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红海星(Asterias rubens)管足分泌的粘附材料的微观和纳米结构。

Micro- and nanostructure of the adhesive material secreted by the tube feet of the sea star Asterias rubens.

作者信息

Hennebert Elise, Viville Pascal, Lazzaroni Roberto, Flammang Patrick

机构信息

Université de Mons-Hainaut, Académie Universitaire Wallonie-Bruxelles, Laboratoire de Biologie Marine, 6 Avenue du Champ de Mars, B-7000 Mons, Belgium.

出版信息

J Struct Biol. 2008 Oct;164(1):108-18. doi: 10.1016/j.jsb.2008.06.007. Epub 2008 Jun 24.

Abstract

To attach to underwater surfaces, sea stars rely on adhesive secretions produced by specialised organs, the tube feet. Adhesion is temporary and tube feet can also voluntarily become detached. The adhesive material is produced by two types of adhesive secretory cells located in the epidermis of the tube foot disc, and is deposited between the disc surface and the substratum. After detachment, this material remains on the substratum as a footprint. Using LM, SEM, and AFM, we described the fine structure of footprints deposited on various substrata by individuals of Asterias rubens. Ultrastructure of the adhesive layer of attached tube feet was also investigated using TEM. Whatever the method used, the adhesive material appeared as made up of globular nanostructures forming a meshwork deposited on a thin homogeneous film. This appearance did not differ according to whether the footprints were fixed or not, and whether they were observed hydrated or dry. TEM observations suggest that type 2 adhesive cells would be responsible for the release of the material constituting the homogeneous film whereas type 1 adhesive cells would produce the material forming the meshwork. This reticulated pattern would originate from the arrangement of the adhesive cell secretory pores on the disc surface.

摘要

为了附着在水下表面,海星依靠由特殊器官——管足产生的粘性分泌物。附着力是暂时的,管足也可以主动脱离。粘性物质由位于管足盘表皮的两种粘性分泌细胞产生,并沉积在盘表面和基质之间。脱离后,这种物质会作为足迹留在基质上。我们使用光学显微镜(LM)、扫描电子显微镜(SEM)和原子力显微镜(AFM)描述了红海星个体在各种基质上留下的足迹的精细结构。还使用透射电子显微镜(TEM)研究了附着管足的粘附层的超微结构。无论使用何种方法,粘性物质看起来都是由球形纳米结构组成,形成一个沉积在薄均质膜上的网络。这种外观在足迹是否固定以及观察时是湿润还是干燥的情况下并无差异。透射电子显微镜观察表明,2型粘性细胞负责释放构成均质膜的物质,而1型粘性细胞产生形成网络的物质。这种网状图案源于盘表面粘性细胞分泌孔的排列。

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