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DNA Barcoding of Fish Insects and Shellfish in Korea

机译:韩国鱼类昆虫和贝类的DNA条形码

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摘要

DNA barcoding has been widely used in species identification and biodiversity research. A short fragment of the mitochondrial cytochrome c oxidase subunit I (COI) sequence serves as a DNA bio-barcode. We collected DNA barcodes, based on COI sequences from 156 species (529 sequences) of fish, insects, and shellfish. We present results on phylogenetic relationships to assess biodiversity the in the Korean peninsula. Average GC% contents of the 68 fish species (46.9%), the 59 shellfish species (38.0%), and the 29 insect species (33.2%) are reported. Using the Kimura 2 parameter in all possible pairwise comparisons, the average interspecific distances were compared with the average intraspecific distances in fish (3.22 vs. 0.41), insects (2.06 vs. 0.25), and shellfish (3.58 vs. 0.14). Our results confirm that distance-based DNA barcoding provides sufficient information to identify and delineate fish, insect, and shellfish species by means of all possible pairwise comparisons. These results also confirm that the development of an effective molecular barcode identification system is possible. All DNA barcode sequences collected from our study will be useful for the interpretation of species-level identification and community-level patterns in fish, insects, and shellfish in Korea, although at the species level, the rate of correct identification in a diversified environment might be low.
机译:DNA条形码已广泛用于物种识别和生物多样性研究。线粒体细胞色素C氧化酶亚基I(COI)序列的短片段用作DNA生物条形码。我们基于156种鱼类,昆虫和贝类的COI序列收集了DNA条码。我们提出系统发育关系的结果,以评估朝鲜半岛的生物多样性。据报告,这68种鱼类(46.9%),59种贝类(38.0%)和29种昆虫(33.2%)的平均GC%含量。在所有可能的成对比较中使用Kimura 2参数,将平均种间距离与鱼类(3.22对0.41),昆虫(2.06对0.25)和贝类(3.58对0.14)的平均种内距离进行比较。我们的结果证实,基于距离的DNA条形码通过所有可能的成对比较,提供了足够的信息来识别和描绘鱼类,昆虫和贝类物种。这些结果也证实了开发有效的分子条形码识别系统是可能的。从我们的研究中收集到的所有DNA条码序列都将有助于解释韩国鱼类,昆虫和贝类中的物种识别和群落识别,尽管在物种识别方面,在多种环境中的正确识别率可能很高。低。

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