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首页> 外文期刊>The Journal of Experimental Biology >Molecular characterization and expression of the UV opsin in bumblebees: three ommatidial subtypes in the retina and a new photoreceptor organ in the lamina
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Molecular characterization and expression of the UV opsin in bumblebees: three ommatidial subtypes in the retina and a new photoreceptor organ in the lamina

机译:大黄蜂中紫外线视蛋白的分子表征和表达:视网膜中的三种ommatidial亚型和椎板中的新感光细胞

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Ultraviolet-sensitive photoreceptors have been shown to be important for a variety of visual tasks performed by bees, such as orientation, color and polarization vision, yet little is known about their spatial distribution in the compound eye or optic lobe. We cloned and sequenced a UV opsin mRNA transcript from Bombus impatiens head-specific cDNA and, using western blot analysis, detected an eye protein band of similar to 41 kDa, corresponding to the predicted molecular mass of the encoded opsin. We then characterized UV opsin expression in the retina, ocelli and brain using immunocytochemistry. In the main retina, we found three different ommatidial types with respect to the number of UV opsin-expressing photoreceptor cells, namely ommatidia containing two, one or no UV opsin-immunoreactive cells. We also observed UV opsin expression in the ocelli. These results indicate that the cloned opsin probably encodes the P350 nm pigment, which was previously characterized by physiological recordings. Surprisingly, in addition to expression in the retina and ocelli, we found opsin expression in different parts of the brain. UV opsin immunoreactivity was detected in the proximal rim of the lamina adjacent to the first optic chiasm, which is where studies in other insects have found expression of proteins involved in the circadian clock, period and cryptochrome. We also found UV opsin immunoreactivity in the core region of the antennal lobe glomeruli and different clusters of perikarya within the protocerebrum, indicating a putative function of these brain regions, together with the lamina organ, in the entrainment of circadian rhythms. In order to test for a possible overlap of clock protein and UV opsin spatial expression, we also examined the expression of the period protein in these regions.
机译:紫外线敏感的感光体已被证明对蜜蜂执行的各种视觉任务(如方向,颜色和偏振视觉)很重要,但对它们在复眼或视叶中的空间分布知之甚少。我们从凤仙花头部特异性cDNA克隆并测序了UV视蛋白mRNA转录本,并使用Western blot分析,检测到了类似于41 kDa的眼蛋白带,对应于编码视蛋白的预测分子量。然后,我们使用免疫细胞化学技术表征了视蛋白在视网膜,小腿和大脑中的表达。在主要视网膜中,就表达紫外线视蛋白的感光细胞的数量而言,我们发现了三种不同的ommatidial类型,即含有两个,一个或不具有紫外线视蛋白免疫反应性细胞的小眼。我们还观察到了卵泡中的紫外线视蛋白表达。这些结果表明,所克隆的视蛋白可能编码P350 nm色素,该色素先前已通过生理记录进行了表征。出人意料的是,除了在视网膜和ocelli中表达外,我们还发现视蛋白在大脑的不同部位表达。在邻近第一个视交叉的薄层的近缘中检测到紫外线视蛋白免疫反应性,在该区域中其他昆虫的研究发现了昼夜节律,周期和隐色素涉及的蛋白质表达。我们还发现在视神经小球肾小球的核心区域和原大脑内perikkarya的不同簇的紫外线视蛋白免疫反应性,表明这些大脑区域以及椎板器官在昼夜节律的夹带中具有假定的功能。为了测试时钟蛋白和紫外线视蛋白空间表达的可能重叠,我们还检查了这些区域中周期蛋白的表达。

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