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利用内源性多聚泛素启动子在所有冈比亚按蚊生活阶段进行多组织 GAL4 介导的基因表达。

Multi-tissue GAL4-mediated gene expression in all Anopheles gambiae life stages using an endogenous polyubiquitin promoter.

机构信息

Liverpool School of Tropical Medicine, Vector Biology Department, Liverpool, UK.

Institut Pasteur, Genetics and Genomics of Insect Vectors, CNRS Unit URA3012, Paris, France.

出版信息

Insect Biochem Mol Biol. 2018 May;96:1-9. doi: 10.1016/j.ibmb.2018.03.005. Epub 2018 Mar 22.

Abstract

The ability to manipulate the Anopheles gambiae genome and alter gene expression effectively and reproducibly is a prerequisite for functional genetic analysis and for the development of novel control strategies in this important disease vector. However, in vivo transgenic analysis in mosquitoes is limited by the lack of promoters active ubiquitously. To address this, we used the GAL4/UAS system to investigate the promoter of the An. gambiae Polyubiquitin-c (PUBc) gene and demonstrated its ability to drive expression in mosquito cell culture before incorporation into An. gambiae transgenic driver lines. To generate such lines, piggyBac-mediated insertion was used to identify genomic regions able to sustain widespread expression and to create φC31 docking lines at these permissive sites. Patterns of expression induced by PUBc-GAL4 drivers carrying single intergenic insertions were assessed by crossing with a novel responder UAS-mCD8:mCherry line that was created by φC31-mediated integration. Amongst the drivers created at single, unique chromosomal integration loci, two were isolated that induced differential expression levels in a similar multiple-tissue spatial pattern throughout the mosquito life cycle. This work expands the tools available for An. gambiae functional analysis by providing a novel promoter for investigating phenotypes resulting from widespread multi-tissue expression, as well as identifying and tagging genomic sites that sustain broad transcriptional activity.

摘要

有效且可重复地操纵冈比亚按蚊基因组并改变基因表达是进行功能遗传分析以及开发这种重要病媒控制新策略的前提。然而,活体转基因分析在蚊子中受到普遍缺乏活性启动子的限制。为了解决这个问题,我们使用 GAL4/UAS 系统研究了冈比亚按蚊多泛素-c(PUBc)基因的启动子,并在将其整合到冈比亚按蚊转基因驱动线之前,证明了它在蚊子细胞培养物中驱动表达的能力。为了产生这种系,我们使用 piggyBac 介导的插入来鉴定能够维持广泛表达的基因组区域,并在这些许可位点创建 φC31 对接线。通过与通过 φC31 介导的整合创建的新型响应者 UAS-mCD8:mCherry 线杂交,评估了携带单个基因间插入的 PUBc-GAL4 驱动子诱导的表达模式。在所创建的携带单个独特染色体整合位点的驱动子中,有两个被分离出来,它们在蚊子生命周期的整个过程中以相似的多组织空间模式诱导出不同的表达水平。这项工作通过提供一个新的启动子来研究广泛的多组织表达导致的表型,以及鉴定和标记维持广泛转录活性的基因组位点,从而扩展了冈比亚按蚊功能分析的工具。

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