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The complete mitochondrial genome of the Arctic calanoid copepod Calanus hyperboreus

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Title
The complete mitochondrial genome of the Arctic calanoid copepod Calanus hyperboreus
Other Titles
북극 우점 요각류 Calanus hyperboreus의 미토콘드리아 전체게놈 분석
Authors
Kim, Sanghee
Gi-Sik Min
Choi, Han-Gu
Byung-Jin Lim
Keywords
Arctic calanoid; Calanus hyperboreus; Mitochondrial DNA
Issue Date
2012
Citation
Kim, Sanghee, et al. 2012. The complete mitochondrial genome of the Arctic calanoid copepod Calanus hyperboreus. 한국생물과학협회. 한국생물과학협회. 2012.08.16~.
Abstract
Copepods are the most diverse and abundant groups in aquatic ecosystems and also dominate in polar ecosystem. Despite of their abundance and vast diversity, few complete mitochondrial genome data have been reported so far. Mitochondrial genomes contain the most informative sequences and gene arrangement for deeper phylogenetic analyses and they reflect evolutionary relationships and biogeography in the metazonas. Also, the interaction between adaptation in the harsh environment and mt genome rearrangement has been postulated in several studies. In an attempt to get more mt genome data of polar organisms, we selected Arctic calanoid copepod species Calanus hyperboreus. In our result, the gene arrangement of C. hyperboreus is very distinctive comparable to the pan-crustacean ground pattern. We attempt to solve the ordinal relationships of copepods in Subphylum Crustacea by phylogenetic analyses using sequence data from mitochondrial protein-coding genes. genomes contain the most informative sequences and gene arrangement for deeper phylogenetic analyses and they reflect evolutionary relationships and biogeography in the metazonas. Also, the interaction between adaptation in the harsh environment and mt genome rearrangement has been postulated in several studies. In an attempt to get more mt genome data of polar organisms, we selected Arctic calanoid copepod species Calanus hyperboreus. In our result, the gene arrangement of C. hyperboreus is very distinctive comparable to the pan-crustacean ground pattern. We attempt to solve the ordinal relationships of copepods in Subphylum Crustacea by phylogenetic analyses using sequence data from mitochondrial protein-coding genes.
URI
http://repository.kopri.re.kr/handle/201206/8440
Conference Name
한국생물과학협회
Conference Place
한국생물과학협회
Conference Date
2012.08.16~
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