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Hard tissue regeneration in Strombus Gigas, the giant queen conch

机译:Strombus Gigas的硬组织再生,巨大的女王

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Hard tissue regeneration (i.e. shell repair) is an important biomineralization process in mollusks. Rapid regeneration is important in avoiding loss of fluids and preventing attacks by predators. We have studied such tissue regeneration in the Queen conch (Strombus Gigas) by inserting an abiotic glass cover slide between the mantle tissue and the shell. The glass cover slides were removed after mineralization periods extending from 6 hours to 4 days, and the deposited materials on the glass substrates ("flat pearls") analyzed by X-ray diffraction, and scanning and transmission electron microscopy. Although the CaCO{sub}3 in native Queen conch shell is exclusively aragonite, calcite was detected in the regenerated materials grown on glass substrates. Calcite formation occurred only during the very early stage of mineralization and the initial minerals formed were soon overgrown by aragonite. The initial aragonite overgrowth had a spherulitic morphology, and was thus relatively poorly oriented; after this spherulitic transient, the microstructure was recognizable as the crossed-lamellar structure of the natural shell. Thus, shell regeneration on abiotic substrates differs from shell formation during growth of conchs only in the very early stage. Once the crossed-lamellar microstructure has formed, further hard tissue development is identical to that occurring during natural shell growth.
机译:硬组织再生(即壳修复)是软体动物中的重要生物矿化方法。快速再生对于避免损失流体并通过捕食者防止攻击是重要的。我们通过将非生物玻璃盖滑动在地幔组织和壳体之间插入的非生物玻璃盖滑动,我们研究了这种组织再生。在从6小时至4天延伸的矿化期后除去玻璃盖滑块,并通过X射线衍射分析的玻璃基板上的沉积材料(“扁平珍珠”,以及扫描和透射电子显微镜。虽然天然女王己壳中的Caco {亚} 3独家化,但在玻璃基板上生长的再生材料中检测到方解石。在矿化的早期阶段仅发生方解石形成,并且形成的初始矿物很快被Aragonite覆盖。初始的杂草过度生长具有嗜球素形态,因此相对较差;在该阵挛性瞬变之后,微观结构可被识别为天然壳的交叉层状结构。因此,非生物底物上的壳再生不同于壳体的壳体形成,仅在早期的阶段。一旦交叉层状微观结构形成,就在天然壳生长期间,进一步的硬组织发育与发生的进一步存在。

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