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模拟植物多倍化过程中转座元件的动态变化。

Modeling transposable elements dynamics during polyploidization in plants.

机构信息

Departamento de Física Aplicada, Radiología y Medicina Física, Universidad de Córdoba, Campus Universitario de Rabanales, Edificio Albert Einstein (C2), 14014 Córdoba, Spain.

Departamento de Agronomía, Universidad de Córdoba, Campus Universitario de Rabanales, Edificio Celestino Mutis (C4), 14014 Córdoba, Spain.

出版信息

J Theor Biol. 2024 Feb 21;579:111701. doi: 10.1016/j.jtbi.2023.111701. Epub 2023 Dec 19.

DOI:10.1016/j.jtbi.2023.111701
PMID:38128754
Abstract

In this work we study the proliferation of transposable elements (TEs) and the epigenetic response of plants during the process of polyploidization. Through a deterministic model, expanding on our previous work on TE proliferation under epigenetic regulation, we study the long-term TE distribution and TE stability in the subgenomes of both autopolyploids and allopolyploids. We also explore different small-interfering RNA (siRNA) action modes on the subgenomes, including a model where siRNAs are not directed to specific genomes and one where siRNAs are directed - i.e. more active - in subgenomes with higher TE loads. In the autopolyploid case, we find long-term stable equilbria that tend to equilibrate the number of active TEs between subgenomes. In the allopolyploid case, directed siRNA action is fundamental to avoid a "winner takes all" outcome of the competition between the TEs in the different subgenomes. We also show that decaying oscillations in the number of TEs occur naturally in all cases, perhaps explaining some of the observed features of 'genomic shock' after hybridization events, and that the balance in the dynamics of the different types of siRNA is determinant for the synchronization of these oscillations.

摘要

在这项工作中,我们研究了转座元件 (TEs) 的增殖和植物在多倍体化过程中的表观遗传反应。通过一个确定性模型,扩展了我们之前关于在表观遗传调控下 TE 增殖的工作,我们研究了自多倍体和异源多倍体的亚基因组中 TE 的长期分布和 TE 的稳定性。我们还探索了不同的小干扰 RNA (siRNA) 在亚基因组上的作用模式,包括 siRNA 不针对特定基因组的模型和 siRNA 在 TE 负荷较高的亚基因组中更活跃的模型。在自多倍体的情况下,我们发现了长期稳定的平衡,这些平衡倾向于在亚基因组之间平衡活性 TE 的数量。在异源多倍体的情况下,定向 siRNA 作用对于避免不同亚基因组中的 TE 之间的竞争出现“赢家通吃”的结果至关重要。我们还表明,在所有情况下,TE 数量的衰减振荡都是自然发生的,这也许可以解释杂交事件后“基因组冲击”观察到的一些特征,并且不同类型的 siRNA 的动力学平衡对于这些振荡的同步是决定性的。

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Modeling transposable elements dynamics during polyploidization in plants.模拟植物多倍化过程中转座元件的动态变化。
J Theor Biol. 2024 Feb 21;579:111701. doi: 10.1016/j.jtbi.2023.111701. Epub 2023 Dec 19.
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