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Patterns of evolution of mitochondrial cytochrome c oxidase I and II DNA and implications for DNA barcoding

机译:线粒体细胞色素C氧化酶I和II DNA的进化模式及其对DNA条形码的影响

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DNA barcoding has focused increasing attention on the use of specific regions of mitochondrial cytochrome c oxidase I and II genes (COI–COII) to diagnose and delimit species. However, our understanding of patterns of molecular evolution within these genes is limited. Here we examine patterns of nucleotide divergence in COI–COII within species and between species pairs of Lepidoptera and Diptera using a sliding window analysis. We found that: (1) locations of maximum divergence within COI–COII were highly variable among taxa surveyed in this study; (2) there was major overlap in divergence within versus between species, including within individual COI–COII profiles; (3) graphical DNA saturation analysis showed variation in percent nucleotide transitions throughout COI–COII and only limited association with levels of DNA divergence. Ultimately, no single optimally informative 600 bp location was found within the 2.3kb of COI–COII, and the DNA barcoding region was no better than other regions downstream in COI. Consequently, we recommend that researchers should maximize sequence length to increase the probability of sampling regions of high phylogenetic informativeness, and to minimize stochastic variation in estimating total divergence.
机译:DNA条形码将越来越多的注意力集中在使用线粒体细胞色素C氧化酶I和II基因(COI–COII)的特定区域来诊断和划定物种。但是,我们对这些基因内分子进化模式的理解是有限的。在这里,我们使用滑动窗口分析研究了鳞翅目和双翅目的物种之间以及物种对之间COI–COII中核苷酸差异的模式。我们发现:(1)COI–COII内最大差异的位置在本研究调查的分类群中变化很大; (2)物种之间和物种之间的差异存在很大的重叠,包括单个COI–COII谱内的差异; (3)图形化的DNA饱和度分析显示,整个COI–COII的核苷酸跃迁百分比均发生变化,并且仅与DNA差异水平相关。最终,在COI–COII的2.3kb内没有发现一个最佳的信息丰富的600 bp的位置,并且DNA条形码区域并不比COI下游的其他区域好。因此,我们建议研究人员应最大化序列长度,以增加对具有高度系统发育信息性的区域进行采样的可能性,并在估计总差异时将随机变化最小化。

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