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Transposition favors the generation of large effect mutations that may facilitate rapid adaption

机译:转座有利于产生大效应突变这可能有助于快速适应

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摘要

Transposable elements (TEs) are mobile parasitic sequences that have been repeatedly coopted during evolution to generate new functions and rewire gene regulatory networks. Yet, the contribution of active TEs to the creation of heritable mutations remains unknown. Using TE accumulation lines in Arabidopsis thaliana we show that once initiated, transposition produces an exponential spread of TE copies, which rapidly leads to high mutation rates. Most insertions occur near or within genes and targets differ between TE families. Furthermore, we uncover an essential role of the histone variant H2A.Z in the preferential integration of Ty1/copia retrotransposons within environmentally responsive genes and away from essential genes. We also show that epigenetic silencing of new Ty1/copia copies can affect their impact on major fitness-related traits, including flowering time. Our findings demonstrate that TEs are potent episodic (epi)mutagens that, thanks to marked chromatin tropisms, limit the mutation load and increase the potential for rapid adaptation.
机译:转座因子(TEs)是可移动的寄生序列,在进化过程中已反复被采用,以产生新功能并重新连接基因调控网络。然而,活跃的TEs对可遗传突变的产生的贡献仍然未知。使用拟南芥中的TE积累系,我们显示一旦启动,转座产生TE拷贝的指数扩散,从而迅速导致高突变率。大多数插入发生在基因附近或内部,并且目标在TE家族之间有所不同。此外,我们发现组蛋白变体H2A.Z在Ty1 / copia逆转座子优先整合到环境响应基因内而不是必需基因内的重要作用。我们还显示,新的Ty1 / copia副本的表观遗传沉默可能会影响它们对与健身相关的主要特征(包括开花时间)的影响。我们的发现表明,TEs是有效的情节突变(epi),由于显着的染色质向性,限制了突变负载并增加了快速适应的潜力。

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