Department of Biological Sciences, University of Notre Dame, Notre Dame, Indiana, United States of America.
PLoS One. 2011;6(8):e23121. doi: 10.1371/journal.pone.0023121. Epub 2011 Aug 8.
The retina of the mosquito Aedes aegypti can be divided into four regions based on the non-overlapping expression of a UV sensitive Aaop8 rhodopsin and a long wavelength sensitive Aaop2 type rhodopsin in the R7 photoreceptors. We show here that another rhodopsin, Aaop9, is expressed in all R7 photoreceptors and a subset of R8 photoreceptors. In the dorsal region, Aaop9 is expressed in both the cell body and rhabdomere of R7 and R8 cells. In other retinal regions Aaop9 is expressed only in R7 cells, being localized to the R7 rhabdomere in the central and ventral regions and in both the cell body and rhabdomere within the ventral stripe. Within the dorsal-central transition area ommatidia do not show a strict pairing of R7-R8 cell types. Thus, Aaop9 is coexpressed in the two classes of R7 photoreceptors previously distinguished by the non-overlapping expression of Aaop8 and Aaop2 rhodopsins. Electroretinogram analysis of transgenic Drosophila shows that Aaop9 is a short wavelength rhodopsin with an optimal response to 400-450 nm light. The coexpressed Aaop2 rhodopsin has dual wavelength sensitivity of 500-550 nm and near 350 nm in the UV region. As predicted by the spectral properties of each rhodopsin, Drosophila photoreceptors expressing both Aaop9 and Aaop2 rhodopsins exhibit a uniform sensitivity across the broad 350-550 nm light range. We propose that rhodopsin coexpression is an adaptation within the R7 cells to improve visual function in the low-light environments in which Ae. aegypti is active.
根据在 R7 光感受器中非重叠表达的 UV 敏感的 Aaop8 视蛋白和长波长敏感的 Aaop2 型视蛋白,伊蚊的视网膜可分为四个区域。我们在这里显示,另一种视蛋白,Aaop9,在所有 R7 光感受器和一部分 R8 光感受器中表达。在背侧区域,Aaop9 在 R7 和 R8 细胞的细胞体和光感受器中均表达。在其他视网膜区域,Aaop9 仅在 R7 细胞中表达,定位于中央和腹侧区域的 R7 光感受器的光感受器中,以及腹侧条纹内的细胞体和光感受器中。在背-中央过渡区域,小眼不显示 R7-R8 细胞类型的严格配对。因此,Aaop9 在以前通过 Aaop8 和 Aaop2 视蛋白的非重叠表达来区分的两类 R7 光感受器中共同表达。转基因果蝇的视网膜电图分析表明,Aaop9 是一种短波长视蛋白,对 400-450nm 光的最佳响应。共表达的 Aaop2 视蛋白具有 500-550nm 的双波长敏感性和在 UV 区域中接近 350nm 的敏感性。根据每种视蛋白的光谱特性预测,表达 Aaop9 和 Aaop2 视蛋白的果蝇光感受器在广泛的 350-550nm 光范围内表现出均匀的敏感性。我们提出,视蛋白共表达是 R7 细胞中的一种适应,以提高在白纹伊蚊活跃的低光环境中的视觉功能。