Programa de Pós-Graduação em Genética e Biologia Molecular, Universidade Federal do Rio Grande do Sul, Porto Alegre, Brazil.
Departamento de Bioquímica e Biologia Molecular, Universidade Federal de Santa Maria, Santa Maria, RS, 97105900, Brazil.
Mol Biol Rep. 2022 Sep;49(9):9033-9040. doi: 10.1007/s11033-022-07839-7. Epub 2022 Aug 18.
Transposable elements, also known as "jumping genes," have the ability to hop within the host genome. Nonetheless, this capacity is kept in check by the host cell defense systems to avoid unbridled TE mobilization. Different types of stressors can activate TEs in Drosophila, suggesting that TEs may play an adaptive role in the stress response, especially in generating genetic variability for adaptive evolution. TE activation by stressors may also lead to the notion, usually found in the literature, that any form of stress could activate all or the majority of TEs. In this review, we define what stress is. We then present and discuss RNA sequencing results from several studies demonstrating that stress does not trigger TE transcription broadly in Drosophila. An explanation for the LTR order of TEs being the most overexpressed is also proposed.
转座元件,也被称为“跳跃基因”,具有在宿主基因组内跳跃的能力。然而,这种能力受到宿主细胞防御系统的控制,以避免不受控制的 TE 调动。不同类型的应激源可以激活果蝇中的 TEs,这表明 TEs 可能在应激反应中发挥适应性作用,特别是在产生适应性进化的遗传可变性方面。应激源对 TE 的激活也可能导致这样一种观点,即在文献中通常认为任何形式的应激都可能激活所有或大多数 TE。在这篇综述中,我们定义了什么是应激。然后,我们呈现并讨论了几项研究的 RNA 测序结果,这些结果表明应激并没有广泛地触发果蝇中 TE 的转录。我们还提出了一个解释,即 LTR 顺序的 TE 被过度表达的原因。