Open Access
Issue
Knowl. Managt. Aquatic Ecosyst.
Number 392, 2009
Article Number 04
Number of page(s) 17
DOI https://doi.org/10.1051/kmae:2009010
Published online 03 July 2009
  • Adamkova-Stibranyiova I., Adamek Z. and Sutovsky I., 1999. A comparative study on the induced spawning in female loach (Misgurnus fossilis) by means of single and double pituitary injection technique. Czech J. Anim. Sci., 44, 403–407. [Google Scholar]
  • Alderdice D.F. and Forrester C.R., 1974. Early development and distribution of the flathead sole (Hippoglossoides elassodon). J. Fish. Res. Board. Can., 31, 1899–1918. [CrossRef] [Google Scholar]
  • Alexeeva T.A. and Ozernyuk N.D., 1987. Energetichesky obmen temperaturny optimum razvitija vjuna [Energetical exchange and temperature optimum of weatherfish development]. Zh. Obshch. Biol., 48, 4, 525–531 (in Russian). [Google Scholar]
  • Blaxter J.H.S. and Hempel G., 1963. The influence of egg size on herring larvae (Clupea harengus L.). Journal du Conseil Permanent International pour l´Exploration de la Mer, 28, 211–240. [CrossRef] [Google Scholar]
  • Bohl E., 1993. Rundmäuler und Fische im Sediment. Ökologische Untersuchungen an Bachneuenauge (Lampetra planeri), Schlammpeitzger (Misgurnus fossilis) und Steinbeisser (Cobitis taenia) in Bayern, Berichte der Bayerischen Landesanstalt für Wasserforschung, 22, Munich, 129 p. [Google Scholar]
  • Bohlen J., 1998. Differences in clutch size, egg size and larval pigmentation between Cobitis taenia and C. bilineata (Cobitidae). Ital. J. Zool., 65, Suppl., 219–221. [Google Scholar]
  • Bohlen J., 1999a. Influence of salinity on early development in the spined loach. J. Fish. Biol., 55, 189–198. [CrossRef] [Google Scholar]
  • Bohlen J., 1999b. Reproduction of spined loach, Cobitis taenia (Cypriniformes, Cobitidae) under laboratory conditions. J. Appl. Ichthyol., 19, 285–296. [Google Scholar]
  • Bohlen J., 2003. Temperature and oxygen requirements of early life stages of the endangered spined loach, Cobitis taenia L. (Teleostei, Cobitidae) with implications for the management of natural populations. Arch. Hydrobiol., 157, 2, 195–212. [CrossRef] [Google Scholar]
  • Conover D.O. and Kynard B.E., 1981. Environmental sex determination: interaction of temperature and genotype in a fish. Science, 213, 577–579. [CrossRef] [PubMed] [Google Scholar]
  • Eeton R.C. and DiDomenico R., 1986. Role of the teleost escape response during development. Trans. Am. Fish. Soc., 115, 128–142. [CrossRef] [Google Scholar]
  • Fujimoto T., Kataoka T., Sakao S., Saito T., Yamaha E. and Arai K., 2006. Developmental stages and germ cell lineage of the loach (Misgurnus anguillicaudatus). Zool. Sci., 23, 977–989. [CrossRef] [Google Scholar]
  • Geldhauser F., 1992. Die kontrollierte Vermehrung des Schlammpeitzgers (Misgurnus fossilis L.). Fischer und Teichwirtschaft, 43, 1, 2–6. [Google Scholar]
  • Green B.S. and Fisher R., 2004. Temperature influences swimming speed, growth and larval duration in coral reef fish larvae. J. Exp. Mar. Biol. Ecol., 299, 1, 115–132. [CrossRef] [Google Scholar]
  • Grieb A.W., 1937. Die larvale Periode in der Entwicklung des Schlammbeissers (Misgurnus fossilis L., Cobitidae, Cyprinoidea). Acta Zoolog., 18, 1–6. [CrossRef] [Google Scholar]
  • Jordaan A., Hayhurst S.E. and Kling L.J., 2006. The influence of temperature on the stage at hatch of laboratory reared Gadus morhua and implications for comparisons of length and morphology. J. Fish. Biol., 68, 7–24. [CrossRef] [Google Scholar]
  • Kaminshi R., Kamler E., Korwin-Kossakowski M., Myszkowski L. and Wolnicki J., 2006. Effects of different incubation temperatures on the yolk-feeding stage of Eupallasella percnurus (Pallas). J. Fish. Biol., 68, 1077–1090. [CrossRef] [Google Scholar]
  • Kamler E., 1992. Early life history of fish: An energetics approach, Fish and Fisheries Series, 4, Chapman & Hall, London, 267 p. [Google Scholar]
  • Kamler E., 2005. Parent-egg-progeny relationships in teleost fishes: an energetics perspective. Rev. Fish. Biol. Fish., 15, 399–421. [Google Scholar]
  • Kamler E., Keckeis H. and Bauer-Nemeschkal E., 1998. Temperature induced changes of survival, development and yolk partitioning in Chondrostoma nasus. J. Fish. Biol., 53, 3, 658–682. [Google Scholar]
  • Karr J.R., 1991. Biological integrity: a long neglected aspect of water resource management. Ecol. Appl., 1, 1, 66–84. [Google Scholar]
  • Keckeis H., Bauer-Nemeschkal E. and Kamler E., 1996. Effects of reduced oxygen level on the mortality and hatching rate of Chondrostoma nasus embryos. J. Fish. Biol., 49, 430–440. [Google Scholar]
  • Kim Y.U., Park Y.S. and Kim D.S., 1987. Development of eggs, larvae and juveniles of loaches, Misgurnus mizolepis Günter. Bull. Korean Fish. Soc., 20, 1, 16–23. [Google Scholar]
  • Klimogianni A., Koumoundouros G., Kaspiris P. and Kentouri M., 2004. Effect of temperature on the egg and yolk-sac larval development of common pandora, Pagellus erythrinus. Mar. Biol., 145, 1015–1022. [CrossRef] [Google Scholar]
  • Kostomarova A.A., 1975. Vjun Misgurnus fossilis L. [Weatherfish Misgurnus fossilis L.]. In: Astaurov B.L. (ed.), Objekty biologiji razvitija, Nauka, Moscow, 308–323 (in Russian). [Google Scholar]
  • Kotlyarevskaja N.V., 1967. O srokach vyluplenija vjuna (Misgurnus fossilis L.) v zavisimosti ot kislorodnogo rezima [Hatching period in weatherfish (Misgurnus fossilis L.) in dependence on oxygen condition]. Dokl. Akad. Nauk SSSR, 177, 5, 1245–1248 (in Russian). [Google Scholar]
  • Kottelat M. and Freyhof J., 2007. Handbook of European freshwater fishes, Kottelat, Cornol, Switzerland and Freyhof, Berlin, Germany, 646 p. [Google Scholar]
  • Kouril J., Hamackova J., Adamek Z., Sukop I. and Vachta R., 1996. The artificial propagation and culture of young weatherfish (Misgurnus fossilis L.). In: Kirchhofer A. and Hefti D. (eds.), Conservation of Endangered Freshwater Fish in Europe, Birkhäuser Verlag, Basel, 305–310. [Google Scholar]
  • Kryzanovskij S.G., 1949. Ekologo-morfologicseskije zakonomernosti razvitija karpovych, vjunovych i somovych ryb (Cyprinoidei i Siluroidei) [The rules of ecological and morphological development in cyprinid-, cobitid- and sheatfishes (Cyprinoidea and Siluroidea)]. Trudy Instituta Morfologii Zivotnych AN SSSR, 1, 5–332 (in Russian). [Google Scholar]
  • Kubota Z. and Matsui I., 1955. Morphological studies on the loach Misgurnus anguillicaudatus (Cantor). 2. Changes of shape with advance of growth. J. Shimonoseki Univ. Fish., 52, 2, 117–135. [Google Scholar]
  • Lusk S. and Pokorny J., 1964. Die Änderungen des Körpergewichts und einiger Körpermasse von Fischen unter dem Einfluss der Konservierung in 4% Formaldehydlösung. Folia Zoolog., 13, 2, 135–142 (in Czech with German summary). [Google Scholar]
  • Marteinsdottir G. and Steinarsson A., 1998. Maternal influence on the size and viability of Iceland cod Gadus morhua eggs and larvae. J. Fish. Biol., 52, 1241–1258. [Google Scholar]
  • Meyer L. and Hinrichs D., 2000. Microhabitat preferences and movements of the weatherfish, Misgurnus fossilis, in a drainage channel. Environ. Biol. Fish., 58, 297–306. [Google Scholar]
  • Ojanguren A.F. and Braña F., 2003. Thermal dependence of embryonic growth and development in brown trout. J. Fish. Biol., 62, 580–590. [CrossRef] [Google Scholar]
  • Ozernyuk N.D., Alekseeva T.A., Zinicijev V.V. and Zotin A.I., 1987. Ob optimalnych uslovijach indukciji ikry [The optimal condition for fish egg incubation]. Rybnoje Chozjajstvo, 7, 44–47 (in Russian). [Google Scholar]
  • Panagiotaki P. and Geffen A.J., 1992. Parental effects on size variation in fish larvae. J. Fish. Biol., 41, Suppl. B, 37–42. [Google Scholar]
  • Park J.Y. and Kim I.S., 1999. Structure and histochemistry of skin of mud loach, Misgurnus anguillicaudatus (Pisces, Cobitidae), from Korea. Korean J. Ichtyol., 11, 109–111. [Google Scholar]
  • Pavlov D.A., 2007. Morfologiceskaja izmencivost v rannem ontogeneze kostistych ryb [Morphological changes during early ontogeny in Teleostei], Geos, Moscow, 263 p. (in Russian). [Google Scholar]
  • Pekarik L., Kosco J., Kosuthova L. and Kosuth P., 2008. Coenological and habitat affinities of Cobitis elongatoides, Sabanejewia balcanica and Misgurnus fossilis in Slovakia. Folia Zoolog., 57, 1–2, 172–180. [Google Scholar]
  • Penaz M., Prokes M., Kouril J. and Hamackova J., 1983. Early development of the carp, Cyprinus carpio. Acta sci. nat. Acad. sci. Bohemoslov., 17, 2, 1–40. [Google Scholar]
  • Penaz M., Prokes M., Kouril J. and Hamackova J., 1989. Influence of water temperature on the early development and growth of the tench, Tinca tinca. Folia Zoolog., 38, 3, 275–287. [Google Scholar]
  • Pepin P., Orr D.C. and Anderson J.T., 1997. Time to hatch and larval size in relation to temperature and egg size in Atlantic cod (Gadus morhua). Can. J. Fish. Aquat. Sci., 54, Suppl. 1, 2–10. [Google Scholar]
  • Prokes M., Barus V., Penaz M., Hamackova J. and Kouril J., 1998. The effects of pH on the development of tench, Tinca tinca larvae. Folia Zoolog., 47, 2, 145–154. [Google Scholar]
  • Schiemer F., Keckeis H. and Kamler E., 2003. The early life history stages of riverine fish: ecophysiological and environmental bottlenecks. Comp. Biochem. Physiol. Physiol., 133, 439–449. [CrossRef] [Google Scholar]
  • Stouracova I., Penaz M., Kouril J. and Hamackova J., 1988. Influence of water temperature on some meristic counts in carp. Folia Zoolog., 37, 4, 375–382. [Google Scholar]
  • Suzuki R., 1953. Studies on the interfamiliar crossing between loach (Misgurnus anguillicaudatus) and goldfish (Carassius auratus). Jpn. J. Ichthyol., 3, 7–14 (in Japanese with English abstract). [Google Scholar]
  • Suzuki R., 1983. Multiple spawning of the cyprinid loach, Misgurnus anguillicaudatus. Aquaculture, 31, 2–4, 233–243. [CrossRef] [Google Scholar]
  • Wang Y., Hu M., Cao L., Yang Y. and Wang W., 2008. Effects of daphnia (Moina micrura) plus chlorella (Chlorella pyrenoidosa) or microparticle diets on growth and survival of larval loach (Misgurnus anguillicaudatus). Aquaculture Int., 16, 361–368. [CrossRef] [Google Scholar]
  • Ward J.V., 1998. Riverine landscapes: biodiversity patterns, disturbance regimes, and aquatic conservation. Biol. Conservat., 83, 269–278. [Google Scholar]
  • Watanabe M., Kobori N. and Matsumoto A., 1948. On the development of the Japanese loach. Collect. Breed., 10, 72–75 (in Japanese with English abstract). [Google Scholar]
  • Webb P.W. and Weihs D., 1986. Functional locomotor morphology of early life history stages of fish. Trans. Am. Fish. Soc., 115, 115–127. [Google Scholar]
  • Wieser W., 1991. Physiological energetics and ecophysiology. In: Winfield I.J. and Nelson J.S. (eds.), Cyprinid Fishes: Systematics, biology and exploitation, Fish and Fisheries Series, 3, Chapman & Hall, London, 426–455. [Google Scholar]
  • Wootton R.J., 1990. Ecology of Teleost Fishes, Fish and Fisheries Series, 1, Chapman & Hall, London, 404 p. [Google Scholar]
  • Yamagami K., 1988. Mechanisms of hatching in fish. Fish Physiol., 3, 447–499. [CrossRef] [Google Scholar]
  • Zdanovich V.V., Averyanova O.V. and Pushkar V.Y., 2001. Embrionalno-litchinotchnoe rozvitie vjuna Misgurnus fossilis pri postojannych i peroditchesky izmenajuschtchichsja temperaturach [The embryonic and larval development in weatherfish Misgurnus fossilis under constant and periodically changing temperature]. Vestnik Moskov. Univ., 16, 2, 41–45 (in Russian). [Google Scholar]
  • Zheng W.B., 1985. Observations on the embryonic and larval development of Misgurnus anguillicaudatus (Cantor). J. Fish. China/Shuichan Xuebao, 9, 1, 37–47. [Google Scholar]

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