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橙眼 DarkJedi GAL4 线的构建:一个由本科生主导的利用 CRISPR/Cas9 进行基因组编辑和筛选的项目。

Orange maker: a CRISPR/Cas9-mediated genome editing and screening project to generate orange-eyed DarkJedi GAL4 lines by undergraduate students.

机构信息

Department of Pharmacy Practice and Pharmaceutical Sciences, College of Pharmacy, University of Minnesota, Duluth, MN, 55812, USA.

出版信息

Sci Rep. 2024 Aug 13;14(1):18778. doi: 10.1038/s41598-024-69946-8.

Abstract

One of the greatest strengths of Drosophila genetics is its easily observable and selectable phenotypic markers. The mini-white marker has been widely used as a transgenic marker for Drosophila transgenesis. Flies carrying a mini-white construct can exhibit various eye colors ranging from pale orange to intense red, depending on the insertion site and gene dosage. Because the two copies of the mini-white marker show a stronger orange color, this is often used for selecting progenies carrying two transgenes together in a single chromosome after chromosomal recombination. However, some GAL4 lines available in the fly community originally have very strong red eyes. Without employing another marker, such as GFP, generating a recombinant chromosome with the strong red-eyed GAL4 and a desired UAS-transgene construct may be difficult. Therefore, we decided to change the red eyes of GAL4 lines to orange color. To change the eye color of the fly, we tested the CRISPR/Cas9 method with a guide RNA targeting the white gene with OK371-GAL4 and elav-GAL4. After a simple screening, we have successfully obtained multiple lines of orange-eyed OK371-GAL4 and elav-GAL4 that still maintain their original expression patterns. All of these simple experiments were performed by undergraduate students, allowing them to learn about a variety of different genetic experiments and genome editing while contributing to the fly research community by creating fruit fly lines that will be used in real-world research.

摘要

果蝇遗传学的最大优势之一是其易于观察和可选择的表型标记。mini-white 标记已被广泛用作果蝇转基因的转基因标记。携带 mini-white 构建体的苍蝇可以表现出各种眼色,从淡橙色到深红色不等,具体取决于插入位置和基因剂量。由于 mini-white 标记的两个拷贝显示出更强的橙色,因此这通常用于在染色体重组后在单个染色体上选择同时携带两个转基因的后代。然而,一些在果蝇社区中可用的 GAL4 线最初具有非常强烈的红色眼睛。如果不使用另一个标记物(如 GFP),则生成带有强红色眼睛的 GAL4 和所需 UAS-transgene 构建体的重组染色体可能很困难。因此,我们决定将 GAL4 线的眼睛颜色改为橙色。为了改变苍蝇的眼睛颜色,我们用靶向 white 基因的 guide RNA 测试了 CRISPR/Cas9 方法,使用的是 OK371-GAL4 和 elav-GAL4。经过简单的筛选,我们已经成功获得了多个橙色眼睛的 OK371-GAL4 和 elav-GAL4 系,它们仍然保持着原来的表达模式。所有这些简单的实验都是由本科生完成的,使他们能够了解各种不同的遗传实验和基因组编辑,同时通过创建将用于实际研究的果蝇系为果蝇研究社区做出贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fc6/11322649/9193606ddb83/41598_2024_69946_Fig1_HTML.jpg

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