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果蝇中多种视觉感受器类型的显微镜检查。

Microscopy of multiple visual receptor types in Drosophila.

作者信息

Stark William S, Thomas Charles F

机构信息

Department of Biology, Saint Louis University, St. Louis, MO 63103-2010, USA.

出版信息

Mol Vis. 2004 Dec 15;10:943-55.

PMID:15616481
Abstract

PURPOSE

To take advantage of specialized microscopic methods and transgenic stocks, to understand the properties of each rhodopsin now that Drosophila's six rhodopsins (Rh1-Rh6) have been isolated.

METHODS

The visual pigment containing organelles, the rhabdomeres, were imaged in live flies with the pseudopupil in standard and confocal microscopes. Five transgenic Drosophila strains in which Rh2-Rh6 replaced the native Rh1 in R1-6 receptors were compared with normal controls (Rh1 in R1-6) for two lines of work: (1) autofluorescence of rhodopsin; and (2) imaging rhodopsin. Other transgenic Drosophila in which the Rh1, Rh3, and Rh4 promoters drive the green fluorescent protein (GFP) reporter were used for other purposes, especially distinguishing the R7/8 types.

RESULTS

We show, for the first time, that visual pigment appears pink in white light, especially for Rh1 and Rh6. While showing that rhodopsin-metarhodopsin conversions were understood by their respective wavelengths, we discovered that, for Rh6, rhodopsin and metarhodopsin could not be spectrally separated. Relative fluorescent emission, Rh1=Rh5>Rh6>Rh2>Rh4>Rh3, was of little value in explaining differences between bright and dim autofluorescence in R7. Rather, analysis of GFP driven by Rh3 and Rh4 promoters show that the rhabdomeres with bright autofluorescence are the ones that contain Rh4.

CONCLUSIONS

Careful imaging provides a useful approach to analyzing Drosophila rhodopsins. Amid a considerable body of microscopic data, we identify the sources of bright and dim R7 rhabdomeres, and we demonstrate the unique properties of Rh6.

摘要

目的

利用专门的显微镜方法和转基因品系,鉴于果蝇的六种视紫红质(Rh1 - Rh6)已被分离,了解每种视紫红质的特性。

方法

在标准显微镜和共聚焦显微镜下,通过假瞳孔对活蝇中含有视觉色素的细胞器——视杆进行成像。将Rh2 - Rh6取代R1 - 6受体中天然Rh1的五种转基因果蝇品系与正常对照(R1 - 6中的Rh1)进行两项研究比较:(1)视紫红质的自发荧光;(2)视紫红质成像。其他由Rh1、Rh3和Rh4启动子驱动绿色荧光蛋白(GFP)报告基因的转基因果蝇用于其他目的,特别是区分R7/8类型。

结果

我们首次表明,视觉色素在白光下呈粉红色,尤其是Rh1和Rh6。虽然表明视紫红质 - 变视紫红质的转换可通过其各自的波长来理解,但我们发现,对于Rh6,视紫红质和变视紫红质在光谱上无法分离。相对荧光发射强度Rh1 = Rh5>Rh6>Rh2>Rh4>Rh3,对于解释R7中明亮和暗淡自发荧光之间的差异价值不大。相反,对由Rh3和Rh4启动子驱动的GFP的分析表明,具有明亮自发荧光的视杆是含有Rh4的视杆。

结论

仔细成像为分析果蝇视紫红质提供了一种有用的方法。在大量的显微镜数据中,我们确定了明亮和暗淡的R7视杆的来源,并证明了Rh6的独特特性。

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