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The attachment complex of brachiolaria larvae of the sea star Asterias rubens (Echinodermata): an ultrastructural and immunocytochemical study

机译:海洋之星臂癣幼虫附着力复合体:超微结构和免疫细胞化学研究

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The attachment complex of brachiolaria larvae of the asteroid Asterias rubens comprises three brachiolar arms and an adhesive disc located on the preoral lobe. The former are used in temporary attachment and sensory testing of the substratum, whereas the latter is used for permanent fixation to the substratum at the onset of metamorphosis. Brachiolar arms are hollow structures consisting of an extensible stem tipped by a crown of dome-like ciliated papillae. The papilla epidermis is composed of secretory cells (type A, B and C cells), non-secretory ciliated cells, neurosecretory-like cells and support cells. Type A and B secretory cells fill a large part of the papilla epidermis and are always closely associated. They presumably form a duo-gland adhesive system in which type A and B cells are respectively adhesive and de-adhesive in function. The adhesive disc is an epidermal structure mainly composed of secretory cells and support cells. Secretory cells produce the cement, which anchor the metamorphic larva to the substratum until the podia are developed. The relatedness between the composition of the adhesive material in the brachiolaria attachment complex and in the podia of adults was investigated by immunocytochemistry using antibodies raised against podial adhesive secretions of A. rubens. Type A secretory cells were the only immunolabelled cells indicating that their temporary adhesive shares common epitopes with the one of podia. The attachment pattern displayed by the individuals of A. rubens during the perimetamorphic period-temporary, permanent, temporary-is unique among marine non-vertebrate Metazoa.
机译:小行星臂腕幼虫的附着复合体包括三个臂腕臂和位于口腔前叶上的黏附盘。前者用于基质的临时附着和感觉测试,而后者则用于在变态开始时永久固定在基质上。腕臂臂是空心的结构,由可伸长的茎杆组成,该茎杆由圆顶状纤毛乳头状冠冠所倾斜。乳头表皮由分泌细胞(A,B和C型细胞),非分泌纤毛细胞,神经分泌样细胞和支持细胞组成。 A型和B型分泌细胞充满乳头表皮的大部分,并且始终紧密相关。它们大概形成了双腺体粘合系统,其中A型和B型细胞在功能上分别是粘合的和去粘合的。粘合盘是主要由分泌细胞和支持细胞组成的表皮结构。分泌细胞产生胶结物,将变质幼虫锚定在基质上,直到足部发育。通过免疫细胞化学,使用针对红曲霉的荚膜粘附分泌的抗体,通过免疫细胞化学研究了成年人的腕管附着复合体和足部的粘附材料的组成之间的相关性。 A型分泌细胞是唯一的免疫标记细胞,表明它们的临时粘合剂与足pod中的一个具有共同的表位。在海洋无脊椎动物后生动物的短形变态时期(临时,永久,暂时)中,红曲霉的个体表现出的依附模式是独特的。

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