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Editors choice: DNA barcodes from four loci provide poor resolution of taxonomic groups in the genus Crataegus

机译:编辑选择:来自四个基因座的DNA条形码在Crataegus属中的分类学组提供了较差的分辨率

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摘要

DNA barcodes can facilitate identification of organisms especially when morphological characters are limited or unobservable. To what extent this potential is realized in specific groups of plants remains to be determined. Libraries of barcode sequences from well-studied authoritatively identified plants represented by herbarium voucher specimens are needed in order for DNA barcodes to serve their intended purpose, where this is possible, and to understand the reasons behind their failure to do so, when this occurs. We evaluated four loci, widely regarded as universal DNA barcodes for plants, for their utility in hawthorn species identification. Three plastid regions, matK, rbcLa and psbA-trnH, and the internal transcribed spacer 2 (ITS2) of nuclear ribosomal DNA discriminate only some of the species of Crataegus that can be recognized on the basis of their morphology etc. This is, in part, because in Rosaceae tribe Maleae most individual plastid loci yield relatively little taxonomic resolution and, in part, because the effects of allopolyploidization have not been eliminated by concerted evolution of the ITS regions. Although individual plastid markers provided generally poor resolution of taxonomic groups in Crataegus, a few species were notable exceptions. In contrast, analyses of concatenated sequences of the 3 plastid barcode loci plus 11 additional plastid loci gave a well-resolved maternal phylogeny. In the ITS2 tree, different individuals of some species formed groups with taxonomically unrelated species. This is a sign of lineage sorting due to incomplete concerted evolution in ITS2. Incongruence between the ITS2 and plastid trees is best explained by hybridization between different lineages within the genus. In aggregate, limited between-species variation in plastid loci, hybridization and a lack of concerted evolution in ITS2 all combine to limit the utility of standard barcoding markers in Crataegus. These results have implications for authentication of hawthorn materials in natural health products.
机译:DNA条形码可以促进生物识别,特别是在形态特征有限或无法观察时。在特定的植物群中实现这种潜力的程度还有待确定。为了使DNA条形码能够达到预期的目的,需要使用经过精心研究的,经过严格鉴定的植物鉴定的条形码序列库,以达到其预期的目的,并在发生这种情况时了解其未能这样做的原因。我们评估了四个基因座,它们被普遍认为是植物的通用DNA条形码,它们可用于山楂树种的鉴定。三个质体区域,matK,rbcLa和psbA-trnH,以及核糖体DNA的内部转录间隔区2(ITS2)只能区分某些Crataegus物种,这些物种可以根据它们的形态等加以识别。这部分是由于,因为在蔷薇科部落马来亚中,大多数个体质体位点产生的分类学分辨率相对较低,部分原因是,ITS区的一致进化并未消除同种多倍体化的影响。尽管在Crataegus中单个质体标记通常无法提供分类学上的分类,但少数物种是一个明显的例外。相比之下,对3个质体条形码基因座加上11个其他质体基因座的串联序列进行分析,则可以很好地解析母系系统发育。在ITS2树中,某些物种的不同个体与分类学上不相关的物种组成一组。由于ITS2中不完全协调的进化,这是沿袭分类的标志。 ITS2和质体树之间的不一致性最好通过属内不同谱系之间的杂交来解释。总的来说,质体基因座中有限的种间变异,杂交和ITS2缺乏协调一致的进化都限制了Crataegus中标准条形码标记的实用性。这些结果对天然保健产品中山楂材料的鉴定具有启示意义。

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