近代双壳类贝壳微观结构的形态多样性及其生态学意义

K. Brom, K. Szopa
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引用次数: 2

摘要

软体动物在进化过程中对环境的适应导致了生物矿物外骨骼-壳的形成。它们外壳的主要化合物是碳酸钙,以方解石和文石为代表。矿物部分与生物聚合物基质一起形成多种类型的微观结构,这些微观结构在质地上各不相同。某些双壳类具有不同类型的内壳微结构。研究了来自不同地点和环境条件的双壳类物种(淡水物种-鸭蚌(Anodonta anatina Linnaeus, 1758)和海洋物种-普通蛤(Cerastoderma edule Linnaeus, 1758), lyrate亚洲硬蛤(Meretrix lyrata Sowerby II, 1851)和蓝贻贝(Mytilus edulis Linnaeus, 1758)。表明壳内微观结构与壳的形态和厚度对其在变化环境中的生存能力和在捕食者攻击中幸存的概率具有重要影响。此外,对软体动物结构进行更详细的研究可能会创造出具有机械抗性的纳米材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Morphological diversity of microstructures occurring in selected recent bivalve shells and their ecological implications
Abstract Environmental adaptation of molluscs during evolution has led to form biomineral exoskeleton – shell. The main compound of their shells is calcium carbonate, which is represented by calcite and/or aragonite. The mineral part, together with the biopolymer matrix, forms many types of microstructures, which are differ in texture. Different types of internal shell microstructures are characteristic for some bivalve groups. Studied bivalve species (freshwater species – duck mussel (Anodonta anatina Linnaeus, 1758) and marine species – common cockle (Cerastoderma edule Linnaeus, 1758), lyrate Asiatic hard clam (Meretrix lyrata Sowerby II, 1851) and blue mussel (Mytilus edulis Linnaeus, 1758)) from different locations and environmental conditions, show that the internal shell microstructure with the shell morphology and thickness have critical impact to the ability to survive in changing environment and also to the probability of surviving predator attack. Moreover, more detailed studies on molluscan structures might be responsible for create mechanically resistant nanomaterials.
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