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The transposons switch from "cut and paste" to a net replicative mode of transposition in cells that have acquired pre-meiotic fate.
They are divided into two classes according to their mode of transposition.
TEs fall into two classes, defined by their mode of transposition.
Thus, this mode of transposition might be a unifying feature of the Mutator superfamily of transposases.
TEs are classified into two classes based on their mode of transposition [ 1].
The mode of transposition of most MITE families discovered so far has long remained mysterious [ 20, 21].
Similar(36)
The introns in the two groups differ in their architecture, their mechanisms of splicing and their modes of transposition.
Nevertheless, footprints of helitron somatic excisions have been recently reported in the maize genome, indicating that they may exhibit both replicative and excision-mediated modes of transposition [ 9].
Class II TEs, or DNA transposons, utilize DNA-based modes of transposition including "cut-and-paste" mechanism, rolling-circle replication, and a mechanism that involves DNA polymerase and is not yet well understood.
Retrotransposons are the most abundant mobile elements found in plant genomes, as the replicative mode of retroelement transposition enables the LTR retrotransposon to accrue high copy number.
As this feature is conserved in the IS Mich2 group, it likely reflects a mode of regulation of transposition by programmed translational frameshifting as described in the IS 1 or IS 3 families (Chandler and Fayet 1993; Nagy and Chandler 2004).
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