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海绵动物的演化意义及其生物硅的仿生应用 被引量:4

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摘要 海绵动物是地球上最古老、最简单的动物,但对它在生物进化中的定位却经历了一个漫长而复杂的认识过程.作为“活化石”,海绵动物为生物演化研究提供了最好的证据;而对海绵动物研究更令人入胜的是近年来人们发现硅质海绵动物骨针的独特结构和良好光纤特性,从而开辟了利用纳米生物技术进行仿生合成的广泛研究领域.综述了海绵动物的发现及新的分子生物学进化证据,骨针硅蛋白催化合成生物硅的研究进展及仿生合成在纳米生物技术和医学领域的潜在应用.
出处 《科学通报》 EI CAS CSCD 北大核心 2007年第12期1372-1381,共10页 Chinese Science Bulletin
基金 国家自然科学基金(批准号:50402023) 欧洲联盟 德国研究委员会 德国科技部项目"Center of Excellence BIOTECmarin" 国际人类前沿科学计划资助
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参考文献96

  • 1Donati V. Auszug seiner Natur-Geschichte des Adriatischen Meeres. Halle: Francken, 1753
  • 2Spencer H. The Principles of Biology. London: Williams and Norgate, 1867
  • 3Pechenik J A. Biology of the Invertebrates. Boston: McGraw Hill, 2000
  • 4Saville Ken W. A Manual of the Infusoria: Including a Description of All Known Flagellate. Ciliate, and Tentaculiferous Protozoa, and an Account of the Organization and Affinities of the Sponges. London: David Bogue, 1880
  • 5DeLage Y, Herouard E. Traite de Zoologie Concrete. Paris: Le Soudier, 1899
  • 6Field K G, Olsen G Jo Lane D J, et al. Molecular phylogeny of the animal kingdom. Science, 1988, 239(4841):748-753
  • 7Pfeifer K, Haasemann M, Gamulin V, et al. S-type lectins occur also in invertebrates: High conservation of the carbohydrate recognition domain in the lectin genes from the marine sponge Geodia cydonium. Glycobiology, 1993, 3(2): 179-184
  • 8Muller W E G. Origin of metazoan adhesion molecules and adhesion receptors as deduced from their eDNA analyses from the marine sponge Geodia cydonium. Cell Tissue Res, 1997, 289(3): 383-395
  • 9Muller W E G, Schroder H C, Muller I M, et al. Phylogenetic relationship of ubiquitin repeats of the polyubiquitin gene from the marine sponge Geodia cydonium. J Molec Evol, 1994, 39(3): 369-377
  • 10Muller W E G. Molecular phylogeny of Metazoa (animals): Monophyletic origin. Naturwiss, 1995, 82(7): 321-329

二级参考文献37

  • 1杜家纬.生命科学与仿生学[J].生命科学,2004,16(5):317-323. 被引量:15
  • 2曲翊,张卫,李华,虞星炬,金美芳.Cultivation of marine sponges[J].Chinese Journal of Oceanology and Limnology,2005,23(2):194-198. 被引量:3
  • 3张维,地质科学,1987年,3期,231页
  • 4Kisailus D, Truong Q, Amemiya Y, et al. Self-assembled bifunctional surface mimics an enzymatic and templating protein for the synthesis of a metal oxide semiconductor[ J ]. Proceedings of the National Academy of Sciences of the United States of America,2006, 103(15) : 5 652-5 657.
  • 5Cha J N, Stueky G D, Morse D E, et al. Biomimetic synthesis of ordered silica structures mediated by block eopolypeptides [ J ].Nature, 2000, 403 : 289-292.
  • 6Krasko A, Lorenz B, Batel R, et al. Expression of silicatein and collagen genes in the marine sponge Suberites domuncula is controlled by silicate and myotrophin [ J ]. European Journal of Biochemistry, 2000, 267:4 878-4887.
  • 7Krasko A, Sehr der H C, Batel R, et al, Iron induces proliferation and morphogenesis in primmorphs from the marine sponge Suberites domuncula[ J], DNA and Cell Biology, 2002, 21 ( 1 ) :67 -80.
  • 8Uriz M J, Turon X, Becerro M A. Silica deposition in Demosponges: Spiculogenesis in Crambe erambe[ J]. Cell and Tissue Research, 2000, 301: 299-309.
  • 9李锦和.中国海域污着生物中的海绵[J].海洋科学集刊,1986,26:73-116.
  • 10Xue Song, ZhangHaitao, Wu Peichun, et al. Study on bioaetivity of extracts from marine sponges in Chinese sea[J]. Jonrnal of Experimental Marine Biology and Ecology, 2004, 298: 71-78.

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