Genetics and Microbiology Research Group, Department of Agrarian Production, Public University of Navarre, 31006, Pamplona, Spain.
Appl Microbiol Biotechnol. 2017 Feb;101(4):1337-1350. doi: 10.1007/s00253-017-8097-8. Epub 2017 Jan 10.
The phylum Basidiomycota includes filamentous fungi and yeast species with different ecological and genomic characteristics. Transposable elements (TEs) are abundant components of most eukaryotic genomes, and their transition from being genomic parasites to key drivers of genomic architecture, functionality, and evolution is a subject receiving much attention. In light of the abundant genomic information released during the last decade, the aims of this mini-review are to discuss the dynamics and impact of TEs in basidiomycete fungi. To do this, we surveyed and explored data from 75 genomes, which encompass the phylogenetic diversity of the phylum Basidiomycota. We describe annotation approaches and analyze TE distribution in the context of species phylogeny and genome size. Further, we review the most relevant literature about the role of TEs in species lifestyle, their impact on genome architecture and functionality, and the defense mechanisms evolved to control their proliferation. Finally, we discuss potential applications of TEs that can drive future innovations in fungal research.
担子菌门包括具有不同生态和基因组特征的丝状真菌和酵母物种。转座元件 (TEs) 是大多数真核基因组的丰富组成部分,它们从基因组寄生虫转变为基因组结构、功能和进化的关键驱动因素,这是一个备受关注的主题。鉴于过去十年中发布的大量基因组信息,本综述的目的是讨论担子菌真菌中转座元件的动态和影响。为此,我们调查和探索了来自 75 个基因组的数据,这些基因组涵盖了担子菌门的系统发育多样性。我们描述了注释方法,并根据物种系统发育和基因组大小分析了 TE 的分布。此外,我们回顾了关于 TEs 在物种生活方式中的作用、它们对基因组结构和功能的影响以及为控制其增殖而进化的防御机制的最相关文献。最后,我们讨论了 TEs 的潜在应用,这些应用可能会推动真菌研究的未来创新。