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Dynamics of skeleton formation in the Lake Baikal sponge Lubomirskia baicalensis. Part Ⅰ. Biological and biochemical studies

机译:贝加尔湖海绵Lubomirskia baicalensis的骨架形成动力学。第一部分。生物和生化研究

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In ancient Lake Baikal (East Siberia), fresh-water sponges have diversified to an extraordinary degree. The skeleton of Lubomirskia baicalensis, which attains a size of up to 1 m, is constructed from spicules, which are cemented into longitudinal bundles. Our X-ray analysis revealed that the architecture of the specimens follows a highly ordered radiate accretive growth pattern. The spicules have a central axial canal with an axial filament inside. This organic filament is composed of sili-catein, the major enzyme involved in silica formation of the spicules. We found that the specific activity of sili-catein in samples from the non-growing (basal) zone is much lower than in those from the growth zone (tips) and that even the composition of this molecule differs in these regions. The present study shows for the first time that the turnover of silicatein, the major element of the axial canal of sponge spicules, changes within a sponge specimen depending on the region in which it is found.
机译:在古老的贝加尔湖(西伯利亚东部)中,淡水海绵的发展程度非常高。黄LuLubomirskia baicalensis的骨骼最大长度为1 m,是由针刺构成的,将其粘结成纵向束。我们的X射线分析表明,标本的结构遵循高度有序的辐射增生生长模式。针状体具有中央轴向管,内部具有轴向细丝。这种有机细丝由硅-catein组成,后者是与针头的二氧化硅形成有关的主要酶。我们发现,来自非生长(基础)区域的样品中硅-catein的比活性比生长区域(尖端)的样品中的低得多,甚至该分子的组成在这些区域中也有所不同。本研究首次表明,在海绵标本中,硅酸盐的转换是海绵针轴向管的主要元素,其变化取决于所发现的区域。

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