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纤毛和视杆状光感受器细胞回路在海洋浮游动物中形成了一个光谱深度测量计。

Ciliary and rhabdomeric photoreceptor-cell circuits form a spectral depth gauge in marine zooplankton.

机构信息

Max Planck Institute for Developmental Biology, Tübingen, Germany.

Living Systems Institute, University of Exeter, Exeter, United Kingdom.

出版信息

Elife. 2018 May 29;7:e36440. doi: 10.7554/eLife.36440.

Abstract

Ciliary and rhabdomeric photoreceptor cells represent two main lines of photoreceptor-cell evolution in animals. The two cell types coexist in some animals, however how these cells functionally integrate is unknown. We used connectomics to map synaptic paths between ciliary and rhabdomeric photoreceptors in the planktonic larva of the annelid and found that ciliary photoreceptors are presynaptic to the rhabdomeric circuit. The behaviors mediated by the ciliary and rhabdomeric cells also interact hierarchically. The ciliary photoreceptors are UV-sensitive and mediate downward swimming in non-directional UV light, a behavior absent in ciliary-opsin knockout larvae. UV avoidance overrides positive phototaxis mediated by the rhabdomeric eyes such that vertical swimming direction is determined by the ratio of blue/UV light. Since this ratio increases with depth, larvae may use it as a depth gauge during vertical migration. Our results revealed a functional integration of ciliary and rhabdomeric photoreceptor cells in a zooplankton larva.

摘要

纤毛和光感受棒状细胞代表了动物中两种主要的光感受细胞进化路线。这两种细胞类型在一些动物中共存,但它们如何在功能上整合尚不清楚。我们使用连接组学来绘制环节动物浮游幼虫的纤毛和光感受棒状细胞之间的突触路径,发现纤毛光感受器对光感受棒状电路具有突触前作用。纤毛和光感受棒状细胞介导的行为也存在层次相互作用。纤毛光感受器对 UV 敏感,并介导在非定向 UV 光下的向下游动,而在纤毛视蛋白敲除幼虫中则不存在这种行为。UV 回避会覆盖光感受棒状眼睛介导的正趋光性,使得垂直游动方向由蓝光/UV 光的比值决定。由于这个比值随着深度增加,幼虫可能在垂直迁移过程中利用它作为深度计。我们的结果揭示了浮游幼虫的纤毛和光感受棒状细胞在功能上的整合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2463/6019069/f8df8c72b776/elife-36440-fig1.jpg

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