Results 241 to 250 of about 2,056,925 (301)
T2T genomes of <i>Caenorhabditis nigoni</i> and <i>Caenorhabditis briggsae</i> reveal divergence in satellite DNA abundance. [PDF]
Pellow R, Kotikalapudi M, Rog O.
europepmc +1 more source
Comparative Cytogenetic Study of Eggplant (<i>Solanum melongena</i> L.) and Its Wild Ancestors <i>Solanum insanum</i> L. and <i>Solanum incanum</i> L. [PDF]
Falistocco E, Ceccarelli M.
europepmc +1 more source
Viral nucleosome-like particles show increased dynamic behavior and altered thermodynamic stability. [PDF]
Melo ME, Wereszczynski J.
europepmc +1 more source
Seeing Is Believing: Intercellular Transfer of DNA between Human Cells. [PDF]
Sun EG, Ventura A.
europepmc +1 more source
Satellite DNA: An Evolving Topic [PDF]
Satellite DNA represents one of the most fascinating parts of the repetitive fraction of the eukaryotic genome. Since the discovery of highly repetitive tandem DNA in the 1960s, a lot of literature has extensively covered various topics related to the structure, organization, function, and evolution of such sequences.
Manuel A Garrido-Ramos
exaly +5 more sources
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Biochemical and Biophysical Research Communications, 1983
The lower amount of 5 methylcytosine in DNA from bull sperm relative to DNA of other bovine tissues is a result of the absence of this minor base from several of the satellite DNAs in sperm. This applies particularly to the 1.715, 1.711b and 1.709 satellites and less so to the 1.706 and 1.711a satellites.
R L, Adams, R H, Burdon, J, Fulton
openaire +2 more sources
The lower amount of 5 methylcytosine in DNA from bull sperm relative to DNA of other bovine tissues is a result of the absence of this minor base from several of the satellite DNAs in sperm. This applies particularly to the 1.715, 1.711b and 1.709 satellites and less so to the 1.706 and 1.711a satellites.
R L, Adams, R H, Burdon, J, Fulton
openaire +2 more sources
2012
Satellite DNAs represent the most abundant fraction of repetitive sequences in genomes of almost all eukaryotic species. Long arrays of satellite DNA monomers form densely packed heterochromatic genome compartments and also span over the functionally important centromere locus.
Meštrović Radan, Nevenka +2 more
openaire +3 more sources
Satellite DNAs represent the most abundant fraction of repetitive sequences in genomes of almost all eukaryotic species. Long arrays of satellite DNA monomers form densely packed heterochromatic genome compartments and also span over the functionally important centromere locus.
Meštrović Radan, Nevenka +2 more
openaire +3 more sources

