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Functional and evolutionary insights from the genomes of three parasitoid Nasonia species.

机译:从三种寄生性纳森菌物种的基因组中获得功能和进化方面的见识。

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摘要

We report here genome sequences and comparative analyses of three closely related parasitoid wasps: Nasonia vitripennis, N. giraulti, and N. longicornis. Parasitoids are important regulators of arthropod populations, including major agricultural pests and disease vectors, and Nasonia is an emerging genetic model, particularly for evolutionary and developmental genetics. Key findings include the identification of a functional DNA methylation tool kit; hymenopteran-specific genes including diverse venoms; lateral gene transfers among Pox viruses, Wolbachia, and Nasonia; and the rapid evolution of genes involved in nuclear-mitochondrial interactions that are implicated in speciation. Newly developed genome resources advance Nasonia for genetic research, accelerate mapping and cloning of quantitative trait loci, and will ultimately provide tools and knowledge for further increasing the utility of parasitoids as pest insect-control agents.
机译:我们在这里报告基因组序列和三个密切相关的寄生类黄蜂的比较分析:Nasonia vitripennis,N. giraulti和N. longicornis。寄生物是节肢动物种群(包括主要的农业害虫和疾病媒介)的重要调节剂,而纳索尼亚是一种新兴的遗传模型,特别是对于进化和发育遗传学。主要发现包括鉴定功能性DNA甲基化工具套件;膜翅特定基因,包括多种毒液; Pox病毒,Wolbachia和Nasonia之间的横向基因转移;以及涉及物种形成的核线粒体相互作用中涉及的基因的快速进化。新开发的基因组资源推动了Nasonia的遗传研究,加速了数量性状基因座的作图和克隆,并将最终提供工具和知识,以进一步提高寄生虫作为害虫害虫防治剂的效用。

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