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通过视网膜电图、趋光行为和视蛋白基因表达揭示的栉蚕(天鹅绒虫)的光谱敏感性。

Spectral sensitivity in Onychophora (velvet worms) revealed by electroretinograms, phototactic behaviour and opsin gene expression.

作者信息

Beckmann Holger, Hering Lars, Henze Miriam J, Kelber Almut, Stevenson Paul A, Mayer Georg

机构信息

Department of Animal Evolution and Development, Institute of Biology, University of Leipzig, Talstrasse 33, Leipzig D-04103, Germany Rudolf-Boehm-Institute of Pharmacology and Toxicology, University of Leipzig, Haertelstrasse 16-18, Leipzig D-04107, Germany

Department of Animal Evolution and Development, Institute of Biology, University of Leipzig, Talstrasse 33, Leipzig D-04103, Germany.

出版信息

J Exp Biol. 2015 Mar;218(Pt 6):915-22. doi: 10.1242/jeb.116780. Epub 2015 Jan 23.

Abstract

Onychophorans typically possess a pair of simple eyes, inherited from the last common ancestor of Panarthropoda (Onychophora+Tardigrada+Arthropoda). These visual organs are thought to be homologous to the arthropod median ocelli, whereas the compound eyes probably evolved in the arthropod lineage. To gain insights into the ancestral function and evolution of the visual system in panarthropods, we investigated phototactic behaviour, opsin gene expression and the spectral sensitivity of the eyes in two representative species of Onychophora: Euperipatoides rowelli (Peripatopsidae) and Principapillatus hitoyensis (Peripatidae). Our behavioural analyses, in conjunction with previous data, demonstrate that both species exhibit photonegative responses to wavelengths ranging from ultraviolet to green light (370-530 nm), and electroretinograms reveal that the onychophoran eye is maximally sensitive to blue light (peak sensitivity ∼480 nm). Template fits to these sensitivities suggest that the onychophoran eye is monochromatic. To clarify which type of opsin the single visual pigment is based on, we localised the corresponding mRNA in the onychophoran eye and brain using in situ hybridization. Our data show that the r-opsin gene (onychopsin) is expressed exclusively in the photoreceptor cells of the eye, whereas c-opsin mRNA is confined to the optic ganglion cells and the brain. Together, our findings suggest that the onychopsin is involved in vision, whereas c-opsin might have a photoreceptive, non-visual function in onychophorans.

摘要

栉蚕通常拥有一对单眼,这是从泛节肢动物(栉蚕+缓步动物+节肢动物)的最后一个共同祖先那里继承而来的。这些视觉器官被认为与节肢动物的中眼同源,而复眼可能是在节肢动物谱系中进化而来的。为了深入了解泛节肢动物视觉系统的原始功能和进化,我们研究了两种栉蚕的趋光行为、视蛋白基因表达以及眼睛的光谱敏感性:罗氏真栉蚕(栉蚕科)和希托伊恩斯原乳头栉蚕(栉蚕科)。我们的行为分析结合先前的数据表明,这两个物种对从紫外线到绿光(370 - 530纳米)的波长都表现出避光反应,视网膜电图显示栉蚕的眼睛对蓝光(峰值敏感性约为480纳米)最为敏感。根据这些敏感性进行的模板拟合表明,栉蚕的眼睛是单色的。为了弄清单一视觉色素基于哪种视蛋白类型,我们使用原位杂交在栉蚕的眼睛和大脑中定位了相应的mRNA。我们的数据表明,r - 视蛋白基因(栉蚕视蛋白)仅在眼睛的感光细胞中表达,而c - 视蛋白mRNA局限于视神经节细胞和大脑。总之,我们的研究结果表明,栉蚕视蛋白参与视觉,而c - 视蛋白可能在栉蚕中具有感光、非视觉功能。

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