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Malaria vector control in the third millennium: progress and perspectives of molecular approaches

机译:第三个千年的疟疾媒介控制:分子方法的进展和观点

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Remarkable progress has been made towards a deeper understanding of mosquito biology since the completion of the Anopheles gambiae Giles genome project. Combined with the development of efficient transgenic technologies for genetic modification of major vector species and the availability of powerful molecular, genetic and bioinformatics tools, this is allowing the identification of genes involved in mosquito biological functions crucial to malaria transmission, ranging from host-seeking behaviour and innate immunity to insecticide resistance. Moreover, population genetic studies are beginning to elucidate the complex structure of vector populations. Finally, novel methods for malaria control are emerging that are based on the use of genetically modified mosquitoes either to interrupt the journey of the Plasmodium parasite within its insect host or to suppress those mosquito species that function as vectors for parasite transmission. Copyright (c) 2007 Society of Chemical Industry.
机译:自冈比亚按蚊吉尔斯基因组计划完成以来,在更深入地了解蚊子生物学方面取得了显着进展。结合对主要载体物种进行遗传修饰的高效转基因技术的发展以及强大的分子,遗传和生物信息学工具的可用性,这使得能够鉴定与疟疾传播至关重要的蚊子生物学功能有关的基因,包括寻找宿主的行为对杀虫剂具有天生的免疫力。此外,群体遗传学研究开始阐明载体群体的复杂结构。最后,用于控制疟疾的新方法正在出现,这些方法基于转基因蚊子的使用,以打断疟原虫在其昆虫宿主内的传播或抑制那些充当寄生虫传播媒介的蚊子。版权所有(c)2007年化学工业协会。

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