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首页> 外文期刊>Fish Physiology and Biochemistry >Dim-light photoreceptor of chub mackerel Scomber japonicus and the photoresponse upon illumination with LEDs of different wavelengths
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Dim-light photoreceptor of chub mackerel Scomber japonicus and the photoresponse upon illumination with LEDs of different wavelengths

机译:mac鲭鱼的暗光感光体和不同波长的LED照明时的光响应

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摘要

To study the absorption characteristics of rhodopsin, a dim-light photoreceptor, in chub mackerel (Scomber japonicus) and the relationship between light wavelengths on the photoresponse, the rod opsin gene was cloned into an expression vector, pMT4. Recombinant opsin was transiently expressed in COS-1 cells and reconstituted with 11-cis-retinal. Cells containing the regenerated rhodopsin were solubilized and subjected to UV/Vis spectroscopic analysis in the dark and upon illumination. Difference spectra from the lysates indicated an absorption maximum of mackerel rhodopsin around 500 nm. Four types of light-emitting diode (LED) modules with different wavelengths (red, peak 627 nm; cyan, 505 nm; blue, 442 nm; white, 447 + 560 nm) were constructed to examine their effects on the photoresponse in chub mackerel. Behavioral responses of the mackerels, including speed and frequencies acclimated in the dark and upon LED illumination, were analyzed using an underwater acoustic camera. Compared to an average speed of 22.25 +/- A 1.57 cm/s of mackerel movement in the dark, speed increased to 22.97 +/- A 0.29, 24.66 +/- A 1.06, 26.28 +/- A 2.28, and 25.19 +/- A 1.91 cm/s upon exposure to red, blue, cyan, and white LEDs, respectively. There were increases of 103.48 +/- A 1.58, 109.37 +/- A 5.29, 118.48 +/- A 10.82, and 109.43 +/- A 3.92 %, respectively, in the relative speed of the fishes upon illumination with red, blue, cyan, and white LEDs compared with that in the dark (set at 100 %). Similar rate of wavelength-dependent responses was observed in a frequency analysis. These results indicate that an LED emitting a peak wavelength close to an absorption maximum of rhodopsin is more effective at eliciting a response to light.
机译:为了研究暗淡光感受器视紫红质在in鱼中的吸收特性以及光响应上光波长之间的关系,将视杆视蛋白基因克隆到表达载体pMT4中。重组视蛋白在COS-1细胞中瞬时表达,并用11-顺式-视网膜重构。溶解含有再生视紫红质的细胞,并在黑暗和光照下进行UV / Vis光谱分析。来自裂解物的不同光谱表明鲭鱼视紫红质在500nm附近的最大吸收。构造了四种不同波长的发光二极管(LED)模块(红色,峰值627 nm;青色,505 nm;蓝色,442 nm;白色,447 + 560 nm),以检查它们对their鱼光响应的影响。 。使用水下声相机分析鲭鱼的行为响应,包括在黑暗中以及在LED照明下适应的速度和频率。相比之下,鲭鱼在黑暗中的平均移动速度为22.25 +/- A 1.57 cm / s,速度增加到22.97 +/- A 0.29、24.66 +/- A 1.06、26.28 +/- A 2.28和25.19 + / -分别暴露于红色,蓝色,青色和白色LED时的速度为1.91 cm / s。在用红色,蓝色,青色和白色LED与黑暗(设置为100%)相比。在频率分析中观察到相似的波长依赖性响应速率。这些结果表明,发射峰值波长接近视紫红质的最大吸收的LED在引起对光的响应方面更有效。

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