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箱形水母中多个光系统的免疫组织化学证据。

Immunohistochemical evidence for multiple photosystems in box jellyfish.

作者信息

Ekström Peter, Garm Anders, Pålsson Jonas, Vihtelic Thomas S, Nilsson Dan-Eric

机构信息

Department of Cell and Organism Biology, Zoology Building, Lund University, Helgonavägen 3, S-223 62, Lund, Sweden.

出版信息

Cell Tissue Res. 2008 Jul;333(1):115-24. doi: 10.1007/s00441-008-0614-8. Epub 2008 May 27.

Abstract

Cubomedusae (box jellyfish) possess a remarkable visual system with 24 eyes distributed in four sensory structures termed rhopalia. Each rhopalium is equipped with six eyes: two pairs of pigment cup eyes and two unpaired lens eyes. Each eye type probably captures specific features of the visual environment. To investigate whether multiple types of photoreceptor cells are present in the rhopalium, and whether the different eye types possess different types of photoreceptors, we have used immunohistochemistry with a range of vertebrate opsin antibodies to label the photoreceptors, and electroretinograms (ERG) to determine their spectral sensitivity. All photoreceptor cells of the two lens eyes of the box jellyfish Tripedalia cystophora and Carybdea marsupialis displayed immunoreactivity for an antibody directed against the zebrafish ultraviolet (UV) opsin, but not against any of eight other rhodopsin or cone opsin antibodies tested. In neither of the two species were the pigment cup eyes immunoreactive for any of the opsin antibodies. ERG analysis of the Carybdea lower lens eyes demonstrated a single spectral sensitivity maximum at 485 nm suggesting the presence of a single opsin type. Our data demonstrate that the lens eyes of box jellyfish utilize a single opsin and are thus color-blind, and that there is probably a different photopigment in the pigment cup eyes. The results support our hypothesis that the lens eyes and the pigment cup eyes of box jellyfish are involved in different and specific visual tasks.

摘要

立方水母纲(箱型水母)拥有一个非凡的视觉系统,其24只眼睛分布在四个被称为泳钟体的感觉结构中。每个泳钟体配备有六只眼睛:两对色素杯眼和两只不成对的晶状体眼。每种眼睛类型可能捕捉视觉环境的特定特征。为了研究泳钟体中是否存在多种类型的光感受器细胞,以及不同类型的眼睛是否拥有不同类型的光感受器,我们使用了一系列脊椎动物视蛋白抗体进行免疫组织化学来标记光感受器,并使用视网膜电图(ERG)来确定它们的光谱敏感性。箱型水母瘤手曳水母和袋状灯水母的两只晶状体眼中的所有光感受器细胞,对针对斑马鱼紫外线(UV)视蛋白的抗体呈免疫反应,但对测试的其他八种视紫红质或视锥视蛋白抗体均无反应。在这两个物种中,色素杯眼对任何视蛋白抗体均无免疫反应。对袋状灯水母下部晶状体眼的ERG分析表明,在485nm处有一个单一的光谱敏感性最大值,这表明存在单一类型的视蛋白。我们的数据表明,箱型水母的晶状体眼利用单一视蛋白,因此是色盲,并且色素杯眼中可能存在不同的光色素。结果支持了我们的假设,即箱型水母的晶状体眼和色素杯眼参与不同且特定的视觉任务。

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