Cold Tolerance and Ice Nucleation Temperature of Medaka (Oryzias latipes) Embryos with Different Cryoprotectant Treatments
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概要
- 論文の詳細を見る
The cold tolerance and ice nucleation temperature of medaka embryos in three embryonic stages were investigated with different cryoprotectant treatments. The ice nucleation temperatures of the embryos in every stage showed a decreasing tendency by cryoprotectant treatment, in the order of trehalose, DMSO, and a combination of trehalose and DMSO. Further, the ice nucleation temperatures of the control embryos were depressed with the embryonic development. However, when the embryos were treated with the cryoprotectants, the stage dependency on the ice nucleation temperatures could not be recognized for 8 cell and optic bud stages, and only at the eyed stage the ice nucleation temperatures were significantly lower than those in early embryonic stages. On the other hand, the cold tolerance of the embryo at a temperature below 4℃, which was examined at the temperature range without occurrence of ice nucleation, became higher in every stage by cryoprotectant treatments. As for the stage dependency, it could be found that the cold tolerance of the embryos treated with cryoprotectants did not show a large difference among the stages, however, in the case of control embryo the cold tolerance at the exposure temperature below 4℃ showed an increasing tendency as the stage developed. As the conclusion, it was suggested that the lowering of the ice nucleation temperature of the embryos led to the increase in the survival rate of embryos at the cold temperature without ice nucleation, although other factors such as the development stage should be considered in.
- 低温生物工学会の論文
- 2001-12-28
著者
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Suzuki Toru
Department Of Ubiquitous Preventive Medicine Graduate School Of Medicine The University Of Tokyo
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Struessmann C
Department Of Aquatic Biosciences Tokyo University Of Fisheries
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Strussmann Carlos
Department Of Aquatic Biosciences Tokyo University Of Fisheries
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Kawai Kiyoshi
Department Of Food Science And Technology Tokyo University Of Marine Science And Technology
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Kawai Kiyoshi
Department Of Biofunctional Science And Technology Graduate School Of Biosphere Science Hiroshima Un
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TAKAI Rikuo
Department of Food Science and Technology, Tokyo University of Fisheries
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Takai Rikuo
Department Of Food Science And Technology Tokyo University Of Marine Science And Technology
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Takai Rikuo
Department Of Food Science And Technology Tokyo University Of Fisheries
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ROUTRAY Padmanav
Department of Food Science and Technology, Tokyo University of Fisheries
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KIMIZUKA Norihito
Department of Food Science and Technology, Tokyo University of Fisheries
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Routray Padmanav
Department Of Food Science And Technology Tokyo University Of Fisheries
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Kimizuka Norihito
Department Of Food Science And Technology Tokyo University Of Fisheries
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Suzuki Toru
Department Of Food Science And Technology Tokyo University Of Marine Science And Technology
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Kawai Kiyoshi
Department Of Biochemistry Gifu University School Of Medicine
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Suzuki Toru
Department Of Cardiovascular Medicine Graduate School Of Medicine The University Of Tokyo
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Suzuki Toru
Department Of Biosphere And Environmental Sciences Faculty Of Environment Systems Rakuno Gakuen Univ
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Suzuki T
Department Of Food Science And Technology Tokyo University Of Fisheries
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Suzuki Toru
Department of Applied Electronics, Faculty of Industrial Science and Technology, Tokyo University of Science, 2641 Yamazaki, Noda, Chiba 278-8510, Japan
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