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Assessing fitness costs for transgenic Aedes aegypti expressing the GFP marker and transposase genes

机译:评估表达GFP标记和转座酶基因的埃及伊蚊的适应成本

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The development of transgenic mosquitoes that are refractory to the transmission of human diseases such as malaria, dengue, and yellow fever has received much interest due to the ability to transform a number of vector mosquito species with transposable elements. Transgenic strains of mosquitoes have been generated with molecular techniques that exhibit a reduced capacity to transmit pathogens. These advancements have led to questions regarding the fitness of transgenic mosquitoes and the ability of transformed mosquitoes to compete and effectively spread beneficial genes through nontrans-formed field populations, the core requirement of a genetically based control strategy aimed at reducing the spread of mosquito-borne human disease. Here we examine the impact of transgenesis on the fitness of Aedes aegypti, a mosquito that transmits yellow fever. Mosquitoes were altered with two types of transgene, the enhanced GFP gene and two transposase genes from the Hermes and MOS1 transposable elements. We examined the effects of these elements on the survivorship, longevity, fecundity, sex ratio, and sterility of transformed mosquitoes and compared results to the nontrans-formed laboratory strain. We show that demographic parameters are significantly diminished in transgenic mosquitoes relative to the untransformed laboratory strain. Reduced fitness in transgenic mosquitoes has important implications for the development and utilization of this technology for control programs based on manipulative molecular modification.
机译:由于能够转化具有转座因子的多种媒介蚊种的能力,对人类疾病如疟疾,登革热和黄热病的传播难以抵抗的转基因蚊子的发展引起了人们的极大兴趣。用分子技术已经产生了蚊子的转基因菌株,该技术显示出降低的传播病原体的能力。这些进步导致人们对转基因蚊子的适应性以及转化后的蚊子通过非转化田间种群竞争和有效传播有益基因的能力提出质疑,这是旨在减少蚊子传播的基于遗传的控制策略的核心要求。人类疾病。在这里,我们研究了转基因对埃及伊蚊的适应性的影响,埃及伊蚊传播黄热病。蚊子被两种类型的转基因改变,增强的GFP基因和两个来自Hermes和MOS1转座因子的转座酶基因。我们检查了这些元素对转化蚊子的存活率,寿命,繁殖力,性别比和无菌性的影响,并将结果与​​未转化的实验室菌株进行了比较。我们显示,相对于未转化的实验室菌株,转基因蚊子中的人口统计学参数显着降低。转基因蚊子的适应性降低对基于操纵分子修饰的控制程序开发和利用该技术具有重要意义。

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