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Exploring the Utility of Partial Cytochrome c Oxidase Subunit 1 for DNA Barcoding of Gobies

机译:探索部分细胞色素c氧化酶亚基1对虾虎鱼DNA条形码的实用性

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摘要

Gobiids are hyperdiverse compared with other teleost groups, with about 2,000 species occurring in marine, freshwater, and blackish habitats, and they show a remarkable variety of morphologies and ecology. Testing the effectiveness of DNA barcodes onspecies that have emerged as a result of radiation remains a major challenge in evolutionary biology. Here, we used the cytochrome c oxidase subunit 1 (COI) sequences from 144 species of gobies and related species to evaluate the performance of distance-based DNA barcoding and to conduct a phylogenetic analysis. The average intra-genus genetic distance was considerably higher than that obtained in previous studies. Additionally, the interspecific divergence at higher taxonomic levels was not significantly different from that at the intragenus level, suggesting that congeneric gobies possess substantial interspecific sequence divergence in their COI gene. However, levels of intragenus divergence varied greatly among genera, and we do not provide sufficient evidence for using COI for cryptic species delimitation. Significantly more nucleotide changes were observed at the third codon position than that at the first and the second codons, revealing that extensive variation in COI reflects synonymous changes and little protein level variation. Despite clear signatures in several genera, the COI sequences did resolve genealogical relationships in the phylogenetic analysis well. Our results support the validity of COI barcoding for gobiid species identification, but the utilization of more gene regions will assist to offer a more robust gobiid species phylogeny.
机译:与其他硬骨鱼类相比,戈壁鱼种类繁多,在海洋,淡水和淡黑的栖息地中约有2,000种,并且它们表现出显着的形态和生态多样性。测试由于辐射而出现的物种上的DNA条形码的有效性仍然是进化生物学的主要挑战。在这里,我们使用了来自144种虾虎鱼和相关物种的细胞色素c氧化酶亚基1(COI)序列,以评估基于距离的DNA条形码的性能并进行系统发育分析。平均属内遗传距离明显高于以前的研究。此外,在较高的分类学水平上,种间差异与在属内水平上没有显着差异,这表明同类虾在其COI基因中具有实质性的种间序列差异。但是,属内差异的水平在属间差异很大,并且我们没有提供足够的证据证明使用COI进行隐性物种定界。与第一个和第二个密码子相比,在第三个密码子位置观察到的核苷酸变化明显更多,这表明COI的广泛变化反映了同义变化,而蛋白质水平变化很小。尽管几个属中有清晰的签名,但COI序列确实在系统发育分析中很好地解决了族谱关系。我们的研究结果支持COI条码识别戈壁物种的有效性,但是更多基因区域的利用将有助于提供更强大的戈壁物种系统发育。

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