Bairati A, Vitellaro Zuccarello L
Cell Tissue Res. 1976 Feb 12;166(2):219-34. doi: 10.1007/BF00227043.
The ultrastructure of the byssus of Mytilus galloprovincialis was analysed by transmission electron microscopy in thin sections of either embedded or frozen samples. All parts of the byssus (stem core laminae, stem outer laminae, threads proximal and distal parts) appear to be formed by the same basic filamentous components organized in different ways at the submicroscopic level and embedded in a variable quantity of matrix. The filaments appear to consist of a central electron-lucent zone (3 nm in diameter), surrounded by an electron-dense rim (total diameter 7 nm). The matrix has a granular or microfilamentous structure. The stem and the threads differ greatly in their submicroscopic organization, but their basic constituents (filaments and matrix) are similar. Peculiar filamentous banded elements (FBE) were found mainly in the stem outer laminae. A relation between the ultrastructure and mechanical properties of the different parts of the byssus was established. The presence of collagen is discussed; since no morphological evidence of any of the known forms of collagen organization was revealed by electron microscopy, it is suggested that byssus collagen may be localized in the matrix and in the FBE.
利用透射电子显微镜对地中海贻贝足丝的超薄结构进行了分析,样本采用包埋或冷冻切片。足丝的所有部分(茎干核心薄片、茎干外层薄片、丝的近端和远端部分)似乎都由相同的基本丝状成分构成,这些成分在亚微观层面以不同方式组织排列,并嵌入不同数量的基质中。这些细丝似乎由一个中央电子透明区(直径3纳米)组成,周围环绕着一个电子致密边缘(总直径7纳米)。基质具有颗粒状或微丝状结构。茎干和丝在亚微观组织上有很大差异,但它们的基本成分(细丝和基质)相似。在茎干外层薄片中主要发现了特殊的丝状带状元素(FBE)。建立了足丝不同部分的超微结构与力学性能之间的关系。文中讨论了胶原蛋白的存在;由于电子显微镜未揭示任何已知形式的胶原蛋白组织的形态学证据,因此有人认为足丝胶原蛋白可能定位于基质和FBE中。