Arms race between anti‐silencing and RdDM in noncoding regions of transposable elements

Author:

Sasaki Taku1ORCID,Kato Kae2,Hosaka Aoi2ORCID,Fu Yu2,Toyoda Atsushi2ORCID,Fujiyama Asao23,Tarutani Yoshiaki23,Kakutani Tetsuji123ORCID

Affiliation:

1. The University of Tokyo Tokyo Japan

2. National Institute of Genetics Mishima Japan

3. The Graduate University for Advanced Studies (SOKENDAI) Mishima Japan

Abstract

AbstractTransposable elements (TEs) are among the most dynamic parts of genomes. Since TEs are potentially deleterious, eukaryotes silence them through epigenetic mechanisms such as repressive histone modifications and DNA methylation. We previously reported that Arabidopsis TEs, called VANDALs, counteract epigenetic silencing through a group of sequence‐specific anti‐silencing proteins, VANCs. VANC proteins bind to noncoding regions of specific VANDAL copies and induce loss of silent chromatin marks. The VANC‐target regions form tandem repeats, which diverge rapidly. Sequence‐specific anti‐silencing allows these TEs to proliferate with minimum host damage. Here, we show that RNA‐directed DNA methylation (RdDM) efficiently targets noncoding regions of VANDAL TEs to silence them de novo. Thus, escape from RdDM could be a primary event leading to the rapid evolution and diversification of sequence‐specific anti‐silencing systems. We propose that this selfish behavior of TEs paradoxically could make them diverse and less harmful to the host.

Funder

Human Frontier Science Program

Japan Society for the Promotion of Science

Core Research for Evolutional Science and Technology

National Institute of Genetics

Publisher

Springer Science and Business Media LLC

Subject

Genetics,Molecular Biology,Biochemistry

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