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Genome sequence of Anopheles sinensis provides insight into genetics basis of mosquito competence for malaria parasites

机译:中华按蚊的基因组序列为了解疟疾寄生虫蚊子能力的遗传学基础提供了见识

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Background Anopheles sinensis is an important mosquito vector of Plasmodium vivax, which is the most frequent and widely distributed cause of recurring malaria throughout Asia, and particularly in China, Korea, and Japan. Results We performed 454 next-generation sequencing and obtained a draft sequence of A. sinensis assembled into scaffolds spanning 220.8 million base pairs. Analysis of this genome sequence, we observed expansion and contraction of several immune-related gene families in anopheline relative to culicine mosquito species. These differences suggest that species-specific immune responses to Plasmodium invasion underpin the biological differences in susceptibility to Plasmodium infection that characterize these two mosquito subfamilies. Conclusions The A. sinensis genome produced in this study, provides an important resource for analyzing the genetic basis of susceptibility and resistance of mosquitoes to Plasmodium parasites research which will ultimately facilitate the design of urgently needed interventions against this debilitating mosquito-borne disease.
机译:背景中华按蚊是间日疟原虫的重要蚊媒,它是整个亚洲尤其是中国,韩国和日本复发疟疾的最常见和分布最广的原因。结果我们进行了454次下一代测序,并获得了组装成支架的中华曲霉草稿序列,涵盖了2.208亿个碱基对。分析此基因组序列,我们观察到了相对于库蚊蚊种,在按蚊碱中几个免疫相关基因家族的扩增和收缩。这些差异表明,针对疟原虫入侵的物种特异性免疫反应是这两个蚊子亚科特征性疟原虫感染易感性的生物学差异的基础。结论本研究产生的中华曲霉基因组为分析蚊子对疟原虫寄生虫的易感性和抗性的遗传基础提供了重要的资源,这最终将有助于设计迫切需要的针对这种使人衰弱的蚊媒疾病的干预措施。

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