Scooter, a new active transposon in Schizophyllum commune, has disrupted two genes regulating signal transduction

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Abstract

Two copies of scooter, a DNA-mediated transposon in the basidiomycetous fungus Schizophyllum commune, were characterized. Scooter is the first transposon isolated from S. commune. Scooter creates 8-bp target site duplications, comparable to members of the hAT superfamily, and has 32-bp terminal inverted repeats. Both copies of scooter are nonautonomous elements capable of movement. Southern blot hybridizations show that scooter-related sequences are present in all S commune strains tested. Scooter-1 was identified initially as an insertion in the Bβ2 pheromone receptor gene, bbr2, leading to a partial defect in mating. Scooter-2 spontaneously disrupted a gene to produce the frequently occurring morphological mutant phenotype known as thin. The scooter-2insert permitted cloning of the disrupted gene, thn1, which encodes a putative regulator of G protein signaling (RGS) protein. Spontaneous insertion of scooter into genes with identifiable mutant phenotypes constitutes the first evidence of active transposition of a DNA-mediated transposon in a basidiomycete.

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Fowler, T. J., & Mitton, M. F. (2000). Scooter, a new active transposon in Schizophyllum commune, has disrupted two genes regulating signal transduction. Genetics, 156(4), 1585–1594. https://doi.org/10.1093/genetics/156.4.1585

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