Euplotes focardii is a marine ciliated protozoan discovered in the Ross Sea near Terra Nova Bay, Antarctica. This organism is strictly psychrophilic, survives and reproduces optimally at 4–5 °C, and has a genome rich in A/T base pairs. Like other ciliated protozoans, Euplotes spp. are characterized by nuclear dimorphism: 1) the germline micronucleus contains the entire genome as large chromosomes; and 2) the somatic macronucleus (∼50megabases, or 5% of the micronuclear genome) contains small linearDNA nanochromosomes [1–12 kilobases], each of which constitutes a single genetic unit. These characteristics make E. focardii an ideal model for genome-level analysis to understand the evolutionary mechanisms that determine the adaptation of org...
Ciliates provide optimal model systems to study environmental adaptation. Comparative transcriptomic...
The mechanisms of adaptation to low temperatures remain poorly understood, largely due to the limita...
The mechanisms of adaptation to low temperatures remain poorly understood, largely due to the limita...
Euplotes focardii is a marine ciliated protozoan discovered in the Ross Sea near Terra Nova Bay, Ant...
Euplotes focardii is a marine ciliated protozoan discovered in the Ross Sea near Terra Nova Bay, Ant...
The macronuclear (MAC) genomes of ciliates belonging to the genus Euplotes species are comprised of ...
The macronuclear (MAC) genomes of ciliates belonging to the genus Euplotes species are comprised of ...
The macronuclear (MAC) genomes of ciliates belonging to the genus Euplotes species are comprised of ...
The macronuclear (MAC) genomes of ciliates belonging to the genus Euplotes species are comprised of ...
The macronuclear (MAC) genomes of ciliates belonging to the genus Euplotes species are comprised of ...
The macronuclear (MAC) genomes of ciliates belonging to the genus Euplotes species are comprised of ...
The macronuclear (MAC) genomes of ciliates belonging to the genus Euplotes species are comprised of ...
The macronuclear (MAC) genomes of ciliates belonging to the genus Euplotes species are comprised of ...
Ciliates provide optimal model systems to study environmental adaptation. Comparative transcriptomic...
Ciliates provide optimal model systems to study environmental adaptation. Comparative transcriptomic...
Ciliates provide optimal model systems to study environmental adaptation. Comparative transcriptomic...
The mechanisms of adaptation to low temperatures remain poorly understood, largely due to the limita...
The mechanisms of adaptation to low temperatures remain poorly understood, largely due to the limita...
Euplotes focardii is a marine ciliated protozoan discovered in the Ross Sea near Terra Nova Bay, Ant...
Euplotes focardii is a marine ciliated protozoan discovered in the Ross Sea near Terra Nova Bay, Ant...
The macronuclear (MAC) genomes of ciliates belonging to the genus Euplotes species are comprised of ...
The macronuclear (MAC) genomes of ciliates belonging to the genus Euplotes species are comprised of ...
The macronuclear (MAC) genomes of ciliates belonging to the genus Euplotes species are comprised of ...
The macronuclear (MAC) genomes of ciliates belonging to the genus Euplotes species are comprised of ...
The macronuclear (MAC) genomes of ciliates belonging to the genus Euplotes species are comprised of ...
The macronuclear (MAC) genomes of ciliates belonging to the genus Euplotes species are comprised of ...
The macronuclear (MAC) genomes of ciliates belonging to the genus Euplotes species are comprised of ...
The macronuclear (MAC) genomes of ciliates belonging to the genus Euplotes species are comprised of ...
Ciliates provide optimal model systems to study environmental adaptation. Comparative transcriptomic...
Ciliates provide optimal model systems to study environmental adaptation. Comparative transcriptomic...
Ciliates provide optimal model systems to study environmental adaptation. Comparative transcriptomic...
The mechanisms of adaptation to low temperatures remain poorly understood, largely due to the limita...
The mechanisms of adaptation to low temperatures remain poorly understood, largely due to the limita...