International audienceReconstructing genome history is complex but necessary to reveal quantitative principles governing genome evolution. Such reconstruction requires recapitulating into a single evolutionary framework the evolution of genome architecture and gene repertoire. Here, we reconstructed the genome history of the genus Lachancea that appeared to cover a continuous evolutionary range from closely related to more diverged yeast species. Our approach integrated the generation of a high-quality genome data set; the development of AnChro, a new algorithm for reconstructing ancestral genome architecture; and a comprehensive analysis of gene repertoire evolution. We found that the ancestral genome of the genus Lachancea contained eight...
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...
International audienceReconstructing genome history is complex but necessary to reveal quantitative ...
International audienceReconstructing genome history is complex but necessary to reveal quantitative ...
Reconstructing genome history is complex but necessary to reveal quantitative principles governing g...
International audienceReconstructing genome history is complex but necessary to reveal quantitative ...
International audienceReconstructing genome history is complex but necessary to reveal quantitative ...
Comparative genomics can be used to infer the history of genomic rearrangements that occurred during...
Identifying the mechanisms of eukaryotic genome evolution by comparative genomics is often complicat...
Yeast species represent an ideal model system for population genomic studies but large-scale polymor...
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...
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...
International audienceReconstructing genome history is complex but necessary to reveal quantitative ...
International audienceReconstructing genome history is complex but necessary to reveal quantitative ...
Reconstructing genome history is complex but necessary to reveal quantitative principles governing g...
International audienceReconstructing genome history is complex but necessary to reveal quantitative ...
International audienceReconstructing genome history is complex but necessary to reveal quantitative ...
Comparative genomics can be used to infer the history of genomic rearrangements that occurred during...
Identifying the mechanisms of eukaryotic genome evolution by comparative genomics is often complicat...
Yeast species represent an ideal model system for population genomic studies but large-scale polymor...
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...
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...