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引用次数: 0
摘要
可转座元件(TE)在最大的真核生物基因组中占有很大比例。据推测,可转座元件的多样性与基因组的大小呈负相关,但在系统发育的背景下,这种关系在很大程度上缺乏经验证明。此外,基因组中最丰富的TE类型在不同类群中也不尽相同,而且目前还不清楚基因组规模较大的不同类群中是否存在与基因组规模一致的TE活动模式。我们对基因组大小相差约 7 倍的 16 种新热带蝾螈进行了低覆盖率测序,以估计每个物种的 TE 相对丰度和多样性。我们还比较了每个 TE 超家族拷贝的差异,以估计每个物种中 TE 的活动模式。我们发现 TE 多样性与基因组大小呈负相关,这与 TE 之间的竞争或异位重组选择减少可能导致最大基因组多样性降低的假设一致。我们还发现最大基因组与最小基因组的活动模式存在差异,这表明TE活动的历史可能解释了基因组大小的差异。我们的研究结果表明,至少在分类群体内,TE的多样性和相对丰度都是可以预测的。
Transposable Element Diversity and Activity Patterns in Neotropical Salamanders.
Transposable elements (TEs) compose a substantial proportion of the largest eukaryotic genomes. TE diversity has been hypothesized to be negatively correlated with genome size, yet empirical demonstrations of such a relationship in a phylogenetic context are largely lacking. Furthermore, the most abundant type of TEs in genomes varies across groups, and it is not clear if there are patterns of TE activity consistent with genome size among different taxa with large genome sizes. We use low-coverage sequencing of 16 species of Neotropical salamanders, which vary ∼7-fold in genome size, to estimate TE relative abundance and diversity for each species. We also compare the divergence of copies of each TE superfamily to estimate patterns of TE activity in each species. We find a negative relationship between TE diversity and genome size, which is consistent with the hypothesis that either competition among TEs or reduced selection against ectopic recombination may result in lower diversity in the largest genomes. We also find divergent activity patterns in the largest versus the smallest genomes, suggesting that the history of TE activity may explain differences in genome size. Our results suggest that both TE diversity and relative abundance may be predictable, at least within taxonomic groups.
期刊介绍:
Molecular Biology and Evolution
Journal Overview:
Publishes research at the interface of molecular (including genomics) and evolutionary biology
Considers manuscripts containing patterns, processes, and predictions at all levels of organization: population, taxonomic, functional, and phenotypic
Interested in fundamental discoveries, new and improved methods, resources, technologies, and theories advancing evolutionary research
Publishes balanced reviews of recent developments in genome evolution and forward-looking perspectives suggesting future directions in molecular evolution applications.