Moschetti Roberta, Palazzo Antonio, Lorusso Patrizio, Viggiano Luigi, Marsano René Massimiliano
Dipartimento di Biologia, Università degli Studi di Bari "Aldo Moro". Via Orabona 4, 70125 Bari, Italy.
Laboratory of Translational Nanotechnology, "Istituto Tumori Giovanni Paolo II" I.R.C.C.S. Viale Orazio Flacco 65, 70125 Bari, Italy.
Biology (Basel). 2020 Feb 3;9(2):25. doi: 10.3390/biology9020025.
Transposable elements (TEs) are constitutive components of both eukaryotic and prokaryotic genomes. The role of TEs in the evolution of genes and genomes has been widely assessed over the past years in a variety of model and non-model organisms. is undoubtedly among the most powerful model organisms used for the purpose of studying the role of transposons and their effects on the stability and evolution of genes and genomes. Besides their most intuitive role as insertional mutagens, TEs can modify the transcriptional pattern of host genes by juxtaposing new -regulatory sequences. A key element of TE biology is that they carry transcriptional control elements that fine-tune the transcription of their own genes, but that can also perturb the transcriptional activity of neighboring host genes. From this perspective, the transposition-mediated modulation of gene expression is an important issue for the short-term adaptation of physiological functions to the environmental changes, and for long-term evolutionary changes. Here, we review the current literature concerning the regulatory and structural elements operating in provided by TEs in . Furthermore, we highlight that, besides their influence on both TEs and host genes expression, they can affect the chromatin structure and epigenetic status as well as both the chromosome's structure and stability. It emerges that is a good model organism to study the effect of TE-linked regulatory sequences, and it could help future studies on TE-host interactions in any complex eukaryotic genome.
转座元件(TEs)是真核生物和原核生物基因组的组成部分。在过去几年中,人们在各种模式生物和非模式生物中广泛评估了TEs在基因和基因组进化中的作用。 无疑是用于研究转座子的作用及其对基因和基因组稳定性与进化影响的最强大模式生物之一。除了作为插入诱变剂这一最直观的作用外,TEs还可以通过 juxtaposing新的调控序列来改变宿主基因的转录模式。TE生物学的一个关键要素是它们携带转录控制元件,这些元件可微调自身基因的转录,但也可能干扰邻近宿主基因的转录活性。从这个角度来看,转座介导的基因表达调控对于生理功能短期适应环境变化以及长期进化变化而言都是一个重要问题。在此,我们综述了当前有关TEs在 中发挥作用的调控和结构元件的文献。此外,我们强调,除了对TEs和宿主基因表达的影响外,它们还可影响染色质结构和表观遗传状态以及染色体的结构和稳定性。结果表明, 是研究与TE相关的调控序列作用的良好模式生物,它有助于未来对任何复杂真核生物基因组中TE-宿主相互作用的研究。