Intronic heterochromatin prevents cryptic transcription initiation in Arabidopsis

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Abstract

Intronic transposable elements (TEs) comprise a large proportion in eukaryotic genomes, but how they regulate the host genes remains to be explored. Our forward genetic screen disclosed the plant-specific RNA polymerases IV and V in suppressing intronic TE-mediated cryptic transcription initiation of a chimeric transcripts at FLC (FLCTE). Initiation of FLCTE transcription is blocked by the locally formed intronic heterochromatin, which is directly associated with RNA Pol V to inhibit the entry of RNA Pol II and the occupancy of H3K4 methylation. Genome-wide Pol II Ser5p native elongation transcription sequencing revealed that a significant number of intronic heterochromatin-containing genes undergo this mechanism. This study sheds light on deeply understanding the function of intronic heterochromatin on host genes expression in eukaryotic genome.

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Zhou, J., Liu, L., Li, Q., Xu, W., Li, K., Wang, Z. W., & Sun, Q. (2020). Intronic heterochromatin prevents cryptic transcription initiation in Arabidopsis. Plant Journal, 101(5), 1185–1197. https://doi.org/10.1111/tpj.14584

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