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首页> 外文期刊>Iraqi Journal of Veterinary Medicine >Genetic Diversity and Molecular Characterization of Mosquitoes (Diptera: Culicidae) In North-Central Nigeria Using Ribosomal DNA ITS2 and Mitochondrial 16S-DNA Sequences
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Genetic Diversity and Molecular Characterization of Mosquitoes (Diptera: Culicidae) In North-Central Nigeria Using Ribosomal DNA ITS2 and Mitochondrial 16S-DNA Sequences

机译:使用核糖体DNA ITS2和线粒体16S-DNA序列中北部奈及利亚中部蚊虫(Diptera:Culicidae)的遗传多样性和分子特征

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Mosquitoes are vectors of various life-threatening diseases like malaria, yellow fever, dengue fever etc. Their close proximity to human habitations allows ease for disease transmission. They have been identified by key morphological tools like their wings, legs, bristles etc. but closely related species are difficult to identify based on morphology. Molecular tools have, therefore, been employed to help with the more accurate identification. This study was aimed at identifying and characterizing different mosquito species in five different states in North-Central Nigeria using internal transcribed spacer 2 (ITS2) and mitochondrial 16S rDNA regions. Mosquito larvae were collected from stagnant water in breeding places at each collection site in North-central Nigeria. Morphological identification was carried out using standard keys. DNA extraction was performed using EZNA extraction kit. PCR amplification of ribosomal ITS2 and mitochondrial 16S-rDNA gene regions were carried out. The PCR amplicons were sequenced using primers initially used for the PCR. Sequence data were aligned in MEGA 6.0 using ClustalW multiple alignment feature and then compared with GenBank databases for similarity.? Phylogenetic analysis of DNA sequences from the ITS2 region was able to distinguish two mosquito subfamilies; Anophelinae and Culicinae as well as differentiate between and amongst Culex and Aedes species. However, it was unable to effectively distinguish between the two different species of Anopheles sequenced. Mitochondrial 16S rRNA marker was also able to distinguish the two mosquito subfamilies. It efficiently identified and differentiated Culex, Aedes and Anopheles mosquito species sequenced in this study. This study concludes that heterogeneity among Nigerian populations of Anopheles mosquitoes of may likely impact malaria vector control programs. We recommend the combination of nuclear and mitochondrial markers for effective and reliable phylogenetic study and determination of evolutionary relationship among mosquito species.
机译:蚊子是疟疾,黄热病,登革热等各种危及生命的疾病的载体。它们靠近人类养殖,易于疾病传播。它们已被关键形态工具识别,如翅膀,腿,刷毛等,但密切相关的物种难以根据形态识别。因此,分子工具已被用于帮助更准确的鉴定。本研究旨在使用内部转录的间隔2(ITS2)和线粒体16S RDNA区域在尼日利亚北部北部五种不同状态中识别和表征不同的蚊虫种类。在尼日利亚北部的每个收集地点的繁殖地点从繁殖的地方收集蚊子幼虫。使用标准键进行形态鉴定。使用EZNA提取试剂盒进行DNA提取。进行PCR扩增核糖体IT2和线粒体16S-RDNA基因区域。使用最初用于PCR的引物测序PCR扩增子。序列数据使用Clustalw多对准特征在Mega 6.0中对齐,然后与GenBank数据库进行相似性进行比较。 ITS2区的DNA序列的系统发育分析能够区分两个蚊子亚壳; anophelinae和辛酸和含有culex和aedes种类之间的区分。但是,它无法有效地区分两种不同种类的促进肌肉。线粒体16s rRNA标记也能区分两个蚊子亚属植物。它有效地识别和差异化的Culex,AEDES和Anopheles在本研究中测序的蚊虫物种。这项研究结论,尼日利亚人群的异质性可能会影响疟疾矢量控制计划的蚊虫蚊子。我们建议核和线粒体标志物的组合,以实现有效且可靠的系统发育研究和蚊子物种中进化关系的测定。

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