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2015 | 18 | 2 |

Tytuł artykułu

The effect of magnetic field on in vitro development of fungus-like organisms Saprolegnia parasitica on selected microbiological media

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN

Wydawca

-

Rocznik

Tom

18

Numer

2

Opis fizyczny

http://www.ejpau.media.pl/volume18/issue2/art-02.html

Twórcy

  • Division of Hydrobiology, Ichthyology and Biotechnology of Biotechnology of Reproduction, West Pomeranian University of Technology in Szczecin, K. Krolewicza 4, 71-550 Szczecin, Poland
autor
  • Institute of Experimental Biology, Division of Physiology and Toxicology, Kazimierz Wielki University in Bydgoszcz, Chodkiewicza 30, 85-064 Bydgoszcz, Poland
autor
  • Division of Hydrobiology, Ichthyology and Biotechnology of Biotechnology of Reproduction, West Pomeranian University of Technology in Szczecin, K. Krolewicza 4, 71-550 Szczecin, Poland
  • Division of Hydrobiology, Ichthyology and Biotechnology of Biotechnology of Reproduction, West Pomeranian University of Technology in Szczecin, K. Krolewicza 4, 71-550 Szczecin, Poland
autor
  • Division of Hydrobiology, Ichthyology and Biotechnology of Biotechnology of Reproduction, West Pomeranian University of Technology in Szczecin, K. Krolewicza 4, 71-550 Szczecin, Poland
autor
  • Division of Hydrobiology, Ichthyology and Biotechnology of Biotechnology of Reproduction, West Pomeranian University of Technology in Szczecin, K. Krolewicza 4, 71-550 Szczecin, Poland
autor
  • Division of Hydrobiology, Ichthyology and Biotechnology of Biotechnology of Reproduction, West Pomeranian University of Technology in Szczecin, K. Krolewicza 4, 71-550 Szczecin, Poland

Bibliografia

  • Ali E.H., 2007. Biodiversity of zoosporic fungi in polluted water drainages across Niles’ Delta region, Lower Egypt. Acta Mycol., 42, 99–111.
  • Ali S.E., Thoen E., Vrålstad T., Kristensen R., Evensen Ø., Skaar I., 2013. Development and reproduction of Saprolegnia species in biofilms. Vet. Microbiol., 163, 133–141.
  • Batko A., 1975. Zarys hydromykologii. [An outline of hydromycology]. PWN, Warszawa [in Polish].
  • Blank M., 1993. Electricity and magnetism in biology and medicine. San Francisco Press.
  • Chiou L.M., Chung M.C., Tung P.G., Hsu T., Yang J.S., 2004. The use of egg chorion glycoprotein of Epinephelus malabaricus for egg identification. J. Fish Biol., 65, 6, 1614–1621.
  • Czeczuga B., Kiziewicz B., 1999. Zoosporic fungi growing on the eggs of Carassius carassius (L.) in oligo- and eutrophic water. Pol. J. Environ. Stud., 8, 2, 63–66.
  • Czeczuga B., Kiziewicz B., Danilkiewicz Z., 2002. Zoosporic fungi growing on the specimens of certain fish species recently introduced to Polish waters. Acta Ichthyol. Piscat., 32, 2, 117–125.
  • Diéguez-Uribeondo J.J.M., Fregeneda-Grandes L., Cerenius L., Pérez-Iniesta E., Aller-Gancedo J.M., Tellería M.T., Martin M.P., 2007. Re-evaluation of enigmatic species complex Saprolegnia diclina – Saprolegnia parasitica based on morphological, physiological and molecular data. Fungal Genet. Biol., 44, 585–601.
  • Formicki K., 2008. Magnetoreception [In:] Finn R.N., Kapoor B.G., (Eds.) Fish larval physiology. Science Publisher, USA, 461–491.
  • Formicki K., Sobociński A., Winnicki A., 1993. Dynamics of water uptake by trout (Salmo trutta L.) eggs exposed after activation of magnetic field [In:] Blank M., (Eds.) Electricity and magnetism in biology and medicine. San Francisco Press, San Francisco, 759–760.
  • Gregoraszczuk E.Ł., 2004. Hodowle in vitro w toksykologii. [In vitro culture in toxicology] [In:] Stokłosowa S., (Eds.) Hodowla komórek i tkanek. Wyd. Naukowe PWN, 251–252 [in Polish].
  • Hagenmaier H.E., 1973. The hatching process in fish embryos: III. The structure, polysaccharide and protein cytochemistry of the chorion of the trout egg, Salmo gairdneri (Rich.). Acta Histochem., 47, 61–69.
  • Hagenmaier H.E., 1982. The hatching process in fish embryos. VIII. The chemical composition of the trout chorion (zona radiata) and its modification by the action of the hatching enzyme. Zool. Jb. Physiol., 89, 509–520.
  • Hamor T., Garside E.T., 1977: Quantitative composition of the fertilized ovum and constituent parts in the Atlantic salmon Salmo salar L. Can. J. Zool., 55, 1650–1655.
  • Hanelt M., Gareis M., Kollarczik B., 1994. Cytotoxicity of mycotoxins evaluated by the MTT-cell culture assay. Mycopathologia, 128, 167–174.
  • Hanson M., Karlsson L., Westerberg H., 1984. Magnetic material in European eel (Anguilla anguilla L.). Comp. Biochem. Physiol., 77A, 221–224.
  • Hatai K., Hoshiai G., 1992a. Mass mortality in cultured coho salmon (Oncorhynchus kisutch) due to Saprolegnia parasitica Coker. J. Wild. Dis., 28, 532–536.
  • Hatai K., Hoshiai G., 1992b. Saprolegniosis in culturated coho salomon (Oncorhynchus kisutch). Fish. Patol., 27, 233–234.
  • Hussein M.M.A., Hatai K., Nomura T., 2001. Saprolegniosis in salmonids and their eggs in Japan. J. Wildlife Dis., 37, 204–207.
  • Kirschvink J.L., 1997. Magnetoreception: Homing in on vertebrates. Nature, 390, 339–340.
  • Kirschvink J.L., Kobayashi-Kirschvink A., 1991. Is geomagnetic sensitivity real? Replication of the Walker-Bitterman conditioning experiment in honey bees. Am. Zool., 31, 169–185.
  • Kirschvink J.L., Walker M.M., 1986. Biogenic magnetite of higher organisms and the current status of the hypothesis of ferromagnetic magnetoreception [In:] Maret G., Kiepnhauer J., Boccara N. (Eds.) Biophysical effects of steady magnetic fields. Springer Verlag, Berlin-Heidelberg-New York, 181–188.
  • Kirschvink J.L., Walker M.M., Diebel C.E., 2001. Magnetite-based magnetoreception. Sensory System [In:] Current Opinion in Neurobiology, 11, 462–467.
  • Kirschvink J.L., Walker M.M., Chang S.B., Dizon A.E., Peterson K.A., 1985. Chains of single-domain magnetite particles in chinook salmon, Oncorhynchus tshawytscha. J. Comp. Physiol. A., 157, 375–381.
  • Kitancharoen N., Yuasa K., Hatai K., 1996. Effects of pH and temperature on growth of Saprolegnia diclina and S. parasitica isolated from various source. Mycoscience, 37, 385–390.
  • Kobayashi W., 1982. The fine structure and amino acid composition of the envelope of the chum salmon egg. J. Fat. Sci. Hokkaido Univ. Ser. VI. Zool., 23, 1, 1–15.
  • Kołodziejczyk L., Kuźna-Grygiel W., Gonet B., Podraza W., 2010. Extremely low frequency magnetic field and the hatching rate of Fasciola hepatica eggs, the fecundity and survival of liver-fluke infected snail, Lymnaea truncatula. Fol. Biol., (Kraków), 58, 157–161.
  • Lohmann K.J., 1985. Geomagnetic field detection by the western Atlantic spiny lobster, Panulirus argus. Mar. Behav. Physiol., 12, 1–17.
  • Mather J.G., Baker R.R., 1981. Magnetic sense of direction in woodmice for route-based navigation. Nature, 291, 152–155.
  • Meng H.Y., 1980. über die Ursachen von Saprolegniosen in schweizerischen Gewässern. Zürich, Eidgenössische. Techn. Hochsch. Diss. [in Deutsch].
  • Nagy P., Fischl G., 2004. Effect of static magnetic field on growth and sporulation of some plant pathogenic fungi. Bioelectromagnetics, 25, 316–318.
  • Ogura M., Kato M., Arai N., Sasada T., Sasaki Y., 1992. Magnetic particles in chum salmon (Oncorhynchus keta): Extraction and transmission electron microscopy. Can. J. Res., 70, 5, 874–877.
  • Pazur A., Schimek Ch., Galland P., 2007. Magnetoreception in microorganisms and fungi. CEJB 2, 4, 597–659.
  • Perkowki T., Formicki K., 1997. The effect of constant magnetic fields on respiration on rainbow trout (Oncorhynchus mykiss Walb.) embryos. Acta Ichthyol. Piscat., 27, 2, 41–56.
  • Potter T., Moore A., 1991. Salmon migration mystery: Scientists magnetic navigation theory. Fishing News, 4030, 3.
  • Quinn T.P., Groot C., 1983. Orientation of chum salmon (Oncorhynchus keta) after internal and external magnetic field alteration. Can. J. Fish. Aqua.t Sci., 40, 10, 1598–1606.
  • Riehl R., Patzner R.A., 1998. The modes of egg attachment in teleost fishes. Italian J. Zool., 65, 415–420.
  • Rizzo E., Sato Y., Barreto B.P., Godinho H.P., 2002. Adhesiveness and surface patterns of eggs in neotropical freshwater teleosts. J. Fish Biol., 61, 615–632.
  • Sandoval-Sierra J.V., Latif-Eugenin F., Martin M.P., Zaror L., Dieguez-Uribeondo J., 2014. Saprolegnia species affecting the salmonid aquaculture in Chile and their associations with fish developmental stage. Aquaculture, 434, 462–469.
  • Songe M.M., Thoen E., Evensen Ø. Skaar I., 2014. In vitro passages impact on virulence of Saprolegnia parasitica to Atlantic salmon, Salmo solar L. J. Fish Dis., 37, 825–834.
  • Tesch F.W., 1974. Speed and direction of silver and yellow eels, Anguilla anguilla, released and tracked in the open North Sea. Ber. Deut. Wiss. Komm. Meeresforsch, 23, 181–197.
  • Van West P., 2006. Saprolegnia parasitica, an oomycete pathogen with a fishy appetite: new challenges for an old problem. Mycologist, 20, 99–104.
  • Vega-Ramírez M.T., Moreno-Lafont M.C., Valenzuela-Garza R., Cervantes-Olivares R., Aller-Gancedo J.M., Fregeneda-Grandes J.M., Damas-Aguilar J.L., García-Flores V., López-Santiago R., 2013. New records of Saprolegniaceae isolated from rainbow trout, from their eggs, and water in a fish farm from the State of México. Rev. Mex. Biodivers., 84, 637–649.
  • Walcott C., 1978. Anomalies in the earth's magnetic field increase the scatter of pigeons' vanishing bearings [In:] Schmidt-Koenig K., Keeton W.T. (Eds.) Animal migration, navigation and homing. Berlin, Heidelberg, New York, Springer-Verlag, 143–151.
  • Willoughby L.G., 1994. Fungi and Fish Diseases. Stirling. Pisces Press.
  • Wiltschko R., Wiltschko W., 2005. Magnetic orientation and magnetoreception i birds and other animals. J. Comp. Physiol. A., 191, 675–693.
  • Winnicki A., Korzelecka-Orkisz A., Sobociński A., Tański A., Formicki K., 2004. Effects of the magnetic field on different forms of embryonic locomotor activity of northern pike, Esox lucius L. Acta Ichthyol. Piscat., 34, 193–203.

Typ dokumentu

Bibliografia

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Identyfikator YADDA

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