The power of artificial intelligence (AI) and advanced computing has made it possible to design genetic sequences encoding ...
Sidewinder achieves highly accurate assembly of long DNA sequences from scratch, offering a new leap forward for programmable biology ...
Scientists at the Broad Institute and Mass General Brigham have built a generative AI model that creates short DNA segments ...
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Illuminating the "dark genome": Google DeepMind's AI tool predicts impact of DNA variations
The brains at Google DeepMind in London have developed a new artificial intelligence (AI) tool that can accurately predict ...
While CRISPR is probably the most prominent gene-editing technology, there are others, some developed before and since. And people have been developing CRISPR variants to perform more specialized ...
NIH funding has allowed scientists to see the DNA blueprints of human life—completely. In 2022, the Telomere-to-Telomere Consortium, a group of NIH-funded scientists from research institutions around ...
In a way, sequencing DNA is very simple: There's a molecule, you look at it, and you write down what you find. You'd think it would be easy—and, for any one letter in the sequence, it is. The problem ...
Saliva is an easily accessible source of high molecular weight DNA for Oxford Nanopore long-read sequencing applications.
The non-coding genome, once dismissed as "junk DNA", is now recognized as a fundamental regulator of gene expression and a key player in understanding complex diseases. Following the landmark ...
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