Kejnovsky Eduard, Jedlicka Pavel
Department of Plant Developmental Genetics, Institute of Biophysics, Academy of Sciences of the Czech Republic, Brno, Czech Republic.
Bioessays. 2022 Apr;44(4):e2100242. doi: 10.1002/bies.202100242. Epub 2022 Feb 3.
There is growing evidence of evolutionary genome plasticity. The evolution of repetitive DNA elements, the major components of most eukaryotic genomes, involves the amplification of various classes of mobile genetic elements, the expansion of satellite DNA, the transfer of fragments or entire organellar genomes and may have connections with viruses. In addition to various repetitive DNA elements, a plethora of large and small RNAs migrate within and between cells during individual development as well as during evolution and contribute to changes of genome structure and function. Such migration of DNA and RNA molecules often results in horizontal gene transfer, thus shaping the whole genomic network of interconnected species. Here, we propose that a high evolutionary dynamism of repetitive genome components is often related to the migration/movement of DNA or RNA molecules. We speculate that the cytoplasm is probably an ideal compartment for such evolutionary experiments.
越来越多的证据表明存在进化基因组可塑性。重复DNA元件是大多数真核生物基因组的主要组成部分,其进化涉及各类移动遗传元件的扩增、卫星DNA的扩展、片段或整个细胞器基因组的转移,并且可能与病毒有关。除了各种重复DNA元件外,大量的大小RNA在个体发育以及进化过程中在细胞内和细胞间迁移,促进基因组结构和功能的变化。DNA和RNA分子的这种迁移常常导致水平基因转移,从而塑造相互关联物种的整个基因组网络。在此,我们提出重复基因组成分的高进化动态性通常与DNA或RNA分子的迁移/移动有关。我们推测细胞质可能是进行此类进化实验的理想区域。