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Deciduous Trees and the Application of Universal DNA Barcodes: A Case Study on the Circumpolar Fraxinus

机译:落叶乔木和通用DNA条码的应用:以极地水曲柳为例

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摘要

The utility of DNA barcoding for identifying representative specimens of the circumpolar tree genus Fraxinus (56 species) was investigated. We examined the genetic variability of several loci suggested in chloroplast DNA barcode protocols such as matK, rpoB, rpoC1 and trnH-psbA in a large worldwide sample of Fraxinus species. The chloroplast intergenic spacer rpl32-trnL was further assessed in search for a potentially variable and useful locus. The results of the study suggest that the proposed cpDNA loci, alone or in combination, cannot fully discriminate among species because of the generally low rates of substitution in the chloroplast genome of Fraxinus. The intergenic spacer trnH-psbA was the best performing locus, but genetic distance-based discrimination was moderately successful and only resulted in the separation of the samples at the subgenus level. Use of the BLAST approach was better than the neighbor-joining tree reconstruction method with pairwise Kimura's two-parameter rates of substitution, but allowed for the correct identification of only less than half of the species sampled. Such rates are substantially lower than the success rate required for a standardised barcoding approach. Consequently, the current cpDNA barcodes are inadequate to fully discriminate Fraxinus species. Given that a low rate of substitution is common among the plastid genomes of trees, the use of the plant cpDNA “universal” barcode may not be suitable for the safe identification of tree species below a generic or sectional level. Supplementary barcoding loci of the nuclear genome and alternative solutions are proposed and discussed.
机译:进行了DNA条形码识别圆极树Fraxinus(56种)的代表性标本的实用性研究。我们检查了叶绿体DNA条码方案中建议的几个基因座的遗传变异性,例如matK,rpoB,rpoC1和trnH-psbA在全球范围内的水曲霉物种的大量样本中。进一步评估了叶绿体基因间隔子rpl32-trnL,以寻找潜在可变和有用的基因座。研究结果表明,由于水曲柳的叶绿体基因组中的置换率通常较低,因此单独或组合使用的cpDNA位点不能完全区分物种。基因间隔子trnH-psbA是表现最好的基因座,但是基于遗传距离的区分是中等成功的,仅导致亚属水平的样品分离。使用BLAST方法要好于使用成对木村的两参数替换率的邻居合并树重建方法,但只能正确识别不到一半的采样物种。这样的比率大大低于标准化条形码方法所需的成功率。因此,当前的cpDNA条形码不足以完全区分Fraxinus物种。鉴于树木的质体基因组之间普遍存在较低的替代率,因此使用植物cpDNA“通用”条形码可能不适用于在一般或部分水平以下安全鉴定树木。提出并讨论了核基因组的补充条形码基因座和替代解决方案。

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