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用于神经遗传学的果蝇转基因 RNAi 系资源。

A Drosophila resource of transgenic RNAi lines for neurogenetics.

机构信息

Howard Hughes Medical Institute, Janelia Farm Research Campus, Ashburn, Virginia 20147, USA.

出版信息

Genetics. 2009 Aug;182(4):1089-100. doi: 10.1534/genetics.109.103630. Epub 2009 Jun 1.

Abstract

Conditional expression of hairpin constructs in Drosophila is a powerful method to disrupt the activity of single genes with a spatial and temporal resolution that is impossible, or exceedingly difficult, using classical genetic methods. We previously described a method (Ni et al. 2008) whereby RNAi constructs are targeted into the genome by the phiC31-mediated integration approach using Vermilion-AttB-Loxp-Intron-UAS-MCS (VALIUM), a vector that contains vermilion as a selectable marker, an attB sequence to allow for phiC31-targeted integration at genomic attP landing sites, two pentamers of UAS, the hsp70 core promoter, a multiple cloning site, and two introns. As the level of gene activity knockdown associated with transgenic RNAi depends on the level of expression of the hairpin constructs, we generated a number of derivatives of our initial vector, called the "VALIUM" series, to improve the efficiency of the method. Here, we report the results from the systematic analysis of these derivatives and characterize VALIUM10 as the most optimal vector of this series. A critical feature of VALIUM10 is the presence of gypsy insulator sequences that boost dramatically the level of knockdown. We document the efficacy of VALIUM as a vector to analyze the phenotype of genes expressed in the nervous system and have generated a library of 2282 constructs targeting 2043 genes that will be particularly useful for studies of the nervous system as they target, in particular, transcription factors, ion channels, and transporters.

摘要

在果蝇中,发夹结构的条件表达是一种强大的方法,可以在空间和时间分辨率上破坏单个基因的活性,而使用经典的遗传方法是不可能或极其困难的。我们之前描述了一种方法(Ni 等人,2008 年),通过 phiC31 介导的整合方法,使用 Vermilion-AttB-Loxp-Intron-UAS-MCS(VALIUM)将 RNAi 构建体靶向基因组,该载体包含作为选择标记的 Vermilion、允许在基因组 attP 着陆位点进行 phiC31 靶向整合的 attB 序列、两个 UAS 五聚体、hsp70 核心启动子、多克隆位点和两个内含子。由于与转基因 RNAi 相关的基因活性敲低水平取决于发夹构建体的表达水平,因此我们生成了我们最初载体的许多衍生物,称为“VALIUM”系列,以提高该方法的效率。在这里,我们报告了对这些衍生物进行系统分析的结果,并将 VALIUM10 确定为该系列中最理想的载体。VALIUM10 的一个关键特征是存在 gypsy 绝缘子序列,可显著提高敲低水平。我们记录了 VALIUM 作为载体分析神经系统中表达的基因表型的功效,并生成了一个针对 2043 个基因的 2282 个构建体的文库,这些构建体将特别有助于神经系统的研究,因为它们针对转录因子、离子通道和转运体。

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