A study has traced thousands of conserved regulatory elements back 300 million years, revealing deep principles of plant genome evolution—a discovery that could pave the way for more precise ...
Genome editing-based therapies typically aim to treat disease by correcting underlying genetic mutations in patient's cells.
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AI trained on 9 trillion DNA letters predicts harmful mutations and designs new genomes
By Hugo Francisco de Souza Trained on genomic data spanning the tree of life, Evo 2 reveals how artificial intelligence can ...
A team of international scientists, including researchers at the Donald Danforth Plant Science Center, reports a major advance in sorghum genomics: a powerful new resource designed to speed discovery ...
A fleeting DNA fold called i‑DNA can switch cancer‑related genes on and off, revealing a hidden structural weak point that future therapies might exploit to collapse tumors.
DNA methylation is a highly studied epigenetic modification that regulates genome function and plays key roles in development and disease 1. It is linked to a broad range of conditions, including ...
For decades, scientists believed a fertilized egg’s DNA began as a shapeless mass, only organizing itself once the embryo switched on its genes. But new research reveals that the genome is already ...
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Jumping DNA fragments found to destabilize cancer genome
A study published today in the journal Science reveals how jumping fragments of human DNA, a type of genetic parasite, ...
The genome is more than a linear code; it is a dynamic structure whose three-dimensional folding dictates how genes are regulated. Traditional sequencing technologies capture base-level variation but ...
The cloudberry, a popular northern dessert berry, reveals a surprising genetic origin after a study deciphers its complex evolution.
Most lethal mutations in wild fruit flies are driven by newly transferred jumping genes, not small DNA errors, according to a ...
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