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Transcriptional activity of transposable elements along an elevational gradient in Arabidopsis arenosa

机译:Arabidopsis arenosa沿线梯度转换元素的转录活性

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Plant genomes can respond rapidly to environmental changes and transposable elements (TEs) arise as important drivers contributing to genome dynamics. Although some elements were reported to be induced by various abiotic or biotic factors, there is a lack of general understanding on how environment influences the activity and diversity of TEs. Here, we combined common garden experiment with short-read sequencing to investigate genomic abundance and expression of 2245 consensus TE sequences (containing retrotransposons and DNA transposons) in an alpine environment in Arabidopsis arenosa. To disentangle general trends from local differentiation, we leveraged four foothill-alpine population pairs from different mountain regions. Seeds of each of the eight populations were raised under four treatments that differed in temperature and irradiance, two factors varying with elevation. RNA-seq analysis was performed on leaves of young plants to test for the effect of elevation and subsequently of temperature and irradiance on expression of TE sequences. Genomic abundance of the 2245 consensus TE sequences varied greatly between the mountain regions in line with neutral divergence among the regions, representing distinct genetic lineages of A. arenosa. Accounting for intraspecific variation in abundance, we found consistent transcriptomic response for some TE sequences across the different pairs of foothill-alpine populations suggesting parallelism in TE expression. In particular expression of retrotransposon LTR Copia (e.g. Ivana and Ale clades) and LTR Gypsy (e.g. Athila and CRM clades) but also non-LTR LINE or DNA transposon TIR MuDR consistently varied with elevation of origin. TE sequences responding specifically to temperature and irradiance belonged to the same classes as well as additional TE clades containing potentially stress-responsive elements (e.g. LTR Copia Sire and Tar, LTR Gypsy Reina). Our study demonstrated that the A. arenosa genome harbours a considerable diversity of TE sequences whose abundance and expression response varies across its native range. Some TE clades may contain transcriptionally active elements responding to a natural environmental gradient. This may further contribute to genetic variation between populations and may ultimately provide new regulatory mechanisms to face environmental challenges.
机译:植物基因组可以迅速响应环境变化,并且由于有助于基因组动态的重要驱动因素而产生转换元素(TES)。虽然据报道一些要素被各种非生物或生物因素引起的,但对环境如何影响TES的活动和多样性缺乏一般性。在这里,我们将常见的园林实验组合了短读测序,以研究拟南芥alenosa的高山环境中的基因组丰度和2245个共识序列(含有Retronsposons和DNA转座子)的表达。解开局部分化的一般趋势,我们利用来自不同山区的四个山麓 - 高山人口对。在温度和辐照度下不同的四种处理中提高了八种种群的种子,两个因素随着升高而变化。在幼苗的叶片上进行RNA-SEQ分析,以测试升高和随后对TE序列表达的温度和辐照度进行效果。 2245个共识序列的基因组丰度在山地区与地区中性分歧的山区之间变化大大变化,代表了A.Arenosa的明显遗传谱系。核算具有丰富的内部变化,我们发现了跨越不同成对的山坡 - 高山群体的一些TE序列的一致转录组反应,这表明TE表达中的并行性。特别表达Retrotransposon LTR Copia(例如Ivana和ALE Clades)和LTR吉普赛(例如Athila和CRM Clades),但也没有LTR线或DNA转座子TIR MUDR始终如一地随着原产地提升而变化。特定于温度和辐照度的TE序列属于相同的类以及包含潜在应力响应元件的额外TE片,例如LTR Copia Sire和Tar,LTR Gypsy Reina)。我们的研究证明A.Alenosa基因组患者具有相当多样化的TE序列,其丰富和表达响应在其天然范围内变化。一些TE片材可以包含对自然环境梯度响应的转录活性元件。这可能进一步有助于群体之间的遗传变异,最终可能提供新的监管机制来面对环境挑战。

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