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蝇视觉系统中天窗定向的模态特异型回路。

Modality-Specific Circuits for Skylight Orientation in the Fly Visual System.

机构信息

Freie Universität Berlin, Fachbereich Biologie, Chemie und Pharmazie, Institut für Biologie - Abteilung Neurobiologie, Königin-Luise Strasse 1-3, 14195 Berlin, Germany.

Department of Biology, New York University, 100 Washington Square East, New York, NY 10003, USA.

出版信息

Curr Biol. 2019 Sep 9;29(17):2812-2825.e4. doi: 10.1016/j.cub.2019.07.020. Epub 2019 Aug 8.

DOI:10.1016/j.cub.2019.07.020
PMID:31402302
Abstract

In the fly optic lobe, ∼800 highly stereotypical columnar microcircuits are arranged retinotopically to process visual information. Differences in cellular composition and synaptic connectivity within functionally specialized columns remain largely unknown. Here, we describe the cellular and synaptic architecture in medulla columns located downstream of photoreceptors in the dorsal rim area (DRA), where linearly polarized skylight is detected for guiding orientation responses. We show that only in DRA medulla columns both R7 and R8 photoreceptors target to the bona fide R7 target layer where they form connections with previously uncharacterized, modality-specific Dm neurons: two morphologically distinct DRA-specific cell types (termed Dm-DRA1 and Dm-DRA2) stratify in separate sublayers and exclusively contact polarization-sensitive DRA inputs, while avoiding overlaps with color-sensitive Dm8 cells. Using the activity-dependent GRASP and trans-Tango techniques, we confirm that DRA R7 cells are synaptically connected to Dm-DRA1, whereas DRA R8 form synapses with Dm-DRA2. Finally, using live imaging of ingrowing pupal photoreceptor axons, we show that DRA R7 and R8 termini reach layer M6 sequentially, thus separating the establishment of different synaptic connectivity in time. We propose that a duplication of R7→Dm circuitry in DRA ommatidia serves as an ideal adaptation for detecting linearly polarized skylight using orthogonal e-vector analyzers.

摘要

在果蝇的视神经叶中,约有 800 个高度定型的柱状微电路呈视网膜状排列,以处理视觉信息。在功能特化的柱内,细胞组成和突触连接的差异在很大程度上仍不清楚。在这里,我们描述了位于光感受器下游的背缘区(DRA)中的髓质柱内的细胞和突触结构,在那里线性偏振天光被检测用于引导定向反应。我们发现,只有在 DRA 髓质柱中,R7 和 R8 光感受器都靶向真正的 R7 靶层,在那里它们与以前未表征的、模态特异性的 Dm 神经元形成连接:两种形态上不同的 DRA 特异性细胞类型(称为 Dm-DRA1 和 Dm-DRA2)分层在单独的亚层中,仅与偏振敏感的 DRA 输入接触,同时避免与颜色敏感的 Dm8 细胞重叠。使用活性依赖的 GRASP 和 trans-Tango 技术,我们证实 DRA R7 细胞与 Dm-DRA1 形成突触连接,而 DRA R8 则与 Dm-DRA2 形成突触连接。最后,通过对新生蛹光感受器轴突的活体成像,我们表明 DRA R7 和 R8 末端依次到达 M6 层,从而在时间上分离不同突触连接的建立。我们提出,DRA 小眼光感受器中 R7→Dm 电路的重复是使用正交 e-vector 分析器检测线性偏振天光的理想适应。

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