圆背角无齿蚌离体培养的外套膜组织钙代谢

唐敏, 石安静

唐敏, 石安静. 圆背角无齿蚌离体培养的外套膜组织钙代谢[J]. 水生生物学报, 2000, 24(1): 86-89.
引用本文: 唐敏, 石安静. 圆背角无齿蚌离体培养的外套膜组织钙代谢[J]. 水生生物学报, 2000, 24(1): 86-89.
TANG Min, SHI An-jin. CALCIUM METABOLISM OF THE CULTURED MANTLE TISSUE OF ANODONTA WOODIANA PACIFICA(HEUDE)[J]. ACTA HYDROBIOLOGICA SINICA, 2000, 24(1): 86-89.
Citation: TANG Min, SHI An-jin. CALCIUM METABOLISM OF THE CULTURED MANTLE TISSUE OF ANODONTA WOODIANA PACIFICA(HEUDE)[J]. ACTA HYDROBIOLOGICA SINICA, 2000, 24(1): 86-89.

圆背角无齿蚌离体培养的外套膜组织钙代谢

基金项目: 

国家自然科学基金资助项目编号:3957056

CALCIUM METABOLISM OF THE CULTURED MANTLE TISSUE OF ANODONTA WOODIANA PACIFICA(HEUDE)

  • 摘要: 本次实验采用离体组织培养技术研究外套膜组织的钙代谢,它排除了蚌体内的其他因素,如神经、激素等对外套膜生理、生化等方面的影响,并用组化方法对外套膜中钙及有关粘多糖的分布进行了观察研究,期望能进一步了解外套膜组织钙代谢调控的机理,同时,为淡水珍珠养殖业提供一些参考资料。
  • [1] 石安静等.河蚌体液渗透压测定及新设计的平衡盐溶液的组织培养[J].四川大学学报(自然科学版),1994,31(专辑):a189-193;b59-63;c78-83[2] Pearse A. G. E马仲魁等译).组织化学一理论和实用[M].北京:中国医药科技出版社,1990:614.[3] 郑国錩等.钙和细胞功能.细胞生物学进展[J],1990,2:160-200.[4] Walter L. An electron microscopic histochemical and X-ray microprobe study of sperites in a mussel [J].7issue and Cell, 1982, 14(1):61-67.[5] 杨小毅等.单细胞内Ca2+时空变化的激光共聚焦显微测定[J].生物化学与生物物理进展,1996,23(5):442445.[6] 汪弋等.Ca2+通过膜脂影响肌质网Ca2+ATP酶的活性与Ca2+转运功能[J].生物物理学报,1988,4:110115.[7] Paulo S. et al. Two types of action potentials in a secretory epithelium of a clam mantle [J] J. Exp. Biol.,1986,121: 179-195.[8] 宿燕岗等.牛磺酸跨膜转运的意义及机制[J].细胞生物学杂志,1997,19(1):4-9.[9] Pierce. S.K Osmolyte permeability in molluscan red cells is regulated by Ca2+ and membrane proteinphosphorylation: the present perspective [J]. J Exp. Zool., 1994,268:166-170.[10] Pierce S. K et al. Ionomycin produces an improved volume recovery by an increased efflux of taurinefrom hypopsmotically stressed molluscan red blood cells [J]. Cell Caicium, 1992, 13:321-327.[11] 宿燕岗等.牛磺酸对大鼠培养心肌细胞感染病毒后钙离子内流的影响[J].上海医科大学学报,1996,23(5):339-334.

    石安静等.河蚌体液渗透压测定及新设计的平衡盐溶液的组织培养[J].四川大学学报(自然科学版),1994,31(专辑):a189-193;b59-63;c78-83[2] Pearse A. G. E马仲魁等译).组织化学一理论和实用[M].北京:中国医药科技出版社,1990:614.[3] 郑国錩等.钙和细胞功能.细胞生物学进展[J],1990,2:160-200.[4] Walter L. An electron microscopic histochemical and X-ray microprobe study of sperites in a mussel [J].7issue and Cell, 1982, 14(1):61-67.[5] 杨小毅等.单细胞内Ca2+时空变化的激光共聚焦显微测定[J].生物化学与生物物理进展,1996,23(5):442445.[6] 汪弋等.Ca2+通过膜脂影响肌质网Ca2+ATP酶的活性与Ca2+转运功能[J].生物物理学报,1988,4:110115.[7] Paulo S. et al. Two types of action potentials in a secretory epithelium of a clam mantle [J] J. Exp. Biol.,1986,121: 179-195.[8] 宿燕岗等.牛磺酸跨膜转运的意义及机制[J].细胞生物学杂志,1997,19(1):4-9.[9] Pierce. S.K Osmolyte permeability in molluscan red cells is regulated by Ca2+ and membrane proteinphosphorylation: the present perspective [J]. J Exp. Zool., 1994,268:166-170.[10] Pierce S. K et al. Ionomycin produces an improved volume recovery by an increased efflux of taurinefrom hypopsmotically stressed molluscan red blood cells [J]. Cell Caicium, 1992, 13:321-327.[11] 宿燕岗等.牛磺酸对大鼠培养心肌细胞感染病毒后钙离子内流的影响[J].上海医科大学学报,1996,23(5):339-334.

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出版历程
  • 收稿日期:  1997-06-10
  • 修回日期:  1998-05-29
  • 发布日期:  2000-01-24

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