| ▲ | areoform 2 days ago | |||||||||||||||||||||||||
I have been diving into / reading up this area lately. A few quick notes. Worth specifying that these were hand selected candidates. Out of these human selected ones, 5% were successful.
"picked the most promising 302 AI designs" out of a n that isn't mentioned in this article.Based on my quick reading, it feels like the BBC left out a ton of context that makes this work feel more novel than it is. There's a ton of prior art here (including some from the same team) For example, older iterations of the same model family were used to generate novel genes and proteins. Including anti-CRISPR proteins that were tested against phages. That work is honestly more interesting. From, "Semantic design of functional de novo genes from a genomic language model," https://www.nature.com/articles/s41586-025-09749-7
Also the same project has been covered before.Prior pre-publication / release from 2025 called "AI-Designed Phages," the piece is really well written and I recommend reading it, https://www.asimov.press/p/ai-phages edit - as flobosg notes one of them describes the model, "Genome modelling and design across all domains of life with Evo 2," March 2026, https://www.nature.com/articles/s41586-026-10176-5 pre-print of the asimov press piece, "Generative design of novel bacteriophages with genome language models," September 2025, https://www.biorxiv.org/content/10.1101/2025.09.12.675911v1 All research comes from somewhere. There's an entire sub-field / world here that goes back decades at this point. Leon Chan refactored a bacteriophage by hand in 2005 https://link.springer.com/article/10.1038/msb4100025 The first synthetic organism was Venter's mycoplasma laboratorium / Synthia in 2010. The first organism to be synthetically assembled (not designed, but assembled ikea style) was a phage in 2003 also by Venter & co. In 2021 another team made entities that can "find and combine building blocks into self-copies," Kinematic self-replication in reconfigurable organisms https://pmc.ncbi.nlm.nih.gov/articles/PMC8670470/ From 2019 / 2020, algorithmically designed synthetic life / "xenobots", https://www.nytimes.com/2020/04/03/science/xenobots-robots-f... https://en.wikipedia.org/wiki/Xenobot Or, "Team builds first living robots—that can reproduce" https://wyss.harvard.edu/news/team-builds-first-living-robot... , 2021 Zurich in 2019, https://web.archive.org/web/20191008040536/https://www.eurek... And if you expand computing to include molecular processes for genes, then there's stuff like PACE that uses phages as a process, https://en.wikipedia.org/wiki/Phage-assisted_continuous_evol... (final edit - thanks flobosg!) | ||||||||||||||||||||||||||
| ▲ | flobosg 2 days ago | parent [-] | |||||||||||||||||||||||||
> Based on my quick reading, the BBC article doesn't bring up a prior publication / release from 2025 called "AI-Designed Phages," https://www.asimov.press/p/ai-phages That link is a commentary about the preprint of the article mentioned in the BBC article. After your editing: > Same team, prior publication / release from 2025 called "AI-Designed Phages," https://www.asimov.press/p/ai-phages It is the same work, just not published in Science. | ||||||||||||||||||||||||||
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