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DNA barcoding of morphologically characterized mosquitoes belonging to the subfamily Culicinae from Sri Lanka

机译:DNA条形码的形态学表征蚊子属于来自斯里兰卡的亚家族辛酸的蚊子

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摘要

Abstract Background Vectors of mosquito-borne diseases in Sri Lanka, except for malaria, belong to the subfamily Culicinae, which includes nearly 84% of the mosquito fauna of the country. Hence, accurate and precise species identification of culicine mosquitoes is a crucial factor in implementing effective vector control strategies. During the present study, a combined effort using morphology and DNA barcoding was made to characterize mosquitoes of the subfamily Culicinae for the first time from nine districts of Sri Lanka. Cytochrome c oxidase subunit 1 (cox1) gene from the mitochondrial genome and the internal transcribed spacer 2 (ITS2) region from the nuclear ribosomal DNA were used for molecular characterization. Results According to morphological identification, the field collected adult mosquitoes belonged to 5 genera and 14 species, i.e. Aedes aegypti, Ae. albopictus, Ae. pallidostriatus, Aedes sp. 1, Armigeres sp. 1, Culex bitaeniorhynchus, Cx. fuscocephala, Cx. gelidus, Cx. pseudovishnui, Cx. quinquefasciatus, Cx. tritaeniorhynchus, Cx. whitmorei, Mansonia uniformis and Mimomyia chamberlaini. Molecular analyses of 62 cox1 and 36 ITS2 sequences were exclusively comparable with the morphological identifications of all the species except for Ae. pallidostriatus and Aedes sp. 1. Although the species identification of Armigeres sp. 1 specimens using morphological features was not possible during this study, DNA barcodes of the specimens matched 100% with the publicly available Ar. subalbatus sequences, giving their species status. Analysis of all the cox1 sequences (14 clades supported by strong bootstrap value in the Neighbor-Joining tree and interspecific distances of > 3%) showed the presence of 14 different species. This is the first available DNA sequence in the GenBank records for morphologically identified Ae. pallidostriatus. Aedes sp. 1 could not be identified morphologically or by publicly available sequences. Aedes aegypti, Ae. albopictus and all Culex species reported during the current study are vectors of human diseases. All these vector species showed comparatively high diversity. Conclusions The current study reflects the significance of integrated systematic approach and use of cox1 and ITS genetic markers in mosquito taxonomy. Results of DNA barcoding were comparable with morphological identifications and, more importantly, DNA barcoding could accurately identify the species in the instances where the traditional morphological identification failed due to indistinguishable characters of damaged specimens and the presence of subspecies.
机译:斯里兰卡蚊子传播疾病的抽象背景载体,除疟疾外,属于苏米利纳的苏米利纳,其中包括近84%的该国蚊子。因此,准确且精确的培养蚊虫的物种鉴定是实施有效的载体控制策略的关键因素。在本研究期间,使用形态和DNA条形码的组合努力是为了表征斯里兰卡九个地区的亚家族辛酸的蚊子。来自线粒体基因组的细胞色素C氧化酶亚基1(COX1)基因和来自核核糖体DNA的内部转录间隔物2(ITS2)区域用于分子表征。结果根据形态学识别,该田地收集成人蚊子属于5属和14种,即AEDES AEGYPTI,AE。 Albopictus,AE。 Pallidostriatus,AEDES SP。 1,armigeres sp。 1,Culex Bitaeniorhynchus,CX。 fuscocephala,cx。 Gelidus,CX。 Pseudovishnui,cx。 Quinquefasciatus,CX。 Tritaeniorhynchus,CX。 Whitmorei,Mansonia supplenis和mimomyia champerlaini。 62 COX1和36 ITS2序列的分子分析专门与除AE外的所有物种的形态学鉴定完全相当。 Pallidostriatus和AEDES SP。 1.虽然物种鉴定armigeres sp。在本研究期间,使用形态学特征的1个标本,标本的DNA条形码与公开的AR匹配100%。 Subalbatus序列,给出它们的物种状态。对所有COX1序列的分析(在邻近邻接树中强烈的自举值支持的14个曲线,差异为> 3%的距离)显示出14种不同的物种。这是Genbank记录中的第一种可用的DNA序列,用于形态学识别的AE。 Pallidostriatus。 AEDES SP。 1无法形态地或通过公开可用的序列识别。 AEDES AEGYPTI,AE。目前研究期间报告的Albopictus和所有的甲虫物种是人类疾病的载体。所有这些载体物种都显示出相对高的多样性。结论目前的研究反映了综合系统方法和使用COX1及其在蚊子分类中的遗传标记的重要性。 DNA条形码的结果与形态学鉴定相当,更重要的是,DNA条形码可以准确地识别传统形态鉴定因损坏标本的难以区分和亚种的存在而导致的传统形态识别失败的情况。

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