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首页> 外文期刊>Molecular genetics and genomics: MGG >Diversity within the genus Elymus (Poaceae: Triticeae) II: analyses of variation within 5S nrDNA restrict membership in the genus to species with StH genomes
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Diversity within the genus Elymus (Poaceae: Triticeae) II: analyses of variation within 5S nrDNA restrict membership in the genus to species with StH genomes

机译:披碱草属中的多样性(禾本科:小麦)II:5S nrDNA内变异的分析将属中成员隶属于具有StH基因组的物种

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The genus Elymus is a repository for a large number of species that have been difficult to classify by traditional techniques due to their remarkable levels of polymorphism. Following the genome analyses of Yen and Yang (Genus Elymus 5:58-362, 2013), we used sequences of the nr5SDNA to investigate diversity within those 24 species having St and H haplomes (Baum et al. Mol Genet Genomics 290:329-42, 2015) and for which the genome status was known. The present work extends this analysis to include eight species for which there was no information on genomic status. Our results show that these eight have nr5SDNA sequences that can be assigned to unit classes of orthologous sequences found in St and H haplomes, suggesting that the presence of St and H haplomes is characteristic of the genus. We then carried out a set of canonical discriminant analyses based on 247 DNA new sequences from these 8 species plus the 1054 sequences previously identified from 24 Elymus species. Sequences were analyzed to answer the following questions: Do the species integrate or are they different? Are the tetraploids different from the higher-ploid species? Are the species united within sections, or the same within regions? How do the species fare when divided according to sections? The main results of the canonical discriminant analyses are that the species are united within the tetraploids and within the hexaploids, within each region and within each section. In addition, a series of classificatory discriminant analyses showed that the identification tests are different, although not sufficiently useful for the discrimination of all the species. We also demonstrate the power of our approach by showing that the voucher for Elymus mobilis is not Elymus at all, but Leymus.
机译:Elymus属是许多物种的仓库,这些物种由于其惊人的多态性水平而难​​以通过传统技术进行分类。在对Yen和Yang进行基因组分析之后(Elymus属5:58-362,2013),我们使用nr5SDNA序列研究了这24个具有St和H单倍体的物种的多样性(Baum et al.Mol Genet Genomics 290:329- 42,2015),其基因组状态已知。目前的工作将这一分析扩展到包括八个物种,而这些物种没有有关基因组状态的信息。我们的结果表明,这八个具有nr5SDNA序列,可以将其分配给在St和H单倍体中发现的直系同源序列的单位类别,这表明St和H单倍体的存在是该属的特征。然后,我们基于来自这8个物种的247个DNA新序列,加上先前从24个披碱草属物种中鉴定的1054个序列,进行了一套规范判别分析。分析序列以回答以下问题:物种是否整合或不同?四倍体与高倍体物种不同吗?物种在部分内统一还是在区域内相同?按部分划分时物种的票价如何?规范判别分析的主要结果是,这些物种在每个区域和每个区域内的四倍体和六倍体内结合在一起。此外,一系列分类判别分析显示,虽然对区分所有物种没有足够的帮助,但鉴定测试却有所不同。我们还通过证明运动立式披碱草的凭证根本不是Elymus,而是羊草来证明我们方法的力量。

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