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[theor基因对多毛纲动物杜氏阔沙蚕色素沉着的作用:I.色素沉积的时间进程和部位]

[Action of theor-gene on pigmentation inPlatynereis dumerilii (Polychaeta) : I. Time-course and sites of pigment deposition].

作者信息

Fischer Albrecht

机构信息

Lehrstuhl für Experimentelle Morphologie, Zoologisches Institut der Universität zu Köln, Deutschland.

出版信息

Wilhelm Roux Arch Entwickl Mech Org. 1971 Sep;168(3):226-241. doi: 10.1007/BF00634065.

Abstract
  1. In theor-mutant ofPlatynereis dumerilii pigmentation is deficient in the iridophores and retinal supporting cells. The course of pigment deposition was examined in wildtype larvae (Figs. 2-5) in order to obtain a standard for further observations. The first detectable eye pigments are orange-colored pigment granules in the visual cells in 54-hour larvae (Fig. 2). The juvenile eye is complete in 60-hour larvae when a brown pigment cup consisting of retinal supporting cell pigment becomes visible (Fig. 3). White iridophore pigment is seen in most 72-hour larvae (Fig. 4). 2. The pterin pigments causing pigmentation of supporting cells are deposited in pterinosomes characterized by internal lamellae (Fig. 9). In mutant supporting cells, which are almost devoid of pigments, granules are also present, but internal lamellae are defective (Fig. 10). 3. The supporting cell pigments are not inherited but are synthesized actively during eye differentiation in wildtype larvae, as shown by thin layer chromatography (Figs. 6, 7), 4. In mutant larvae, no pigmentation or at most a faint brownish hue is visible in supporting cells (Fig. 8a).
摘要
  1. 在杜氏阔沙蚕(Platynereis dumerilii)的theor突变体中,虹彩细胞和视网膜支持细胞的色素沉着不足。为了获得进一步观察的标准,对野生型幼虫的色素沉积过程进行了检查(图2 - 5)。最早可检测到的眼色素是54小时龄幼虫视觉细胞中的橙色色素颗粒(图2)。当由视网膜支持细胞色素组成的棕色色素杯可见时,60小时龄幼虫的幼眼发育完全(图3)。在大多数72小时龄幼虫中可见白色虹彩细胞色素(图4)。2. 导致支持细胞色素沉着的蝶呤色素沉积在具有内部薄片的蝶呤体中(图9)。在几乎没有色素的突变体支持细胞中,也存在颗粒,但内部薄片有缺陷(图10)。3. 支持细胞色素不是遗传而来的,而是在野生型幼虫眼分化过程中积极合成的,薄层色谱分析表明了这一点(图6、7)。4. 在突变体幼虫中,支持细胞中没有色素沉着,或者最多只有淡淡的褐色(图8a)。

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