DNA segments that can move from one part of the genome to another -- are key to bacterial evolution and the development of antibiotic resistance. Researchers have discovered a new mechanism these ...
DNA segments that can move from one part of the genome to another – are key to bacterial evolution and the development of ...
Transposons have been found clustered at the chromosome ends in eukaryotic cells, but this is the first time it's been ...
Transposons, or "jumping genes" - DNA segments that can move from one part of the genome to another - are key to bacterial ...
A new method for mapping torsion provides insights into the ways that the genome responds to the torsion generated by RNA polymerase II.
Using Hi-C, MicroC, ChIP-seq and RNA-seq data, as well as imaging, this work characterizes the plasmid contact positions along eukaryotic chromosomes with high spatial resolution. ∼70 discrete ...
Model demonstrates ability to generate complex genetic structures Testing shows that Evo 2 independently grasps various biological characteristics and can generate complete mitochondrial genomes, ...
or clusters of genes (e.g., operons), to entire bacterial genomes or eukaryotic chromosomes. Evo 2 is trained on over 9.3 trillion nucleotides from over 128,000 genomes across the three domains ...
However, there are no treatments. The researchers were able to remove duplicate chromosomes from both induced pluripotent stem cells and fibroblasts. Suppressing chromosomal DNA repair ability ...
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