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The piRNA cluster torimochi is an expanding transposon in cultured silkworm cells
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ABSTRACT
PIWI proteins and PIWI-interacting RNAs (piRNAs) play a central role in repressing transposable elements in animal germ cells. It is thought that piRNAs are mainly produced from discrete genomic loci named piRNA clusters, which often contain many “dead” transposon remnants from past invasions and have heterochromatic features. In the genome of silkworm ovary-derived cultured cells called BmN4, a well-established model for piRNA research,
torimochi
was previously annotated as a unique and specialized genomic region that can capture transgenes and produce new piRNAs bearing a trans-silencing activity. However, the sequence identity of
torimochi
has remained elusive. Here, we carefully characterized
torimochi
by utilizing the updated silkworm genome sequence and the long-read sequencer MinION. We found that
torimochi
is in fact a full-length gypsy-like LTR retrotransposon, which is exceptionally active and has massively expanded its copy number in BmN4 cells. Many copies of
torimochi
in BmN4 cells have features of open chromatin and the ability to produce piRNAs. Therefore,
torimochi
may represent a young, growing piRNA cluster, which is still “alive” and active in transposition yet capable of trapping other transposable elements to produce
de novo
piRNAs. (185 words)
Title: The piRNA cluster
torimochi
is an expanding transposon in cultured silkworm cells
Description:
ABSTRACT
PIWI proteins and PIWI-interacting RNAs (piRNAs) play a central role in repressing transposable elements in animal germ cells.
It is thought that piRNAs are mainly produced from discrete genomic loci named piRNA clusters, which often contain many “dead” transposon remnants from past invasions and have heterochromatic features.
In the genome of silkworm ovary-derived cultured cells called BmN4, a well-established model for piRNA research,
torimochi
was previously annotated as a unique and specialized genomic region that can capture transgenes and produce new piRNAs bearing a trans-silencing activity.
However, the sequence identity of
torimochi
has remained elusive.
Here, we carefully characterized
torimochi
by utilizing the updated silkworm genome sequence and the long-read sequencer MinION.
We found that
torimochi
is in fact a full-length gypsy-like LTR retrotransposon, which is exceptionally active and has massively expanded its copy number in BmN4 cells.
Many copies of
torimochi
in BmN4 cells have features of open chromatin and the ability to produce piRNAs.
Therefore,
torimochi
may represent a young, growing piRNA cluster, which is still “alive” and active in transposition yet capable of trapping other transposable elements to produce
de novo
piRNAs.
(185 words).
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