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首页> 外文期刊>The Journal of Heredity >Fitness of transgenic Anopheles stephensi mosquitoes expressing the SM1 peptide under the control of a vitellogenin promoter.
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Fitness of transgenic Anopheles stephensi mosquitoes expressing the SM1 peptide under the control of a vitellogenin promoter.

机译:在卵黄蛋白原启动子的控制下,表达SM1肽的转基因斯蒂芬按蚊的适应性。

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摘要

Three transgenic Anopheles stephensi lines were established that strongly inhibit transmission of the mouse malaria parasite Plasmodium berghei. Fitness of the transgenic mosquitoes was assessed based on life table analysis and competition experiments between transgenic and wild-type mosquitoes. Life table analysis indicated low fitness load for the 2 single-insertion transgenic mosquito lines VD35 and VD26 and no load for the double-insertion transgenic mosquito line VD9. However, in cage experiments, where each of the 3 homozygous transgenic mosquitoes was mixed with nontransgenic mosquitoes, transgene frequency of all 3 lines decreased with time. Further experiments suggested that reduction of transgene frequency is a consequence of reduced mating success, reduced reproductive capacity, and/or insertional mutagenesis, rather than expression of the transgene itself. Thus, for transgenic mosquitoes released in the field to be effective in reducing malaria transmission, a driving mechanism will be required.
机译:建立了三个转基因按蚊斯蒂芬斯系,它们强烈抑制了小鼠疟原虫伯氏疟原虫的传播。基于生命表分析和转基因蚊子与野生型蚊子之间的竞争实验,评估了转基因蚊子的适应性。生命表分析表明,两种单插入转基因蚊子系VD35和VD26的适应力很低,而双插入转基因蚊子系VD9的适应力很低。但是,在笼子实验中,将3个纯合转基因蚊子中的每一个与非转基因蚊子混合,所有3个品系的转基因频率均随时间降低。进一步的实验表明,转基因频率的降低是交配成功率降低,生殖能力降低和/或插入诱变的结果,而不是转基因本身的表达。因此,为了使在现场释放的转基因蚊子有效地减少疟疾的传播,将需要一种驱动机制。

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