Repeat-Induced Point Mutation and the Population Structure of Transposable Elements in Microbotryum violaceum
- 1 July 2005
- journal article
- research article
- Published by Oxford University Press (OUP) in Genetics
- Vol. 170 (3) , 1081-1089
- https://doi.org/10.1534/genetics.105.042564
Abstract
Repeat-induced point mutation (RIP) is a genome defense in fungi that hypermutates repetitive DNA and is suggested to limit the accumulation of transposable elements. The genome of Microbotryum violaceum has a high density of transposable elements compared to other fungi, but there is also evidence of RIP activity. This is the first report of RIP in a basidiomycete and was obtained by sequencing multiple copies of the integrase gene of a copia-type transposable element and the helicase gene of a Helitron-type element. In M. violaceum, the targets for RIP mutations are the cytosine residues of TCG trinucleotide combinations. Although RIP is a linkage-dependent process that tends to increase the variation among repetitive sequences, a chromosome-specific substructuring was observed in the transposable element population. The observed chromosome-specific patterns are not consistent with RIP, but rather suggest an effect of gene conversion, which is also a linkage-dependent process but results in a homogenization of repeated sequences. Particular sequences were found more widely distributed within the genome than expected by chance and may reflect the recently active variants. Therefore, sequence variation of transposable elements in M. violaceum appears to be driven by selection for transposition ability in combination with the context-specific forces of the RIP and gene conversion.Keywords
This publication has 48 references indexed in Scilit:
- Shared Forces of Sex Chromosome Evolution in Haploid-Mating and Diploid-Mating OrganismsSequence data from this article have been deposited with the EMBL/GenBank Data Libraries under the accession nos. BZ81929 and BZ782612.Genetics, 2004
- Genetic Transformation of Neurospora tetrasperma, Demonstration of Repeat-Induced Point Mutation (RIP) in Self-Crosses and a Screen for Recessive RIP-Defective MutantsThis article is dedicated to the memory of C. Vaishnavi.Sequence data from this article have been deposited with the EMBL/GenBank Data Libraries under accession nos. AY256902, AY256903, AY490236, AY490237, AY490238, AY490239, AY526722, AY526723, AY526724, and AY536859, AY536860, AY536861.Genetics, 2004
- Structure and evolution of theCinfulretrotransposon family of maizeGenome, 2003
- Size Matters: Non-LTR Retrotransposable Elements and Ectopic Recombination in DrosophilaMolecular Biology and Evolution, 2003
- Inferences on the Evolutionary History of the S-Element Family of Drosophila melanogasterMolecular Biology and Evolution, 2003
- Genetics ofUstilago violacea. XXXIV. Genetic Evidence for a Transposable Element Functioning during Mitosis and Two Transposable Elements Functioning during MeiosisInternational Journal of Plant Sciences, 1998
- Three highly divergent subfamilies of the impala transposable element coexist in the genome of the fungus Fusarium oxysporumMolecular Genetics and Genomics, 1998
- Molecular Approaches to Differentiate Subpopulations or Formae speciales of the Fungal Phytopathogen Microbotryum violaceumInternational Journal of Plant Sciences, 1997
- Afut1, a retrotransposon-like element from Aspergillus fumigatusNucleic Acids Research, 1996
- The distribution of transposable elements within and between chromosomes in a population ofDrosophila melanogaster. I. Element frequencies and distributionGenetics Research, 1992