ranges on the back-calculated lengths of roach, Rutilus rutilus (L.). Fish Res. 45(1):21–29. doi: 10.1016/S0165-7836(99)00099-5
  • Jamet JL, Desmolles F. 1994. Growth, reproduction and condition of roach (Rutilus rutilus (L.)), perch (Perca fluviatilis, L.) and ruffe (Gymnocephalus cernuus (L.)) in eutrophic Lake Aydat (France). Int Rev ges Hydrobiol Hydrogr. 79(2):305–322.
  • Kännö S. 1969. Growth and age distribution of some fish species in the river Panimionjoki, southwestern Finland. Ann. Zool. Fenn 6:87–93.
  • Kas’yanov AN, Izyumov YG, Kas’yanova NV. 1995. Growth of roach, Rutilus rutilus, in Russia and adjacent countries. J Ichthyol. 35(9):256–273.
  • Kas’yanov AN, Izyumov YG. 1995. Growth and morphology of roach, Rutilus rutilus, from Lake Pleshcheveyo after introduction of Dreissena polymorpha. J Ichthyol. 35:13–15.
  • Kempe O. 1962. The growth of the roach (Leuciscus rutilus L.) in some Swedish lakes. Rep Inst Freshwat. Res Drott. 44:42–104.
  • Ketmaier V, Bianco PG, Durand JD. 2008. Molecular systematics, phylogeny and biogeography of roaches (Rutilus, Teleostei, Cyprinidae). Mol Phylogen Evol. 49(1):362–367. doi: 10.1016/j.ympev.2008.07.012
  • Kozlovskiy SV. 1992. Observations of the spawning behavior of roach and bream in Saratovskoye reservoir. J Ichthyol. 32(3):134–136.
  • Lappalainen A, Rask M, Koponen H, Vesala S. 2001. Relative abundance, diet and growth of perch (Perca fluviatilis) and roach (Rutilus rutilus) at Tvaerminne, northern Baltic Sea, in 1975 and 1997: responses to eutrophication? Boreal Env Res. 6(2):107–118.
  • Lappalainen A, Westerbom M, Heikinheimo O. 2005. Roach (Rutilus rutilus) as an important predator on blue mussel (Mytilus edulis) populations in a brackish water environment, the northern Baltic Sea. Mar Biol. 147(2):323–330. doi: 10.1007/s00227-005-1598-5
  • Lappalainen J, Tarkan AS, Harrod C. 2008. A meta-analysis of latitudinal variations in life history traits of roach Rutilus rutilus over its geographical range: linear or non-linear relationships? Freshwat Biol. 53(8):1491–1501. doi: 10.1111/j.1365-2427.2008.01977.x
  • Larmuseau MHD, Freyhof J, Volckaert FAM, Van Houdt JKJ. 2009. Matrilinear phylogeography and demographical patterns of Rutilus rutilus: implications for taxonomy and conservation. J Fish Biol. 75(2):332–353. doi: 10.1111/j.1095-8649.2009.02322.x
  • Li H, Shen J, Ma X, Liu Y, Zhao Y, Liu Q, Hao Z. 2009. Growth characteristics of coach Rutilus rutilus (L .) in Ulungur Lake in Xinjiang Uigur Autonomous Region. J Huazhong Agric Univ. 28(2):202–206. [In Chinese with an abstract in English.]
  • Linfield RSJ. 1979. Changes in the rate of growth in a stunted roach Rutilus rutilus population. J Fish Biol. 15(3):275–298. doi: 10.1111/j.1095-8649.1979.tb03608.x
  • Mann RHK. 1973. Observations on the age, growth, reproduction and food of the roach, Rutilus rutilus (L.) in two rivers in southern England. J Fish Biol. 5(6):707–736. doi: 10.1111/j.1095-8649.1973.tb04506.x
  • Mitrofanova LN. 1976. Plodovitost’ plotvy Pskovsko- Cudskogo ozera. Trudy Pskovskogo otdelenija GosNIORH. 2:94–100. [in Russian]
  • Müller R, Meng HJ. 1986. Factors governing the growth rate of roach Rutilus rutilus (L.) in pre-alpine Lake Sarnen. Schweiz. Z. Hydrol. 48(2):135–144.
  • Naddafi R, Abdoli A, Hassanzadeh Kiabi B, Mojazi Amiri B, Karami M. 2005. Age, growth and reproduction of the Caspian roach (Rutilus rutilus caspicus) in the Anzali and Gomishan wetlands, North Iran. J Appl Ichthyol. 21(6):492–497. doi: 10.1111/j.1439-0426.2005.00669.x
  • Ogle DH. 2014. FSA: Fisheries Stock Analysis. R package version 0.4.6; [accessed 2015 June 23]. Available at https://fishr.wordpress.com/packages/
  • Okgerman H, Oral M, Yigit S. 2009. Biological Aspects of Rutilus rutilus (roach) in Sapanca Lake (Turkey). J Anim Vet Adv. 8(3):441–446. doi: javaa.2009.441.446
  • Papageorgiou NK. 1979. The length weight relationship, age, growth and reproduction of the roach Rutilus rutilus (L.) in Lake Volvi. J Fish Biol. 14(6):529–538. doi: 10.1111/j.1095-8649.1979.tb03552.x
  • Pęczalska A. 1968. Development and reproduction of roach (Rutilus rutilus L.) in the Szczecin Firth. Pol Arch Hydrobiol. 15(2):103–120.
  • Ponton D, Gerdaux D. 1987. La population de gardons (Rutilus rutilus (L.)) du lac Léman en 1983-85. Structure en age, detérminisme du recrutement, analyse de la croissance. Bull Fr Pêche Piscic. 305:45–53.
  • Przybylski M. 1996. Variation in fish growth characteristics along a river course. Hydrobiologia. 325(1):39–46. doi: 10.1007/BF00023666
  • Putkis O, Batsianiou I. 2005. Age and growth of roach, Rutilus rutilus in Lake Erken: influence of density. Uppsala University, Department of Limnology, unpublished manuscript.
  • R Core Team. 2014. R: A language and environment for statistical computing. R Foundation for Statistical Computing, Vienna, Austria; [accessed 2015 June 23]. Available at http://www.R-project.org/
  • Ricker WE. 1975. Computation and interpretation of biological statistics of fish population. Bulletin of the Fisheries Research Board of Canada 191.
  • Robin X, Turck N, Hainard A, Tiberti N, Lisacek F, Sanchez J-C, Müller M. 2011. pROC: an open-source package for R and S+ to analyze and compare ROC curves. BMC Bioinformatics 12:77. doi: 10.1186/1471-2105-12-77
  • Sedaghat S, Hoseini SA. 2012. Age and growth of Caspian roach, Rutilus rutilus caspicus (Jakowlew, 1870) in Southern Caspian Sea, Iran. World J Fish Mar Sci. 4(5):533–535. doi: 10.5829/idosi.wjfms.2012.04.05.64149
  • Skóra S. 1972. The roach (Rutilus rutilus L.) from the dam reservoir in Przeczyce. Acta Hydrobiol. 14(4):399–418.
  • Specziár A, Tölg L, Bíró P. 1997. Feeding strategy and growth of cyprinids in the littoral zone of Lake Balaton. J Fish Biol. 51(6):1109–1124. doi: 10.1111/j.1095-8649.1997.tb01130.x
  • Spivak EG, Pinus GN, Sentishcheva SV. 1979. The age composition of the spawning population and the characteristics of the spawners size-age structure and fecundity of the roach, Rutilus rutilus spawning in Kakhovka reservoir. J Ichthyol. 19:75–80.
  • Tarkan AS, Gaygusuz Ö, Godard MJ, Copp GH. 2011. Long‐term growth patterns in a pond‐dwelling population of crucian carp, Carassius carassius: environmental and density‐related factors. Fish Manage Ecol. 18(5):375–383. doi: 10.1111/j.1365-2400.2011.00791.x
  • Tarkan AS. 2006. Reproductive ecology of two cyprinid fish in an oligotrophic lake near the southern limits of their distribution range. Ecol Freshwat Fish. 15(2):131–138. doi: 10.1111/j.1600-0633.2006.00133.x
  • Treer T, Habeković D, Aničić I, Safner R, Piria M. 2000. Growth of five spirlin (Alburnoides bipunctatus) populations from the Croatian rivers. Agric Consp Scient. 65(3):175–180.
  • Treer T, Habekovič D, Aničič, Safner R, Kolak A. 1997. Standard growth curve for chub (Leuciscus cephalus L. 1758) in Croatia. Ribarsvo. 55(2):47–52.
  • Treer T, Habekovič D, Aničič, Safner R, Kolak A. 1998. Growth of pike (Esox lucius L.) in Croatian Reservoir Kruščica. Ribarsvo. 55(3):47–52.
  • Tsoumani M, Georgiadis A, Giantsis IA, Leonardos I, Apostolidis AP. 2014. Phylogenetic relationships among Southern Balkan Rutilus species inferred from cytochrome b sequence analysis: Micro-geographic resolution and taxonomic implications. Biochem Syst Ecol. 54:172–178. doi: 10.1016/j.bse.2014.02.006
  • Vilizzi L, Copp GH, Britton JR. 2013. Age and growth of European barbel Barbus barbus (Cyprinidae) in the small, mesotrophic River Lee and relative to other populations in England. Knowl Manage Aquat Ecosys. 409:09. doi: 10.1051/kmae/2013054
  • Vilizzi L, Tarkan AS, Copp GH. 2015a. Experimental evidence from causal criteria analysis for the effects of common carp Cyprinus carpio on freshwater ecosystems: a global perspective. Rev Fish Sci Aquacult. 23(3):253–290. doi: 10.1080/23308249.2015.1051214
  • Vilizzi L, Ekmekçi FG, Tarkan AS, Jackson ZJ. 2015b. Growth of common carp Cyprinus carpio in Anatolia (Turkey), and relative to native and invasive areas worldwide. Ecol Freshwat Fish. 24(2):165–180. doi: 10.1111/eff.12141
  • Vilizzi L, Tarkan AS. 2015. Experimental evidence for the effects of common carp (Cyprinus carpio L., 1758) on freshwater ecosystems: a narrative review with management directions for Turkish inland waters. LimnoFish. 1(3):123–149. doi: 10.17216/LimnoFish-5000130907
  • Vilizzi L. 2011. Brief, protracted or flexible? Quantitative versus qualitative classification of spawning for fish in the Murray-Darling Basin. Trans Roy Soc SA. 135(1):1–11. doi: 10.1080/03721426.2011.10887146
  • Vilizzi L. 2012. Abundance trends in floodplain fish spawning: the role of annual flow characteristics in the absence of overbank flooding. Fund Appl Limn. 181(3):215–227. doi: 10.1127/1863-9135/2012/0394
  • Vinni M, Horppila J, Olin M, Ruuhijärvi J, Nyberg K. 2000. The food, growth and abundance of five co-existing cyprinids in lake basins of different morphometry and water quality. Aquat Ecol. 34(4):421–431. doi: 10.1023/A:1011404721775
  • Vøllestad LA, L’Abée-Lund JH. 1987. Reproductive biology of stream spawning roach, Rutilus rutilus. Env Biol Fish. 18(3):219–227. doi: 10.1007/BF00000361
  • Vøllestad LA, L’Abée-Lund JH. 1990. Geographic variation in life-history strategy of female roach, Rutilus rutilus (L.). J Fish Biol. 37(6):853–864. doi: 10.1111/j.1095-8649.1990.tb03589.x
  • Volta P, Jepsen N. 2008. The recent invasion of Rutilus rutilus (L.) (Pisces: Cyprinidae) in a large South-Alpine lake: Lago Maggiore. J Limnol. 67(2):163–170. doi: 10.4081/jlimnol.2008.163
  • Wenlin L, Wenkang C, Xishun F, Yuying P, Xiaochun M, Meisen H, Jing S. 1992. Age and growth of Rutilus rutilus lacustris (Pallas) in Sai Li Mu Lake. J Shihezi Univ (Nat Sci). 4(13):57–66.
  • White RWG, Williams WP. 1978. Studies of the ecology of fish populations in the Rye Meads sewage effluent lagoons. J Fish Biol. 13(4):379–400. doi: 10.1111/j.1095-8649.1978.tb03446.x
  • Więsky K., Załachowski W. 2000. Growth of roach Rutilus rutilus (L.) in the River Odra estuary. Acta Ichthyol Pisc. 30(1):3–17.
  • Williams WP. 1967. The growth and mortality of four species of fish in the River Thames at Reading. J Anim Ecol. 36(3):695–720.
  • Wilson RS. 1971. The decline of a roach Rutilus rutilus (L.) population in Chew Valley Lake. J Fish Biol. 3(2):129–137. doi: 10.1111/j.1095-8649.1971.tb03655.x
  • Załachowsky W, Krzykawska I. 1995. Growth rate of roach in Lake Dąbie. Acta Ichthyol Pisc. 25(1):1–17.
  • Zaugg B. 1987. Quelques aspects de dynamique des populations, de biologie générale et de biométrie du gardon (Rutilus rutilus L.) dans 4 lacs du plateau suisse. PhD Thesis, Université de Neuchâtel, Switzerland.
  • Zivkov M, Raikova-Petrova G. 2001. Comparative analysis of age compositon, growth rate and conditiond of roach, Rutilus rutilus (L.), in three Bulgarian Reservoirs. Acta Zool Bulg. 53(1):47–60.
  • Živkov MT, Trichkova TA, Raikova-Petrova GN. 1999. Biological reasons for the unsuitability of growth parameters and indices for comparing fish growth. Env Biol Fish. 54(1):67–76. doi: 10.1023/A:1007425005491

Boyca Büyümeyi Ölçen Büyüme İndeksinin Tekrar Değerlendirilmesi: Kızılgöz, Rutilus rutilus Uygulaması

Yıl 2016, , 49 - 58, 20.04.2016
https://doi.org/10.17216/LimnoFish-5000127509

Öz

Balık populasyonları arasında boyca ortalama büyüme oranlarının karşılaştırmalı değerlendirmeleri özellikle yaygın dağılımları olan balıklarda türlerin kontrolü, yönetimi ve korunmasına yönelik bilgi edinme anlamında yararlıdır. Sunulan çalışmanın amacı balıklarda türe özgü büyüme oranlarını karşılaştırmada kullanışlı bir ölçü olan Büyüme İndeksi (Bİ)’ni düzenlemektir. Geniş bir Avrasya dağılımına sahip yaygın tatlı su balığı kızılgöz, Rutilus rutilus türünün 299 populasyonunda literatür tabanlı yaştaki boy verileri kullanılarak, Bİ kalibre edilmiş ve daha önce yarı kantitatif olarak ‘yavaş’, ‘ortalama’ ve ‘yüksek’ olarak tanımlanan büyüme kategorileri kantitatif olarak tekrar tanımlanmıştır. Eşik değeri olarak %114 Bİ ‘yavaş’ büyüyen popülasyonları ‘orta’ hızda büyüyen popülasyonlardan ayırırken, %155 Bİ değeri ‘orta’ hızda büyüyen popülasyonlardan ‘hızlı’ popülasyonları ayırmıştır. Yavaş büyüme oranları türün bütün enleme bağlı dağılım alanından tespit edilirken, ≈37ºN enleminin altında bütün büyüme tiplerine rastlanılmıştır bu durum da kızılgözün büyümesini etkileyen su kütlesine bağlı faktörlerin önemini göstermiştir. Bİ’nin nispeten yaygın kullanımı dikkate alındığında, büyüme kategorilerinin gelişmiş tanımlamalarını yapmaya yönelik türe özgü kalibrasyonların yapılması ekonomik değeri olan ve ekolojik önemi olan diğer geniş dağılımlı balık türleri için önerilir.

Kaynakça

  • Anderson MJ. 2001. Permutation tests for univariate or multivariate analysis of variance and regression. Can J Fish Aquat Sci. 58(3):626–639. doi: 10.1139/f01-004
  • Anderson MJ, Robinson J. 2001. Permutation tests for linear models. Aust NZ J Stat. 43(1):75–88. doi: 10.1111/1467-842X.00156
  • Anderson MJ, Gorley RN, Clarke KR. 2008. PERMANOVA+ for PRIMER: Guide to software and statistical methods. PRIMER-E Ltd., Plymouth, UK.
  • Angélibert S, Brosse S, Dauba F, Lek S. 1999. Change in roach (Rutilus rutilus L.) population structure induced on draining a large reservoir. CR Acad Sci III-Vie. 322(4):331–338. doi: 10.1016/S0764-4469(99)80069-9
  • Arzbach H-H. 1997. Untersuchungen zur allgemeinen Ökologie, Radioökologie, und Trophodynamik am Fischbestand des Plußsees in Schleswig-Holstein. PhD Thesis, University of Hamburg, Germany.
  • Auvinen H. 1987. Growth, mortality and management of whitefish (Coregonus lavaretus L. s.l.), vendace (Coregonus albula L.), roach (Rutilus rutilus L.) and perch (Perca fluviatilis L.) in Lake Pyhäjärvi (Karelia). Finn Fish Res. 8(1):38-47.
  • Banks JW. 1970. Observations on the fish population of Rostherne Mere, Cheshire. Fld Stud 3(2):357–379.
  • Baranova VV. 1984. Growth of roach, Rutilus rutilus (Cyprinidae), in the Reservoirs of the Upper Volga Basin. Vopr Ikhtiol. 24:253–257.
  • Başkurt S, Emiroğlu Ö, Tarkan AS, Vilizzi L. 2015. The life-history traits of widespread freshwater fish species: the case of roach Rutilus rutilus (Linnaeus, 1758) (Pisces: Teleostei) in water bodies at the southern limits of distribution. Zool Middle East. 61(4): 339–348. doi: 10.1080/09397140.2015.1095516
  • Beardsley H, Britton JR. 2012. Contribution of temperature and nutrient loading to growth rate variation of three cyprinid fishes in a lowland river. Aquat Ecol. 46(1):146–152. doi: 10.1007/s10452-011-9387-3
  • Beddington JR, Kirkwood GP. 2005. The estimation of potential yield and stock status using life-history parameters. Phil Trans Roy Soc B. 360(1453):163–170. doi: 10.1098/rstb.2004.1582
  • Bewick V, Cheek L, Ball J. 2004. Statistics review 13: Receiver operating characteristic curves. Crit Care. 8(6):508–512. doi: 10.1186/cc3000
  • Britton JR, Davies GD, Pegg J. 2012. Spatial variation in the somatic growth rates of European barbel Barbus barbus: a UK perspective. Ecol Freshwat Fish. 22(1):21–29. doi: 10.1111/j.1600-0633.2012.00588.x
  • Britton JR. 2007. Reference data for evaluating the growth of common riverine fishes in the UK. J Appl Ichthyol. 23(5):555–560. doi: 10.1111/j.1439-0426.2007.00845.x
  • Burrough RJ, Kennedy CR. 1979. The occurrence and natural alleviation of stunting in a population of roach, Rutilus rutilus (L.). J Fish Biol. 15(1):93–109. doi: 10.1111/j.1095-8649.1979.tb03574.x
  • Büsser P, Tschumi PA. 1987. Nahrungsökologie der Rotaugen (Rutilus rutilus L.) im Litoral und Pelagial des Bielersees. Swiss J Hydrol. 49(1):62–74. doi: 10.1007/BF02540380
  • Chitravadivelu K. 1974. Growth, age composition, population density, mortality, production and yield of Alburnus alburnus (Linnaeus, 1758) and Rutilus rutilus (Linnaeus, 1758) in the inundation region of Danube – Žofín. Acta U Carol Biol. 1972:1–76.
  • Copp GH, Bianco PG, Bogutskaya NG, Erős T, Falka I, Ferreira MT, Fox MG, Freyhof J, Gozlan RE, Grabowska J, Kováč V, Moreno-Amich R, Naseka AM, Peňáz M, Povž M, Przybylski M, Robillard M, Russell IC, Stakėnas S, Šumer S, Vila-Gispert A, Wiesner C. 2005. To be, or not to be, a non-native freshwater fish? J Appl Ichthyol. 21(4):242–262. doi: 10.1111/j.1439-0426.2005.00690.x
  • Copp GH, Britton JR, Cucherousset J, García-Berthou E, Kirk R, Peeler EJ, Stakėnas S. 2009. Voracious invader or benign feline? A review of the environmental biology of European catfish Silurus glanis in its native and introduced range. Fish Fish. 10(3):252–282. doi: 10.1111/j.1467-2979.2008.00321.x
  • Copp GH, Fox MG, Przybylski M, Godinho FN, Vila-Gispert A. 2004. Life-time growth patterns of pumpkinseed Lepomis gibbosus introduced to Europe, relative to native North American populations. Folia Zool. 53(3):237–254.
  • Cowx IG. 1988. Distribution and variation in the growth of roach, Rutilus rutilus (L.), and dace, Leuciscus leuciscus (L.), in a river catchment in south‐west England. J Fish Biol. 33(1):59–72. doi: 10.1111/j.1095-8649.1988.tb05448.x
  • Cowx IG. 1989. Interaction between the roach, Rutilus rutilus, and dace, Leuciscus leuciscus, populations in a river catchment in south‐west England. J Fish Biol. 35(sA):279–284. doi: 10.1111/j.1095-8649.1989.tb03071.x
  • Cragg-Hine D, Jones JW. 1969. The growth of dace Leuciscus leuciscus (L.), roach Rutilus rutilus (L.) and chub Squalius cephalus (L.) in Willow Brook, Northamptonshire. J Fish Biol. 1(1):59–82. doi: 10.1111/j.1095-8649.1969.tb03845.x
  • Cryer M, Peirson G, Townsend CR. 1986. Reciprocal interactions between roach, Rutilus rutilus, and zooplankton in a small lake: prey dynamics and fish growth and recruitment. Limnology and Oceanography. 31(5):1022–1038. doi: 10.4319/lo.1986.31.5.1022
  • Emiroğlu Ö, Tarkan AS, Top N, Başkurt S, Sülün Ş. 2012. Growth and life history traits of a highly exploited population of non-native gibel carp, Carassius gibelio from a large eutrophic lake (Lake Uluabat, NW Turkey): is reproduction the key factor for establishment success? Turk J Fish Aquat Sci. 12(4):925–936. doi: 10.4194/1303-2712-v12_4_20
  • Epler P, Popek W, Luszczek-Trojnar E, Drag-Kozak E, Szczerbik P, Socha M. 2005. Age and growth rate of the roach (Rutilus rutilus L.) from the Solina and the Tresna (Zywieckie Lake) dam reservoires [sic]. Acta Sci Polon Pisc. 4(1–2):59–70.
  • Ergüden S(A), Ergüden D, Göksu MZL. 2008. Seyhan Baraj Göl'ündeki (Adana) kızılgöz (Rutilus rutilus L., 1758)’ün büyüme özellikleri. J FisheriesSciences.com. 2(1):77–87. [In Turkish with an abstract in English] doi: 10.3153/jfscom.2008008
  • Estlander S, Nurminen L, Olin M, Vinni M, Immonen S, Rask M, Ruuhijärvi J, Horppila J, Lehtonen H. 2010. Diet shifts and food selection of perch Perca fluviatilis and roach Rutilus rutilus in humic lakes of varying water colour. J Fish Biol. 77(1):241–256. doi: 10.1111/j.1095-8649.2010.02682.x
  • Frank S. 1962. A contribution to the growth of roach, rudd sand white bream in some waters of Czechoslovakia and Poland. Věst Česk Spol Zool. 26(1):65–74.
  • Frimodt C. 1995. Multilingual illustrated guide to the world’s commercial coldwater fish. Oxford: Blackwell Science 264 p.
  • Frisk MG, Miller TJ, Dulvy NK. 2005. Life histories and vulnerability to exploitation of elasmobranchs: inferences from elasticity, perturbation and phylogenetic analyses. J NW Atl Fish Sci. 37:27–45. doi: 10.2960/J.v35.m514
  • Froese R, Pauly D. (Eds). 2015. FishBase. World Wide Web electronic publication (version 04/2015); [accessed 2015 Jun 23]. Available at www.fishbase.org
  • García-Berthou E. 1999. Spatial heterogeneity in roach (Rutilus rutilus) diet among contrasting basins whitin a lake. Arch Hydrobiol. 146(2):239–256.
  • Gee AS. 1978. The distribution and growth of coarse fish in gravel-pit lakes in south-east England. Freshwat Biol. 8(4):385–394. doi: 10.1111/j.1365-2427.1978.tb01459.x
  • Goldspink CR. 1978. Comparative observations on the growth rate and year class strength of roach Rutilus rutilus L. in two Cheshire lakes, England. J Fish Biol. 12(5):421–433. doi: 10.1111/j.1095-8649.1978.tb04185.x
  • Goldspink CR. 1979. The population density, growth rate and production of roach Rutilus rutilus (L.) in Tjeukemeer, The Netherlands. J Fish Biol. 15(4):473–498. doi: 10.1111/j.1095-8649.1979.tb03632.x
  • Graham CT, Harrod C. 2009. Implications of climate change for the fishes of the British Isles. J Fish Biol. 74(6):1143–1205. doi: 10.1111/j.1095-8649.2009.02180.x
  • Griffiths D. 1997. The status of the Irish freshwater fish fauna: a review. J Appl Ichthyol. 13(1):9–13. doi: 10.1111/j.1439-0426.1997.tb00091.x
  • Guthruf J. 2002. Die biologie des Rotauges im Luganer-see (Kanton TI). BUWAL Mitteilungen zur Fischerei 74.
  • Hanel L. 1991. Růst čtyř druhů kaprovitých ryb v řece Berounce [Growth of four cyprinid fishes in the River Berounka, Central Bohemia]. Živočišná Výroba. 36(1):929–937. [In Czech with an abstract in English]
  • Harrod C, Griffiths D, McCarthy TK, Rosell R. 2001. The Irish pollan, Coregonus autumnalis: options for its conservation. J Fish Biol. 59(sA):339–355. doi: 10.1111/j.1095-8649.2001.tb01395.x
  • Hart P. 1971. The roach (Rutilus rutilus L.) in the River Nene, Northants and its relationship to four other fish species. In 5th British Conference Proceedings, University of Liverpool, UK, pp 138–145.
  • Hartley PHT. 1947. The coarse fishes of Britain. Freshwater Biological Association, Scientific Publication No. 12, Wray Castle, Ambleside, Westmorland.
  • Hellawell JM. 1972. The growth, reproduction and food of the roach Rutilus rutilus (L.) of River Lugg, Hertfordshire. J Fish Biol. 4(4):469–486. doi: 10.1111/j.1095-8649.1972.tb05696.x
  • Hickley P, Dexter FK. 1979. A comparative index of quantifying growth in length of fish. Fish Manage. 10(4):147–151. doi: 10.1111/j.1365-2109.1979.tb00270.x
  • Hofstede AE. 1974. Studies on growth, ageing and back-calculation of roach Rutilus rutilus (L.), and dace Leuciscus leuciscus (L.). In: Bagenal TB, The Ageing of Fish. Farnham, Unwin Brothers, pp. 137–147.
  • Holčík J. 1967a. Life history of the roach-Rutilus rutilus – (Linnaeus, 1758) in the Klíčava valley reservoir. Věst Česk Spol Zool. 31(2):213–229.
  • Holčík J. 1967b. Age, growth and life history of the roach-Rutilus rutilus carpathorossicus Vladikov, 1930, in the Orava valley reservoir. Zool Listy. 16(1):87–97.
  • Hornatkiewicz-Żbik ZA. 2003. Fecundity of roach Rutilus rutilus (L.) from the coastal lakes Gardno and Łebsko. Acta Sci Pol Pisc. 2(1):71–86.
  • Horppila J. 1994. The diet and growth of roach (Rutilus rutilus) in Lake Vesijärvi and possible changes in the course of biomanipulation. Hydrobiologia. 294(1):35–41. doi: 10.1007/BF00017623
  • Horppila J. 2000. The effect of length frequency ranges on the back-calculated lengths of roach, Rutilus rutilus (L.). Fish Res. 45(1):21–29. doi: 10.1016/S0165-7836(99)00099-5
  • Jamet JL, Desmolles F. 1994. Growth, reproduction and condition of roach (Rutilus rutilus (L.)), perch (Perca fluviatilis, L.) and ruffe (Gymnocephalus cernuus (L.)) in eutrophic Lake Aydat (France). Int Rev ges Hydrobiol Hydrogr. 79(2):305–322.
  • Kännö S. 1969. Growth and age distribution of some fish species in the river Panimionjoki, southwestern Finland. Ann. Zool. Fenn 6:87–93.
  • Kas’yanov AN, Izyumov YG, Kas’yanova NV. 1995. Growth of roach, Rutilus rutilus, in Russia and adjacent countries. J Ichthyol. 35(9):256–273.
  • Kas’yanov AN, Izyumov YG. 1995. Growth and morphology of roach, Rutilus rutilus, from Lake Pleshcheveyo after introduction of Dreissena polymorpha. J Ichthyol. 35:13–15.
  • Kempe O. 1962. The growth of the roach (Leuciscus rutilus L.) in some Swedish lakes. Rep Inst Freshwat. Res Drott. 44:42–104.
  • Ketmaier V, Bianco PG, Durand JD. 2008. Molecular systematics, phylogeny and biogeography of roaches (Rutilus, Teleostei, Cyprinidae). Mol Phylogen Evol. 49(1):362–367. doi: 10.1016/j.ympev.2008.07.012
  • Kozlovskiy SV. 1992. Observations of the spawning behavior of roach and bream in Saratovskoye reservoir. J Ichthyol. 32(3):134–136.
  • Lappalainen A, Rask M, Koponen H, Vesala S. 2001. Relative abundance, diet and growth of perch (Perca fluviatilis) and roach (Rutilus rutilus) at Tvaerminne, northern Baltic Sea, in 1975 and 1997: responses to eutrophication? Boreal Env Res. 6(2):107–118.
  • Lappalainen A, Westerbom M, Heikinheimo O. 2005. Roach (Rutilus rutilus) as an important predator on blue mussel (Mytilus edulis) populations in a brackish water environment, the northern Baltic Sea. Mar Biol. 147(2):323–330. doi: 10.1007/s00227-005-1598-5
  • Lappalainen J, Tarkan AS, Harrod C. 2008. A meta-analysis of latitudinal variations in life history traits of roach Rutilus rutilus over its geographical range: linear or non-linear relationships? Freshwat Biol. 53(8):1491–1501. doi: 10.1111/j.1365-2427.2008.01977.x
  • Larmuseau MHD, Freyhof J, Volckaert FAM, Van Houdt JKJ. 2009. Matrilinear phylogeography and demographical patterns of Rutilus rutilus: implications for taxonomy and conservation. J Fish Biol. 75(2):332–353. doi: 10.1111/j.1095-8649.2009.02322.x
  • Li H, Shen J, Ma X, Liu Y, Zhao Y, Liu Q, Hao Z. 2009. Growth characteristics of coach Rutilus rutilus (L .) in Ulungur Lake in Xinjiang Uigur Autonomous Region. J Huazhong Agric Univ. 28(2):202–206. [In Chinese with an abstract in English.]
  • Linfield RSJ. 1979. Changes in the rate of growth in a stunted roach Rutilus rutilus population. J Fish Biol. 15(3):275–298. doi: 10.1111/j.1095-8649.1979.tb03608.x
  • Mann RHK. 1973. Observations on the age, growth, reproduction and food of the roach, Rutilus rutilus (L.) in two rivers in southern England. J Fish Biol. 5(6):707–736. doi: 10.1111/j.1095-8649.1973.tb04506.x
  • Mitrofanova LN. 1976. Plodovitost’ plotvy Pskovsko- Cudskogo ozera. Trudy Pskovskogo otdelenija GosNIORH. 2:94–100. [in Russian]
  • Müller R, Meng HJ. 1986. Factors governing the growth rate of roach Rutilus rutilus (L.) in pre-alpine Lake Sarnen. Schweiz. Z. Hydrol. 48(2):135–144.
  • Naddafi R, Abdoli A, Hassanzadeh Kiabi B, Mojazi Amiri B, Karami M. 2005. Age, growth and reproduction of the Caspian roach (Rutilus rutilus caspicus) in the Anzali and Gomishan wetlands, North Iran. J Appl Ichthyol. 21(6):492–497. doi: 10.1111/j.1439-0426.2005.00669.x
  • Ogle DH. 2014. FSA: Fisheries Stock Analysis. R package version 0.4.6; [accessed 2015 June 23]. Available at https://fishr.wordpress.com/packages/
  • Okgerman H, Oral M, Yigit S. 2009. Biological Aspects of Rutilus rutilus (roach) in Sapanca Lake (Turkey). J Anim Vet Adv. 8(3):441–446. doi: javaa.2009.441.446
  • Papageorgiou NK. 1979. The length weight relationship, age, growth and reproduction of the roach Rutilus rutilus (L.) in Lake Volvi. J Fish Biol. 14(6):529–538. doi: 10.1111/j.1095-8649.1979.tb03552.x
  • Pęczalska A. 1968. Development and reproduction of roach (Rutilus rutilus L.) in the Szczecin Firth. Pol Arch Hydrobiol. 15(2):103–120.
  • Ponton D, Gerdaux D. 1987. La population de gardons (Rutilus rutilus (L.)) du lac Léman en 1983-85. Structure en age, detérminisme du recrutement, analyse de la croissance. Bull Fr Pêche Piscic. 305:45–53.
  • Przybylski M. 1996. Variation in fish growth characteristics along a river course. Hydrobiologia. 325(1):39–46. doi: 10.1007/BF00023666
  • Putkis O, Batsianiou I. 2005. Age and growth of roach, Rutilus rutilus in Lake Erken: influence of density. Uppsala University, Department of Limnology, unpublished manuscript.
  • R Core Team. 2014. R: A language and environment for statistical computing. R Foundation for Statistical Computing, Vienna, Austria; [accessed 2015 June 23]. Available at http://www.R-project.org/
  • Ricker WE. 1975. Computation and interpretation of biological statistics of fish population. Bulletin of the Fisheries Research Board of Canada 191.
  • Robin X, Turck N, Hainard A, Tiberti N, Lisacek F, Sanchez J-C, Müller M. 2011. pROC: an open-source package for R and S+ to analyze and compare ROC curves. BMC Bioinformatics 12:77. doi: 10.1186/1471-2105-12-77
  • Sedaghat S, Hoseini SA. 2012. Age and growth of Caspian roach, Rutilus rutilus caspicus (Jakowlew, 1870) in Southern Caspian Sea, Iran. World J Fish Mar Sci. 4(5):533–535. doi: 10.5829/idosi.wjfms.2012.04.05.64149
  • Skóra S. 1972. The roach (Rutilus rutilus L.) from the dam reservoir in Przeczyce. Acta Hydrobiol. 14(4):399–418.
  • Specziár A, Tölg L, Bíró P. 1997. Feeding strategy and growth of cyprinids in the littoral zone of Lake Balaton. J Fish Biol. 51(6):1109–1124. doi: 10.1111/j.1095-8649.1997.tb01130.x
  • Spivak EG, Pinus GN, Sentishcheva SV. 1979. The age composition of the spawning population and the characteristics of the spawners size-age structure and fecundity of the roach, Rutilus rutilus spawning in Kakhovka reservoir. J Ichthyol. 19:75–80.
  • Tarkan AS, Gaygusuz Ö, Godard MJ, Copp GH. 2011. Long‐term growth patterns in a pond‐dwelling population of crucian carp, Carassius carassius: environmental and density‐related factors. Fish Manage Ecol. 18(5):375–383. doi: 10.1111/j.1365-2400.2011.00791.x
  • Tarkan AS. 2006. Reproductive ecology of two cyprinid fish in an oligotrophic lake near the southern limits of their distribution range. Ecol Freshwat Fish. 15(2):131–138. doi: 10.1111/j.1600-0633.2006.00133.x
  • Treer T, Habeković D, Aničić I, Safner R, Piria M. 2000. Growth of five spirlin (Alburnoides bipunctatus) populations from the Croatian rivers. Agric Consp Scient. 65(3):175–180.
  • Treer T, Habekovič D, Aničič, Safner R, Kolak A. 1997. Standard growth curve for chub (Leuciscus cephalus L. 1758) in Croatia. Ribarsvo. 55(2):47–52.
  • Treer T, Habekovič D, Aničič, Safner R, Kolak A. 1998. Growth of pike (Esox lucius L.) in Croatian Reservoir Kruščica. Ribarsvo. 55(3):47–52.
  • Tsoumani M, Georgiadis A, Giantsis IA, Leonardos I, Apostolidis AP. 2014. Phylogenetic relationships among Southern Balkan Rutilus species inferred from cytochrome b sequence analysis: Micro-geographic resolution and taxonomic implications. Biochem Syst Ecol. 54:172–178. doi: 10.1016/j.bse.2014.02.006
  • Vilizzi L, Copp GH, Britton JR. 2013. Age and growth of European barbel Barbus barbus (Cyprinidae) in the small, mesotrophic River Lee and relative to other populations in England. Knowl Manage Aquat Ecosys. 409:09. doi: 10.1051/kmae/2013054
  • Vilizzi L, Tarkan AS, Copp GH. 2015a. Experimental evidence from causal criteria analysis for the effects of common carp Cyprinus carpio on freshwater ecosystems: a global perspective. Rev Fish Sci Aquacult. 23(3):253–290. doi: 10.1080/23308249.2015.1051214
  • Vilizzi L, Ekmekçi FG, Tarkan AS, Jackson ZJ. 2015b. Growth of common carp Cyprinus carpio in Anatolia (Turkey), and relative to native and invasive areas worldwide. Ecol Freshwat Fish. 24(2):165–180. doi: 10.1111/eff.12141
  • Vilizzi L, Tarkan AS. 2015. Experimental evidence for the effects of common carp (Cyprinus carpio L., 1758) on freshwater ecosystems: a narrative review with management directions for Turkish inland waters. LimnoFish. 1(3):123–149. doi: 10.17216/LimnoFish-5000130907
  • Vilizzi L. 2011. Brief, protracted or flexible? Quantitative versus qualitative classification of spawning for fish in the Murray-Darling Basin. Trans Roy Soc SA. 135(1):1–11. doi: 10.1080/03721426.2011.10887146
  • Vilizzi L. 2012. Abundance trends in floodplain fish spawning: the role of annual flow characteristics in the absence of overbank flooding. Fund Appl Limn. 181(3):215–227. doi: 10.1127/1863-9135/2012/0394
  • Vinni M, Horppila J, Olin M, Ruuhijärvi J, Nyberg K. 2000. The food, growth and abundance of five co-existing cyprinids in lake basins of different morphometry and water quality. Aquat Ecol. 34(4):421–431. doi: 10.1023/A:1011404721775
  • Vøllestad LA, L’Abée-Lund JH. 1987. Reproductive biology of stream spawning roach, Rutilus rutilus. Env Biol Fish. 18(3):219–227. doi: 10.1007/BF00000361
  • Vøllestad LA, L’Abée-Lund JH. 1990. Geographic variation in life-history strategy of female roach, Rutilus rutilus (L.). J Fish Biol. 37(6):853–864. doi: 10.1111/j.1095-8649.1990.tb03589.x
  • Volta P, Jepsen N. 2008. The recent invasion of Rutilus rutilus (L.) (Pisces: Cyprinidae) in a large South-Alpine lake: Lago Maggiore. J Limnol. 67(2):163–170. doi: 10.4081/jlimnol.2008.163
  • Wenlin L, Wenkang C, Xishun F, Yuying P, Xiaochun M, Meisen H, Jing S. 1992. Age and growth of Rutilus rutilus lacustris (Pallas) in Sai Li Mu Lake. J Shihezi Univ (Nat Sci). 4(13):57–66.
  • White RWG, Williams WP. 1978. Studies of the ecology of fish populations in the Rye Meads sewage effluent lagoons. J Fish Biol. 13(4):379–400. doi: 10.1111/j.1095-8649.1978.tb03446.x
  • Więsky K., Załachowski W. 2000. Growth of roach Rutilus rutilus (L.) in the River Odra estuary. Acta Ichthyol Pisc. 30(1):3–17.
  • Williams WP. 1967. The growth and mortality of four species of fish in the River Thames at Reading. J Anim Ecol. 36(3):695–720.
  • Wilson RS. 1971. The decline of a roach Rutilus rutilus (L.) population in Chew Valley Lake. J Fish Biol. 3(2):129–137. doi: 10.1111/j.1095-8649.1971.tb03655.x
  • Załachowsky W, Krzykawska I. 1995. Growth rate of roach in Lake Dąbie. Acta Ichthyol Pisc. 25(1):1–17.
  • Zaugg B. 1987. Quelques aspects de dynamique des populations, de biologie générale et de biométrie du gardon (Rutilus rutilus L.) dans 4 lacs du plateau suisse. PhD Thesis, Université de Neuchâtel, Switzerland.
  • Zivkov M, Raikova-Petrova G. 2001. Comparative analysis of age compositon, growth rate and conditiond of roach, Rutilus rutilus (L.), in three Bulgarian Reservoirs. Acta Zool Bulg. 53(1):47–60.
  • Živkov MT, Trichkova TA, Raikova-Petrova GN. 1999. Biological reasons for the unsuitability of growth parameters and indices for comparing fish growth. Env Biol Fish. 54(1):67–76. doi: 10.1023/A:1007425005491
Toplam 107 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Bölüm Derleme
Yazarlar

Ali Tarkan

Lorenzo Vılızzı

Yayımlanma Tarihi 20 Nisan 2016
Yayımlandığı Sayı Yıl 2016

Kaynak Göster

APA Tarkan, A., & Vılızzı, L. (2016). A Re-assessment of the Growth Index for Quantifying Growth in Length of Fish with Application to Roach, Rutilus rutilus (L., 1758). Journal of Limnology and Freshwater Fisheries Research, 2(1), 49-58. https://doi.org/10.17216/LimnoFish-5000127509