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Long-term experimental evolution reveals purifying selection on piRNA-mediated control of transposable element expression. | LitMetric

AI Article Synopsis

  • Transposable elements (TEs) are common in eukaryotic genomes, and their activity is usually regulated by piRNAs and chromatin, but how this regulation evolves is not well understood.
  • Researchers studied C. elegans populations over 409 generations, finding that smaller populations exhibited increased TE expression due to less effective natural selection, leading to a failure of piRNA-mediated silencing.
  • The study suggests that the epigenomic context influences TE silencing dynamics, providing new insights into how natural selection helps control TE expression levels in these organisms.

Article Abstract

Background: Transposable elements (TEs) are an almost universal constituent of eukaryotic genomes. In animals, Piwi-interacting small RNAs (piRNAs) and repressive chromatin often play crucial roles in preventing TE transcription and thus restricting TE activity. Nevertheless, TE content varies widely across eukaryotes and the dynamics of TE activity and TE silencing across evolutionary time is poorly understood.

Results: Here, we used experimentally evolved populations of C. elegans to study the dynamics of TE expression over 409 generations. The experimental populations were evolved at population sizes of 1, 10 and 100 individuals to manipulate the efficiency of natural selection versus genetic drift. We demonstrate increased TE expression relative to the ancestral population, with the largest increases occurring in the smallest populations. We show that the transcriptional activation of TEs within active regions of the genome is associated with failure of piRNA-mediated silencing, whilst desilenced TEs in repressed chromatin domains retain small RNAs. Additionally, we find that the sequence context of the surrounding region influences the propensity of TEs to lose silencing through failure of small RNA-mediated silencing.

Conclusions: Our results show that natural selection in C. elegans is responsible for maintaining low levels of TE expression, and provide new insights into the epigenomic features responsible.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7646084PMC
http://dx.doi.org/10.1186/s12915-020-00897-yDOI Listing

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