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改良的埃及伊蚊参考基因组可助力虫媒病毒防控。

Improved reference genome of Aedes aegypti informs arbovirus vector control.

机构信息

Laboratory of Neurogenetics and Behavior, The Rockefeller University, New York, NY, USA.

Howard Hughes Medical Institute, New York, NY, USA.

出版信息

Nature. 2018 Nov;563(7732):501-507. doi: 10.1038/s41586-018-0692-z. Epub 2018 Nov 14.

Abstract

Female Aedes aegypti mosquitoes infect more than 400 million people each year with dangerous viral pathogens including dengue, yellow fever, Zika and chikungunya. Progress in understanding the biology of mosquitoes and developing the tools to fight them has been slowed by the lack of a high-quality genome assembly. Here we combine diverse technologies to produce the markedly improved, fully re-annotated AaegL5 genome assembly, and demonstrate how it accelerates mosquito science. We anchored physical and cytogenetic maps, doubled the number of known chemosensory ionotropic receptors that guide mosquitoes to human hosts and egg-laying sites, provided further insight into the size and composition of the sex-determining M locus, and revealed copy-number variation among glutathione S-transferase genes that are important for insecticide resistance. Using high-resolution quantitative trait locus and population genomic analyses, we mapped new candidates for dengue vector competence and insecticide resistance. AaegL5 will catalyse new biological insights and intervention strategies to fight this deadly disease vector.

摘要

雌性埃及伊蚊每年感染超过 4 亿人,使其感染包括登革热、黄热病、寨卡和基孔肯雅热在内的危险病毒病原体。由于缺乏高质量的基因组组装,蚊子生物学和开发对抗它们的工具的研究进展一直受到阻碍。在这里,我们结合了多种技术来生成显著改进的、完全重新注释的 AaegL5 基因组组装,并展示了它如何加速蚊子科学的发展。我们固定了物理和细胞遗传学图谱,将已知的引导蚊子寻找人类宿主和产卵地点的化学感觉离子型受体的数量增加了一倍,进一步深入了解性别决定 M 基因座的大小和组成,并揭示了对杀虫剂抗性很重要的谷胱甘肽 S-转移酶基因的拷贝数变异。使用高分辨率数量性状基因座和群体基因组分析,我们为登革热媒介效能和杀虫剂抗性定位了新的候选基因。AaegL5 将催化新的生物学见解和干预策略,以对抗这种致命的病媒。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b9e/6784866/7f82162d19a8/41586_2018_692_Fig1_HTML.jpg

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