AbstractSince its completion more than 4 years ago, the sequence of Saccharomyces cerevisiae has been extensively used and studied. The original sequence has received a few corrections, and the identification of genes has been completed, thanks in particular to transcriptome analyses and to specialized studies on introns, tRNA genes, transposons or multigene families. In order to undertake the extensive comparative sequence analysis of this program, we have entirely revisited the S. cerevisiae sequence using the same criteria for all 16 chromosomes and taking into account publicly available annotations for genes and elements that cannot be predicted. Comparison with the other yeast species of this program indicates the existence of 50 novel...
Identifying the mechanisms of eukaryotic genome evolution by comparative genomics is often complicat...
Identifying the mechanisms of eukaryotic genome evolution by comparative genomics is often complicat...
Identifying the mechanisms of eukaryotic genome evolution by comparative genomics is often complicat...
Since its completion more than 4 years ago, the sequence of Saccharomyces cerevisiae has been extens...
The identification of molecular evolutionary mechanisms in eukaryotes is approached by a comparative...
AbstractThe identification of molecular evolutionary mechanisms in eukaryotes is approached by a com...
AbstractComparisons of the 6213 predicted Saccharomyces cerevisiae open reading frame (ORF) products...
AbstractThe primary analysis of the sequences for our Hemiascomycete random sequence tag (RST) proje...
cerevisiae open reading frame (ORF) products with sequences from organisms of other biological phyla...
Comparisons of the 6213 predicted Saccharomyces cerevisiae open reading frame (ORF) products with se...
We have analyzed the evolution of chromosome maps of Hemiascomycetes by comparing gene order and ori...
AbstractAs part of the comparative genomics project ‘GENOLEVURES’, we studied the Kluyveromyces marx...
AbstractWe have analyzed the evolution of chromosome maps of Hemiascomycetes by comparing gene order...
In [13] we reported the genome sequences of S. paradoxus, S. mikatae and S. bayanus and compared the...
Identifying the mechanisms of eukaryotic genome evolution by comparative genomics is often complicat...
Identifying the mechanisms of eukaryotic genome evolution by comparative genomics is often complicat...
Identifying the mechanisms of eukaryotic genome evolution by comparative genomics is often complicat...
Identifying the mechanisms of eukaryotic genome evolution by comparative genomics is often complicat...
Since its completion more than 4 years ago, the sequence of Saccharomyces cerevisiae has been extens...
The identification of molecular evolutionary mechanisms in eukaryotes is approached by a comparative...
AbstractThe identification of molecular evolutionary mechanisms in eukaryotes is approached by a com...
AbstractComparisons of the 6213 predicted Saccharomyces cerevisiae open reading frame (ORF) products...
AbstractThe primary analysis of the sequences for our Hemiascomycete random sequence tag (RST) proje...
cerevisiae open reading frame (ORF) products with sequences from organisms of other biological phyla...
Comparisons of the 6213 predicted Saccharomyces cerevisiae open reading frame (ORF) products with se...
We have analyzed the evolution of chromosome maps of Hemiascomycetes by comparing gene order and ori...
AbstractAs part of the comparative genomics project ‘GENOLEVURES’, we studied the Kluyveromyces marx...
AbstractWe have analyzed the evolution of chromosome maps of Hemiascomycetes by comparing gene order...
In [13] we reported the genome sequences of S. paradoxus, S. mikatae and S. bayanus and compared the...
Identifying the mechanisms of eukaryotic genome evolution by comparative genomics is often complicat...
Identifying the mechanisms of eukaryotic genome evolution by comparative genomics is often complicat...
Identifying the mechanisms of eukaryotic genome evolution by comparative genomics is often complicat...
Identifying the mechanisms of eukaryotic genome evolution by comparative genomics is often complicat...