果蝇的类水平细胞 Dm9 神经元调节感光器输出,为早期视觉处理提供多种功能

C. Schnaitmann, Manuel Pagni, Patrik B. Meyer, Lisa Steinhoff, Vitus Oberhauser, D. Reiff
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引用次数: 0

摘要

果蝇的Dm9神经元被认为是脊椎动物外视网膜水平细胞的功能同源物。在这里,我们将神经元回路功能的遗传学剖析、Dm9和内感光器的双光子钙成像以及免疫组化分析结合起来,揭示了Dm9在早期视觉处理中的功能作用的新见解。我们的实验表明,Dm9 接收来自所有四种类型的内感光器 R7p、R7y、R8p 和 R8y 的输入。所有类型的 R7/R8 释放的组胺都会通过组胺受体 Ort 直接抑制 Dm9,并超过同时由对紫外线敏感的 R7 对 Dm9 产生的不依赖组胺的兴奋。反过来,Dm9 又向所有 R7/R8 提供抑制反馈,这对 R7 的颜色对手处理是足够的,但对 R8 却不是。R8 中的对色处理需要 R7 通过轴-轴突触和果蝇组胺第二受体 HisCl1 对同一映膜进行额外的突触抑制。值得注意的是,光遗传抑制 Dm9 会禁止所有类型的 R7/R8 中的颜色对手处理,并降低感光器终端的细胞内钙。后者可能是由于 Dm9 释放的兴奋性谷氨酸减少所致,并使感光器的整体敏感性转向更高的光强度。总之,我们的研究结果强调了 Dm9 在果蝇颜色对手处理中的关键作用,并提出了 Dm9 在调节内感光器光适应中的第二种作用。这些关于Dm9的新发现确实让人联想到脊椎动物视网膜中水平细胞的多功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Horizontal-cell like Dm9 neurons in Drosophila modulate photoreceptor output to supply multiple functions in early visual processing
Dm9 neurons in Drosophila have been proposed as functional homologs of horizontal cells in the outer retina of vertebrates. Here we combine genetic dissection of neuronal circuit function, two-photon calcium imaging in Dm9 and inner photoreceptors, and immunohistochemical analysis to reveal novel insights into the functional role of Dm9 in early visual processing. Our experiments show that Dm9 receive input from all four types of inner photoreceptor R7p, R7y, R8p, and R8y. Histamine released from all types R7/R8 directly inhibits Dm9 via the histamine receptor Ort, and outweighs simultaneous histamine-independent excitation of Dm9 by UV-sensitive R7. Dm9 in turn provides inhibitory feedback to all R7/R8, which is sufficient for color-opponent processing in R7 but not R8. Color opponent processing in R8 requires additional synaptic inhibition by R7 of the same ommatidium via axo-axonal synapses and the second Drosophila histamine receptor HisCl1. Notably, optogenetic inhibition of Dm9 prohibits color opponent processing in all types of R7/R8 and decreases intracellular calcium in photoreceptor terminals. The latter likely results from reduced release of excitatory glutamate from Dm9 and shifts overall photoreceptor sensitivity toward higher light intensities. In summary, our results underscore a key role of Dm9 in color opponent processing in Drosophila and suggest a second role of Dm9 in regulating light adaptation in inner photoreceptors. These novel findings on Dm9 are indeed reminiscent of the versatile functions of horizontal cells in the vertebrate retina.
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