首页> 外文期刊>BMC Genomics >Heritable gene expression differences between apomictic clone members in Taraxacum officinale : Insights into early stages of evolutionary divergence in asexual plants
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Heritable gene expression differences between apomictic clone members in Taraxacum officinale : Insights into early stages of evolutionary divergence in asexual plants

机译:蒲公英无融合生殖成员间的可遗传基因表达差异:对无性植物进化分歧的早期认识。

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Background Asexual reproduction has the potential to enhance deleterious mutation accumulation and to constrain adaptive evolution. One source of mutations that can be especially relevant in recent asexuals is activity of transposable elements (TEs), which may have experienced selection for high transposition rates in sexual ancestor populations. Predictions of genomic divergence under asexual reproduction therefore likely include a large contribution of transposable elements but limited adaptive divergence. For plants empirical insight into genome divergence under asexual reproduction remains limited. Here, we characterize expression divergence between clone members of a single apomictic lineage of the common dandelion ( Taraxacum officinale ) to contribute to our knowledge of genome evolution under asexuality. Results Using RNA-Seq, we show that about one third of heritable divergence within the apomictic lineage is driven by TEs and TE-related gene activity. In addition, we identify non-random transcriptional differences in pathways related to acyl-lipid and abscisic acid metabolisms which might reflect functional divergence within the apomictic lineage. We analyze SNPs in the transcriptome to assess genetic divergence between the apomictic clone members and reveal that heritable expression differences between the accessions are not explained simply by genome-wide genetic divergence. Conclusion The present study depicts a first effort towards a more complete understanding of apomictic plant genome evolution. We identify abundant TE activity and ecologically relevant functional genes and pathways affecting heritable within-lineage expression divergence. These findings offer valuable resources for future work looking at epigenetic silencing and Cis -regulation of gene expression with particular emphasis on the effects of TE activity on asexual species’ genome.
机译:背景技术无性繁殖具有增强有害突变积累并限制适应性进化的潜力。与近代无性恋特别相关的突变来源之一是转座因子(TEs)的活性,在性祖先群体中可能经历了高转座率的选择。因此,无性繁殖下基因组差异的预测可能包括可转座因子的大量贡献,但适应性差异有限。对于植物,无性繁殖下对基因组差异的经验性了解仍然有限。在这里,我们表征了普通蒲公英(蒲公英)的单个无融合生殖世系的克隆成员之间的表达差异,从而有助于我们了解无性状下的基因组进化。结果使用RNA-Seq,我们显示了无融合生殖谱系中约三分之一的遗传差异是由TEs和TE相关基因活性驱动的。此外,我们确定与脂类和脱落酸代谢有关的途径中的非随机转录差异,这可能反映了无融合生殖谱系中的功能差异。我们分析了转录组中的SNP,以评估无融合生殖克隆成员之间的遗传差异,并揭示了种质之间的可遗传表达差异并不能简单地由全基因组遗传差异来解释。结论本研究描述了对无融合植物基因组进化的更完整理解的第一步。我们确定丰富的TE活性和生态相关的功能基因和途径影响遗传的谱系内表达差异。这些发现为将来研究表观遗传沉默和顺式调控基因表达提供了宝贵的资源,尤其着重于TE活性对无性物种基因组的影响。

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