The complete mitochondrial genome of Chaenogobius gulosus (Gobiidae, Perciformes) from the South Sea, Korea

Title
The complete mitochondrial genome of Chaenogobius gulosus (Gobiidae, Perciformes) from the South Sea, Korea
Author(s)
오지나; 김태원; 김성
KIOST Author(s)
Kim, Sung(김성)
Publication Year
2015-05-22
Abstract
The morphology-based taxonomy of Chaenogobius is so complex that some species have been transferred to other genera. To obtain basic information on the phylogenetic relationships among gobies, the complete mitochondrial DNA sequence of C. gulosus was determined using next-generation sequencing. The complete mitochondrial genome is 16,477 bp in length and consists of 22 tRNAs, two ribosomal RNAs, 13 protein-coding genes, and two non-coding regions (the light strand replication origin and the control region). The gene order and locations are similar to those in most other vertebrates. The nucleotide composition of the mitogenome contains 29.1% A, 29.6% T, 15.9% G, and 25.4% C, with a slight AT bias (58.7%). The genus most related to Chaenogobius was Luciogobius, as revealed by phylogenetic relationships derived using a maximum likelihood tree. This mitogenome will help to elucidate the morphological systematic complexity and phylogeneticstructure of Chaenogobius and related species.losus was determined using next-generation sequencing. The complete mitochondrial genome is 16,477 bp in length and consists of 22 tRNAs, two ribosomal RNAs, 13 protein-coding genes, and two non-coding regions (the light strand replication origin and the control region). The gene order and locations are similar to those in most other vertebrates. The nucleotide composition of the mitogenome contains 29.1% A, 29.6% T, 15.9% G, and 25.4% C, with a slight AT bias (58.7%). The genus most related to Chaenogobius was Luciogobius, as revealed by phylogenetic relationships derived using a maximum likelihood tree. This mitogenome will help to elucidate the morphological systematic complexity and phylogeneticstructure of Chaenogobius and related species.
URI
https://sciwatch.kiost.ac.kr/handle/2020.kiost/40884
Bibliographic Citation
Mitochondrial DNA, pp.1 - 2, 2015
Publisher
Informa
Type
Conference
Language
English
Publisher
Informa
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