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首页> 外文期刊>International Journal of Genomics >Effects of Taxon Sampling in Reconstructions of Intron Evolution
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Effects of Taxon Sampling in Reconstructions of Intron Evolution

机译:分类单元采样对内含子进化重建的影响

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摘要

Introns comprise a considerable portion of eukaryotic genomes; however, their evolution is understudied. Numerous works of the last years largely disagree on many aspects of intron evolution. Interpretation of these differences is hindered because different algorithms and taxon sampling strategies were used. Here, we present the first attempt of a systematic evaluation of the effects of taxon sampling on popular intron evolution estimation algorithms. Using the “taxon jackknife” method, we compared the effect of taxon sampling on the behavior of intron evolution inferring algorithms. We show that taxon sampling can dramatically affect the inferences and identify conditions where algorithms are prone to systematic errors. Presence or absence of some key species is often more important than the taxon sampling size alone. Criteria of representativeness of the taxonomic sampling for reliable reconstructions are outlined. Presence of the deep-branching species with relatively high intron density is more important than sheer number of species. According to these criteria, currently available genomic databases are representative enough to provide reliable inferences of the intron evolution in animals, land plants, and fungi, but they underrepresent many groups of unicellular eukaryotes, including the well-studied Alveolata.
机译:内含子包含相当一部分真核基因组;但是,它们的演变尚未被研究。最近几年的许多作品在内含子进化的许多方面都存在很大分歧。由于使用了不同的算法和分类单元采样策略,因此无法解释这些差异。在这里,我们提出了对分类单元采样对流行的内含子进化估计算法的影响进行系统评估的首次尝试。使用“分类单元折刀”方法,我们比较了分类单元采样对内含子进化推断算法行为的影响。我们表明,分类单元采样可以极大地影响推理并确定算法容易出现系统错误的条件。是否存在某些关键物种通常比仅分类群抽样规模更为重要。概述了用于可靠重建的生物分类样本的代表性标准。具有较高内含子密度的深分支物种的存在比纯粹数量的物种更为重要。根据这些标准,当前可用的基因组数据库具有足够的代表性,可以可靠地推断动物,陆地植物和真菌中内含子的进化,但它们却代表了许多单细胞真核生物,其中包括经过充分研究的肺泡单胞菌。

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