日本脑炎病毒在台湾的传播媒介 Culex vishnui 亚群(双翅目:蚤科)物种的分子鉴定。

Han-Hsuan Chung,Tien-Huang Chen,Pei-Feng Wang,Yoshio Tsuda,Hwa-Jen Teng,Shiu-Ling Chen
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摘要

如果仅使用传统的形态鉴定方法,对具有重叠特征的蚊子进行分类仍然是个问题。在这项研究中,我们使用分子方法阐明了三带喙库蚊、环带喙库蚊和拟带喙库蚊作为日本脑炎病毒病媒的分类地位,以及它们之间的基因流。本研究在台湾各地分别采集了 76、59 和 3 个环带库蚊、三带库蚊和假带库蚊样本。根据核糖体 DNA 和内部转录间隔(rDNA)以及细胞色素 c 氧化酶亚单位 I(COI)的基因组序列变异进行系统发育分析和遗传分化。我们的研究结果表明,Cx. annulus 和 Cx.然而,根据 COI 序列,我们发现了根据 rDNA 序列聚类在一起的 Cx.此外,Cx. pseudovishnui的基因库与其他国家的品系不同,这意味着台湾的种群可能是一个独特的品系或同胞种。本研究提供了台湾 Cx. vishnui 亚群物种分类地位和物种间基因流动的分子信息,为病媒控制行动和进化过程的划分提供了有价值的信息。
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Molecular Identification of Species Belonging to Culex vishnui Subgroup (Diptera: Culicidae), Vectors of Japanese Encephalitis Virus, in Taiwan.
Classification of mosquitoes with overlapping features remains problematic when using traditional morphological identification alone. In this study, we used molecular methods to elucidate the taxonomic status of Culex tritaeniorhynchus, Culex annulus, and Culex pseudovishnui species as vectors of the Japanese encephalitis virus belonging to the Culex vishnui subgroup and gene flow among them. In this study, 76, 59, and 3 samples of Cx. annulus, Cx. tritaeniorhynchus, and Cx. pseudovishnui, respectively, were collected around Taiwan. Phylogenetic analysis and genetic divergence were based on genomic sequence variations in ribosomal DNA and the internal transcribed spacer (rDNA) and cytochrome c oxidase subunit I (COI). Our results revealed that Cx. annulus and Cx. vishnui are genetically similar and share a gene pool among the species from Taiwan and other Asian countries. However, two hidden taxa of Cx. tritaeniorhynchus, which clustered together according to the rDNA sequences, were discovered based on the COI sequences. In addition, Cx. pseudovishnui has different gene pools from those of the strains from other countries, implying that the population from Taiwan is probably either a unique strain or a sibling species. This study provides molecular information on the taxonomic status of the species in the Cx. vishnui subgroup in Taiwan and gene flow between these species, providing valuable information for vector control operations and the delineation of the evolutionary process.
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