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Genome Investigations of Vector Competence in Aedes aegypti to Inform Novel Arbovirus Disease Control Approaches

机译:埃及伊蚊媒介能力的基因组研究以告知新型虫媒病毒疾病控制方法

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摘要

Dengue (DENV), yellow fever, chikungunya, and Zika virus transmission to humans by a mosquito host is confounded by both intrinsic and extrinsic variables. Besides virulence factors of the individual arboviruses, likelihood of virus transmission is subject to variability in the genome of the primary mosquito vector, Aedes aegypti. The “vectorial capacity” of A. aegypti varies depending upon its density, biting rate, and survival rate, as well as its intrinsic ability to acquire, host and transmit a given arbovirus. This intrinsic ability is known as “vector competence”. Based on whole transcriptome analysis, several genes and pathways have been predicated to have an association with a susceptible or refractory response in A. aegypti to DENV infection. However, the functional genomics of vector competence of A. aegypti is not well understood, primarily due to lack of integrative approaches in genomic or transcriptomic studies. In this review, we focus on the present status of genomics studies of DENV vector competence in A. aegypti as limited information is available relative to the other arboviruses. We propose future areas of research needed to facilitate the integration of vector and virus genomics and environmental factors to work towards better understanding of vector competence and vectorial capacity in natural conditions.
机译:登革热,黄热病,基孔肯雅热和寨卡病毒由蚊子宿主传播给人类的过程,既有内在因素也有外在因素。除个别虫媒病毒的致病因素外,病毒传播的可能性还取决于主要蚊媒埃及伊蚊的基因组变异性。埃及埃及按蚊的“载体能力”取决于其密度,咬合率和存活率,以及其获取,宿主和传播给定虫媒病毒的内在能力。这种内在能力被称为“向量能力”。基于全转录组分析,已经确定了几种基因和途径与埃及伊蚊对DENV感染的敏感或难治性反应有关。然而,埃及伊曲霉载体能力的功能基因组学尚未得到很好的理解,这主要是由于基因组或转录组研究中缺乏整合方法。在这篇综述中,由于只有相对于其他虫媒病毒的可用信息有限,因此我们着眼于埃及伊蚊中DENV载体能力的基因组学研究的现状。我们提出了促进载体和病毒基因组学以及环境因素整合所需的未来研究领域,以便更好地理解自然条件下的载体能力和载体能力。

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