首页> 美国卫生研究院文献>PLoS Neglected Tropical Diseases >Transcriptomic Profiling of Diverse Aedes aegypti Strains Reveals Increased Basal-level Immune Activation in Dengue Virus-refractory Populations and Identifies Novel Virus-vector Molecular Interactions
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Transcriptomic Profiling of Diverse Aedes aegypti Strains Reveals Increased Basal-level Immune Activation in Dengue Virus-refractory Populations and Identifies Novel Virus-vector Molecular Interactions

机译:不同埃及伊蚊菌株的转录组分析揭示了登革热病毒难治性人群中基础水平的免疫激活增加并确定了新型病毒载体分子相互作用。

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摘要

Genetic variation among Aedes aegypti populations can greatly influence their vector competence for human pathogens such as the dengue virus (DENV). While intra-species transcriptome differences remain relatively unstudied when compared to coding sequence polymorphisms, they also affect numerous aspects of mosquito biology. Comparative molecular profiling of mosquito strain transcriptomes can therefore provide valuable insight into the regulation of vector competence. We established a panel of A. aegypti strains with varying levels of susceptibility to DENV, comprising both laboratory-maintained strains and field-derived colonies collected from geographically distinct dengue-endemic regions spanning South America, the Caribbean, and Southeast Asia. A comparative genome-wide gene expression microarray-based analysis revealed higher basal levels of numerous immunity-related gene transcripts in DENV-refractory mosquito strains than in susceptible strains, and RNA interference assays further showed different degrees of immune pathway contribution to refractoriness in different strains. By correlating transcript abundance patterns with DENV susceptibility across our panel, we also identified new candidate modulators of DENV infection in the mosquito, and we provide functional evidence for two potential DENV host factors and one potential restriction factor. Our comparative transcriptome dataset thus not only provides valuable information about immune gene regulation and usage in natural refractoriness of mosquito populations to dengue virus but also allows us to identify new molecular interactions between the virus and its mosquito vector.
机译:埃及伊蚊种群之间的遗传变异会极大地影响其对人类病原体(如登革热病毒(DENV))的媒介能力。尽管与编码序列多态性相比,物种内转录组差异仍然相对未被研究,但它们也影响了蚊子生物学的许多方面。因此,蚊株转录组的比较分子谱分析可以为调节载体能力提供有价值的见解。我们建立了一组具有不同水平的DENV敏感性的埃及埃及芽孢杆菌菌株,包括实验室维护的菌株和从横跨南美,加勒比海和东南亚的地理上不同的登革热流行地区收集的田间衍生菌落。基于全基因组比较基因表达微阵列的分析显示,DENV难治性蚊子菌株中与免疫力相关的基因转录本的基础水平高于易感菌株,并且RNA干扰测定进一步显示不同程度的免疫途径对难治性的免疫途径贡献。通过在整个小组中将转录本丰度模式与DENV敏感性相关联,我们还确定了蚊子中DENV感染的新候选调节剂,并且我们为两种潜在的DENV宿主因子和一种潜在的限制因子提供了功能性证​​据。因此,我们的比较转录组数据集不仅提供了有关蚊子种群对登革热病毒自然抵抗力中免疫基因调节和使用的有价值的信息,还使我们能够确定病毒与其蚊子载体之间的新分子相互作用。

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