DNA replication initiates from defined locations called replication origins; some origins are highly active, whereas others are dormant and rarely used. Origins also differ in their activation time, resulting in particular genomic regions replicating at characteristic times and in a defined temporal order. Here we report the comparison of genome replication in four budding yeast species: Saccharomyces cerevisiae, S. paradoxus, S. arboricolus, and S. bayanus. First, we find that the locations of active origins are predominantly conserved between species, whereas dormant origins are poorly conserved. Second, we generated genome-wide replication profiles for each of these species and discovered that the temporal order of genome replication is ...
Similarly to metazoans, the budding yeast Saccharomyces cereviasiae replicates its genome with a def...
DNA replication begins at specific locations called replication origins, where helicase and polymera...
DNA replication begins at specific locations called replication origins, where helicase and polymera...
DNA replication initiates from defined locations called replication origins; some origins are highly...
Genome replication is highly regulated in time and space, but the rules governing the remodeling of ...
International audienceGenome replication is highly regulated in time and space, but the rules govern...
International audienceGenome replication is highly regulated in time and space, but the rules govern...
Similarly to metazoans, the budding yeast Saccharomyces cereviasiae replicates its genome with a def...
International audienceGenome replication is highly regulated in time and space, but the rules govern...
International audienceGenome replication is highly regulated in time and space, but the rules govern...
International audienceGenome replication is highly regulated in time and space, but the rules govern...
International audienceGenome replication is highly regulated in time and space, but the rules govern...
International audienceGenome replication is highly regulated in time and space, but the rules govern...
International audienceGenome replication is highly regulated in time and space, but the rules govern...
International audienceGenome replication is highly regulated in time and space, but the rules govern...
Similarly to metazoans, the budding yeast Saccharomyces cereviasiae replicates its genome with a def...
DNA replication begins at specific locations called replication origins, where helicase and polymera...
DNA replication begins at specific locations called replication origins, where helicase and polymera...
DNA replication initiates from defined locations called replication origins; some origins are highly...
Genome replication is highly regulated in time and space, but the rules governing the remodeling of ...
International audienceGenome replication is highly regulated in time and space, but the rules govern...
International audienceGenome replication is highly regulated in time and space, but the rules govern...
Similarly to metazoans, the budding yeast Saccharomyces cereviasiae replicates its genome with a def...
International audienceGenome replication is highly regulated in time and space, but the rules govern...
International audienceGenome replication is highly regulated in time and space, but the rules govern...
International audienceGenome replication is highly regulated in time and space, but the rules govern...
International audienceGenome replication is highly regulated in time and space, but the rules govern...
International audienceGenome replication is highly regulated in time and space, but the rules govern...
International audienceGenome replication is highly regulated in time and space, but the rules govern...
International audienceGenome replication is highly regulated in time and space, but the rules govern...
Similarly to metazoans, the budding yeast Saccharomyces cereviasiae replicates its genome with a def...
DNA replication begins at specific locations called replication origins, where helicase and polymera...
DNA replication begins at specific locations called replication origins, where helicase and polymera...