Comparative Genomics in Hemiascomycete Yeasts: Evolution of Sex, Silencing, and Subtelomeres
- 22 December 2004
- journal article
- Published by Oxford University Press (OUP) in Molecular Biology and Evolution
- Vol. 22 (4) , 856-873
- https://doi.org/10.1093/molbev/msi070
Abstract
The recent release of sequences of several unexplored yeast species that cover an evolutionary range comparable to the entire phylum of chordates offers us a unique opportunity to investigate how genes involved in adaptation have been shaped by evolution. We have examined how three different sets of genes, all related to adaptative processes at the genomic level, have evolved in hemiascomycetes: (1) the mating-type genes that govern sexuality, (2) the silencing genes that are connected to regulation of mating-type cassettes and to telomere position effect, and (3) the gene families found repeated in subtelomeric regions. We report new combinations of mating-type genes and cassettes in hemiascomycetous species; we show that silencing proteins diverge rapidly. We have also found that in all species studied, subtelomeric gene families exist and are specific to each species.Keywords
This publication has 96 references indexed in Scilit:
- Efficient gene targeting in Kluyveromyces lactisYeast, 2004
- Genome evolution in yeastsNature, 2004
- Proof and evolutionary analysis of ancient genome duplication in the yeast Saccharomyces cerevisiaeNature, 2004
- Sequencing and comparison of yeast species to identify genes and regulatory elementsNature, 2003
- Three Mating Type-Like Loci in Candida glabrataEukaryotic Cell, 2003
- Virulence-related surface glycoproteins in the yeast pathogen Candida glabrata are encoded in subtelomeric clusters and subject to RAP1- and SIR-dependent transcriptional silencingGenes & Development, 2003
- MultiCoil: A program for predicting two‐and three‐stranded coiled coilsProtein Science, 1997
- A dot-matrix program with dynamic threshold control suited for genomic DNA and protein sequence analysisGene, 1995
- Genetic mapping of the α‐galactosidase MEL gene family on right and left telomeres of Saccharomyces cerevisiaeYeast, 1995
- CLUSTAL W: improving the sensitivity of progressive multiple sequence alignment through sequence weighting, position-specific gap penalties and weight matrix choiceNucleic Acids Research, 1994