DNA barcoding Australia's fish species
ДНК-штрихкодирование видов рыб Австралии
2005-09-15
SCID: 54.1/qn9pmvsz
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DNA barcodingKimura two-parameter distancefish species identificationmitochondrial cox1neighbour-joining tree
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Abstract (AI)
Two hundred and seven species of fish, mostly Australian marine fish, were sequenced (barcoded) for a 655 bp region of the mitochondrial cytochrome oxidase subunit I gene (cox1). Most species were represented by multiple specimens, and 754 sequences were generated. The GC content of the 143 species of teleosts was higher than the 61 species of sharks and rays (47.1% versus 42.2%), largely due to a higher GC content of codon position 3 in the former (41.1% versus 29.9%). Rays had higher GC than sharks (44.7% versus 41.0%), again largely due to higher GC in the 3rd codon position in the former (36.3% versus 26.8%). Average within-species, genus, family, order and class Kimura two parameter (K2P) distances were 0.39%, 9.93%, 15.46%, 22.18% and 23.27%, respectively. All species could be differentiated by their cox1 sequence, although single individuals of each of two species had haplotypes characteristic of a congener. Although DNA barcoding aims to develop species identification systems, some phylogenetic signal was apparent in the data. In the neighbour-joining tree for all 754 sequences, four major clusters were apparent: chimaerids, rays, sharks and teleosts. Species within genera invariably clustered, and generally so did genera within families. Three taxonomic groups-dogfishes of the genus Squalus, flatheads of the family Platycephalidae, and tunas of the genus Thunnus-were examined more closely. The clades revealed after bootstrapping generally corresponded well with expectations. Individuals from operational taxonomic units designated as Squalus species B through F formed individual clades, supporting morphological evidence for each of these being separate species. We conclude that cox1 sequencing, or 'barcoding', can be used to identify fish species.
Key Findings
1
A 655 bp mitochondrial cox1 barcode was generated for 207 mostly Australian fish species, yielding 754 sequences.
2
All sampled species were distinguishable by cox1 sequences, although one specimen from each of two species carried haplotypes characteristic of congeners.
3
Mean K2P genetic distances increased substantially with taxonomic rank, from 0.39% within species to 23.27% between classes.
4
Neighbor-joining analyses showed both strong species-level clustering and phylogenetic structure, supporting cox1 barcoding for fish identification and species delimitation.
5
Teleosts had higher mean GC content than sharks and rays (47.1% versus 42.2%), driven mainly by third-codon-position differences.
Research Object
Australian fish species, predominantly marine fish, represented by mitochondrial cox1 sequences
Research Subject
Species discrimination and phylogenetic relationships based on cox1 DNA barcodes, including sequence divergence and taxonomic clustering
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2005-09-15
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