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Spectral Responses in Zebrafish Horizontal Cells Include a Tetraphasic Response and a Novel UV-Dominated Triphasic Response

机译:斑马鱼水平细胞中的光谱响应包括四相响应和新型的紫外线主导的三相响应。

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摘要

Zebrafish are tetrachromats with red (R, 570 nm), green (G, 480 nm), blue (B, 415 nm), and UV (U, 362 nm) cones. Although neurons in other cyprinid retinas are rich in color processing neural circuitry, spectral responses of individual neurons in zebrafish retina, a genetic model for vertebrate color vision, are yet to be studied. Using dye-filled sharp microelectrodes, horizontal cell voltage responses to light stimuli of different wavelengths and irradiances were recorded in a superfused eyecup. Spectral properties were assessed both qualitatively and quantitatively. Six spectral classes of horizontal cell were distinguished. Two monophasic response types (L1 and L2) hyperpolarized at all wavelengths. L1 sensitivities peaked at 493 nm, near the G cone absorbance maximum. Modeled spectra suggest equally weighted inputs from both R and G cones and, in addition, a “hidden opponency” from blue cones. These were classified as R−/G−/(b+). L2 sensitivities were maximal at 563 nm near the R cone absorbance peak; modeled spectra were dominated by R cones, with lesser G cone contributions. B and UV cone signals were small or absent. These are R−/g−. Four chromatic (C-type) horizontal cells were either depolarized (+) or hyperpolarized (−) depending on stimulus wavelength. These types are biphasic (R+/G−/B−) with peak excitation at 467 nm, between G and B cone absorbance peaks, UV triphasic (r−/G+/U−) with peak excitation at 362 nm similar to UV cones, and blue triphasic (r−/G+/B−/u−) and blue tetraphasic (r−/G+/B−/u+), with peak excitation at 409 and 411 nm, respectively, similar to B cones. UV triphasic and blue tetraphasic horizontal cell spectral responses are unique and were not anticipated in previous models of distal color circuitry in cyprinids.
机译:斑马鱼是具有红色(R,570 nm),绿色(G,480 nm),蓝色(B,415 nm)和UV(U,362 nm)锥的四色镜。尽管其他塞浦路斯人视网膜中的神经元具有丰富的颜色处理神经回路,但斑马鱼视网膜中单个神经元的光谱响应(脊椎动物彩色视觉的遗传模型)尚待研究。使用充满染料的尖锐微电极,在融合眼罩中记录了水平电池对不同波长和辐照度光刺激的电压响应。光谱性质进行了定性和定量评估。区分了水平细胞的六个光谱类别。两种单相响应类型(L1和L2)在所有波长下都是超极化的。 L1灵敏度在493 nm处达到峰值,接近G锥吸收最大。建模的光谱表明,来自R和G圆锥的权重相等,此外,来自蓝色圆锥的“隐性对手”。这些被分类为R- / G-/(b +)。在R锥吸收峰附近的563 nm处,L2灵敏度最大。建模的光谱以R锥为主,G锥的贡献较小。 B和UV锥信号很小或不存在。这些是R- / g-。根据刺激波长,对四个彩色(C型)水平细胞进行去极化(+)或超极化(-)。这些类型是双相(R + / G- / B-),其激发峰在467 nm处,位于G和B锥吸收峰之间; UV三相(r- / G + / U-),在362 nm处具有峰激发,类似于UV锥,和蓝色三相(r- / G + / B- / u-)和蓝色四相(r- / G + / B- / u +),其峰值激发分别在409和411 nm处,类似于B锥。紫外线的三相和蓝色四相水平细胞光谱响应是独特的,在塞浦路斯的远侧彩色电路的先前模型中没有预期到。

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