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米诺转座子在疟疾媒介斯氏按蚊中的整合后行为。

Post-integration behavior of a Minos transposon in the malaria mosquito Anopheles stephensi.

作者信息

Scali Christina, Nolan Tony, Sharakhov Igor, Sharakhova Maria, Crisanti Andrea, Catteruccia Flaminia

机构信息

Division of Cell and Molecular Biology, Imperial College London, SAF Building, Imperial College Road, London, SW7 2AZ, UK.

出版信息

Mol Genet Genomics. 2007 Nov;278(5):575-84. doi: 10.1007/s00438-007-0274-5. Epub 2007 Jul 19.

Abstract

Transposable elements represent important tools to perform functional studies in insects. In Drosophila melanogaster, the remobilization properties of transposable elements have been utilized for enhancer-trapping and insertional mutagenesis experiments, which have considerably helped in the functional characterization of the fruitfly genome. In Anopheles mosquitoes, the sole vectors of human malaria, as well as in other mosquito vectors of disease, the use of transposons has also been advocated to achieve the spread of anti-parasitic genes throughout field populations. Here we report on the post-integration behavior of the Minos transposon in both the germ-line and somatic tissues of Anopheles mosquitoes. Transgenic An. stephensi lines developed using the piggyBac transposon and expressing the Minos transposase were tested for their ability to remobilize an X-linked Minos element. Germ-line remobilization events were not detected, while somatic excisions and transpositions were consistently recovered. The analysis of these events showed that Minos activity in Anopheles cells is characterized by unconventional functionality of the transposon. In the two cases analyzed, re-integration of the transposon occurred onto the same X chromosome, suggesting a tendency for local hopping of Minos in the mosquito genome. This is the first report of the post-integration behavior of a transposable element in a human malaria vector.

摘要

转座元件是在昆虫中进行功能研究的重要工具。在黑腹果蝇中,转座元件的重新激活特性已被用于增强子捕获和插入诱变实验,这极大地有助于果蝇基因组的功能表征。在人类疟疾的唯一传播媒介按蚊以及其他疾病的蚊子传播媒介中,也有人主张使用转座子来实现抗寄生虫基因在野外种群中的传播。在此,我们报告了minos转座子在按蚊生殖系和体细胞组织中的整合后行为。使用piggyBac转座子构建并表达minos转座酶的转基因斯氏按蚊品系,被测试其重新激活X连锁minos元件的能力。未检测到生殖系中的重新激活事件,而体细胞中的切除和转座事件则持续出现。对这些事件的分析表明,按蚊细胞中的minos活性具有转座子的非常规功能特征。在分析的两个案例中,转座子重新整合到同一条X染色体上,表明minos在蚊子基因组中倾向于局部跳跃。这是关于人类疟疾传播媒介中转座元件整合后行为的首次报道。

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