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首页> 外文期刊>American journal of applied sciences >Preliminary Study of Phylogenetic Relationship of Rice Field Chironomidae (Diptera) Inferred From DNA Sequences of Mitochondrial Cytochrome Oxidase Subunit I | Science Publications
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Preliminary Study of Phylogenetic Relationship of Rice Field Chironomidae (Diptera) Inferred From DNA Sequences of Mitochondrial Cytochrome Oxidase Subunit I | Science Publications

机译:从线粒体细胞色素氧化酶亚基I的DNA序列推论稻田尺ron科(双翅目)的亲缘关系的初步研究科学出版物

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> Problem statement: Chironomidae have been recorded in rice fields throughout the world including in many countries such as India, Australia and the USA. Although some studies provide the key to genera level and note the difficulty of identifying the larvae to species level. Chironomid researches have been hindered because of difficulties in specimen preparation, identification, morphology and literature. Systematics, phylogenetics and taxonomic studies of insects developed quickly with emergence of molecular techniques. These techniques provide an effective tool toward more accurate identification of ambiguous chironomid species. Approach: Samples of chironomids larvae were collected from rice plots at Bukit Merah Agricultural Experimental Station (BMAES), Penang, Malaysia. A 710 bp fragment of mitochondrial gene Cytochrome Oxidase subunit I (COI) was amplified and sequenced. Results: Five species of Chironomidae; three species of subfamily Chironominae, Chironomus kiiensis, Polypedilum trigonus, Tanytarsus formosanus, two species of subfamily Tanypodinae, Clinotanypus sp and Tanypus punctipennis were morphologically identified. The phylogenetic relationship among these species was been investigated. High sequence divergence was observed between two individuals of the presumed C. kiiensis and it is suggested that more than one species may be present. However the intraspecific sequence divergence was lower between the other species of Tanypodinae subfamily. Interestingly, Tanytarsus formosanus showed close phylogenetic relationship to Tanypodinae species and this presumably reflect co-evolutionary traits of different subfamilies. Conclusion: The sequence of the mtDNA cytochrome oxidase subunit I gene has proven useful to investigate the phylogenetic relationship among the ambiguous species of chironomids.
机译: > 问题陈述:在全世界的稻田中都记录了Chi科,包括印度,澳大利亚和美国在内的许多国家。尽管一些研究提供了属水平的关键,并指出了识别幼虫到物种水平的困难。由于标本制备,鉴定,形态和文献方面的困难,阻碍了Chironomid的研究。随着分子技术的出现,对昆虫的系统学,系统发育和分类学研究迅速发展。这些技术提供了一种有效的工具,可以更准确地识别歧义的拟南芥物种。方法:拟南芥幼虫的样品是从马来西亚槟城大山脚农业试验站(BMAES)的水稻田中采集的。线粒体基因细胞色素氧化酶亚基I(COI)的710 bp片段被扩增并测序。 结果:五种天牛科。形态学上鉴定了三种亚科的Chironominae亚种, Chironomus kiiensis,polypedilum trigonus,Tatantarsus formosanus ,两种亚科Tanypodinae, tanypus sp和 Tanypus punctipennis 。 。研究了这些物种之间的系统发育关系。在推测的C的两个个体之间观察到高序列差异。 kiiensis ,建议存在一种以上的物种。然而,其他种类的藻类亚科之间的种内序列差异较小。有趣的是,显示出与水豚科物种密切的系统发育关系,这大概反映了不同亚科的共同进化特征。 结论:事实证明,mtDNA细胞色素氧化酶亚基I基因的序列可用于研究歧义物种之间的系统发育关系。

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