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Molecular thresholds of ITS2 and their implications for molecular evolution and species identification in seed plants

机译:ITS2的分子阈值及其对种子植物中分子演化和物种鉴定的影响

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Although molecular data have revealed huge amounts of plant diversity, interpreting genetic diversity into entities corresponding to species is still challenging. Taxonomic ranking based on genetic distance has been used extensively, but the results have been open to dispute, while the application of the strategy to plants has been restricted to a small number of cases. Here, levels of internal transcribed spacer 2 (ITS2) sequence variation were examined from 17,203 sequences, representing 5,439 species in 113 genera of seed plants, to ascertain the association between species status and their molecular divergence. Our results showed that, although the average genetic distances of sister species (AGDS) varied among angiosperms, the mean value was 3.98% and seemed not to be influenced by higher-level hierarchical classification or life history. AGDS was also stable within the major lineages of the gymnosperms but at approximately half the value of angiosperms, except for the Gnetidae, where the AGDS almost equaled that of angiosperms. We found that these AGDS discrepancies, associated with the rates of molecular evolution, cannot simply be attributed to generation-time differences, and highlight the complex life histories of plants. Our results provide general ITS2 thresholds in seed plants, and suggest their use in species identification.
机译:虽然分子数据显示出大量的植物多样性,但将遗传多样性解释为对应物种的实体仍然具有挑战性。基于遗传距离的分类法排名已被广泛使用,但结果已经开放争议,而植物策略的应用已仅限于少数病例。这里,从17,203个序列中检查内部转录间隔件2(ITS2)序列变异的水平,代表113个属种植物中的5,439种,以确定物种状况与其分子发散之间的关联。我们的研究结果表明,虽然姐妹物种(AGDS)的平均遗传距离在血管植物中变化,但平均值为3.98%,似乎不会受到更高层次分类或生命历史的影响。 AGDS在裸子植物的主要谱系中也稳定,但除了GNETIDAE之外,Agniosperms的价值大约有大约一半,而AGDS几乎等于AgeniSperms。我们发现,与分子演变的速率相关的这些AGDS差异不能简单地归因于产生 - 时间差异,并突出植物的复杂寿命历史。我们的结果提供了综合其2种种子植物的阈值,并表明他们在物种鉴定中使用。

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