YU Lian-gang, YANG Ming-xing. Special Growth Morphology and Genesis of Nacreous Layer of Hyriopsis Cumingi from E'zhou, Hubei Province[J]. Journal of Gems & Gemmology, 2006, 8(2): 25-29.
Citation: YU Lian-gang, YANG Ming-xing. Special Growth Morphology and Genesis of Nacreous Layer of Hyriopsis Cumingi from E'zhou, Hubei Province[J]. Journal of Gems & Gemmology, 2006, 8(2): 25-29.

Special Growth Morphology and Genesis of Nacreous Layer of Hyriopsis Cumingi from E'zhou, Hubei Province

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  • Received Date: April 11, 2006
  • The growth morphology of nacreous layer of shell of freshwater Hyriopsis Cumingi from E’zhou, Hubei Province, is studied by using the polarizing microscope.The results indicate that, besides the normal shape of sheet,the special morphology of crystallization aggregates in nacreous layer consists of the highlight band, tiny fibrous layer, prismatic layer and yellowish brown band or zone.The formation of highlight band and tiny fibrous layer is associated with the abnormal secretion of epithelial cell on the mantle tissues. The prismatic layer on the growth root of the shell may be the texture of recrystallization caused by the external mechanic force. The content variation of organic matrix in the yellowish-brown band or zone shows that mussel’s metabolization gradually retrieves from the abnormal to the normal states. The parallel laminations in the nacreous layer indicate that the secretion surface of mantle tissues maintains constant migration from the root to the rim of shell. The growth laminations on both sides of the prismatic layer suggest the two movement directions of secretion surface of mantle tissues, one is from the mussel’s growth root to the rim on the internal surface of the shell,the other is from the external to the internal of the shell vertically to the nacreous layer.
  • [1]
    Heuer A H, Fink D J, Laria VJ, et al. Innovative materials processing strategies[J]. Science, 1992, 255(28):1098-1105.
    [2]
    Watabe N. Crystal growth of calcium carbonate in invetebrate[J]. Prog Crystal Growth Charact, 1981, (4):99-147.
    [3]
    Schaffer T E, Zanetti C T, Proksch R, et al. Does abalone nacre formed by hetereoepitaxial nucleation or by growth through mineral bridge[J]. Chem Mater, 1997, (9):1731-1740.
    [4]
    张刚生, 谢先德. 贝壳珍珠层微结构及成因理论[J]. 矿物岩石, 2000, 1(1):11-16.
    [5]
    陶靖, 徐怡庄, 翁诗甫. 珍珠和贝壳珍珠层的傅立叶变化红外光谱[J]. 光谱学与光谱分析, 1998, 18(3):307-310.
    [6]
    张刚生, 谢先德. 贝壳珍珠层中文石晶体择优取向研究[J]. 无机材料学报, 2000, 15(4):765-768.
    [7]
    冯庆玲, 崔福斋, 李恒德. 贝壳珍珠层中文石晶体的取向畴[A]. 中国材料研究学会. 生物及环境材料[C]. 北京:科学出版社, 1997. 210-213.
    [8]
    刘小明. 河蚌外套膜新结构及分泌物初步研究[J]. 水生生物学报, 1989, 13(3):294-296.
    [9]
    刘小明. 淡水贝类贝壳多层构造形成研究[J]. 动物学报, 1994, 40(3):221-226.
    [10]
    石安静, 胡曦璇, 邱安东. 三角帆蚌珍珠囊形成的研究[J]. 水产学报, 1985, 9(3):247-252.
    [11]
    胡曦璇, 石安静. 珍珠囊研究概括[J]. 水生生物学报, 1994, 18(1):76-81.
    [12]
    Weiner S, Hood L. Soluble protein of the organic matrix of mollusk shells:a potential template for shell formation[J]. Science, 1975, 190(5):987-988.

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