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Presence-absence variation in A. thaliana is primarily associated with genomic signatures consistent with relaxed selective constraints.

机译:拟南芥的存在-缺失变异主要与与宽松的选择性约束一致的基因组特征有关。

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摘要

The sequencing of multiple genomes of the same plant species has revealed polymorphic gene and exon loss. Genes associated with disease resistance are overrepresented among those showing structural variations, suggesting an adaptive role for gene and exon presence-absence variation (PAV). To shed light on the possible functional relevance of polymorphic coding region loss and the mechanisms driving this process, we characterized genes that have lost entire exons or their whole coding regions in 17 fully sequenced Arabidopsis thaliana accessions. We found that although a significant enrichment in genes associated with certain functional categories is observed, PAV events are largely restricted to genes with signatures of reduced essentiality: PAV genes tend to be newer additions to the genome, tissue specific, and lowly expressed. In addition, PAV genes are located in regions of lower gene density and higher transposable element density. Partial coding region PAV events were associated with only a marginal reduction in gene expression level in the affected accession and occurred in genes with higher levels of alternative splicing in the Col-0 accession. Together, these results suggest that although adaptive scenarios cannot be ruled out, PAV events can be explained without invoking them.
机译:对同一植物物种的多个基因组进行测序,揭示了多态性基因和外显子丢失。与抗病性相关的基因在表现出结构变异的基因中比例过高,表明基因和外显子存在-缺失变异 (PAV) 具有适应性作用。为了阐明多态性编码区缺失的可能功能相关性以及驱动这一过程的机制,我们在 17 个完全测序的拟南芥种质中表征了失去整个外显子或其整个编码区的基因。我们发现,尽管观察到与某些功能类别相关的基因显着富集,但 PAV 事件主要局限于具有较低重要性特征的基因:PAV 基因往往是基因组中较新的添加物,具有组织特异性和低表达。此外,PAV基因位于基因密度较低、转座元件密度较高的区域。部分编码区 PAV 事件仅与受影响种质中基因表达水平的边际降低相关,并且发生在 Col-0 种质中选择性剪接水平较高的基因中。总之,这些结果表明,尽管不能排除自适应场景,但可以在不调用它们的情况下解释 PAV 事件。

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