The Vertebrate Genome Laboratory (VGL) at Rockefeller University has received a significant boost from Google.org’s AI for Science Fund. The $3 million grant will fund a groundbreaking project that leverages AI to accelerate genome research, particularly focusing on biodiversity conservation and medical applications. The VGL, led by Erich Jarvis and co-directors Giulio Formenti and Jennifer Balacco, is set to utilize this funding to significantly advance their efforts in the Vertebrate Genomes Project (VGP) and contribute to the Earth BioGenome Project (EBP).
Google.org’s Support for Biodiversity Research
The funding will help the VGL create 150 new genomes across various species, accelerating efforts to sequence genomes that are crucial for understanding life on Earth. AI technologies will be central in automating genome curation, reducing the time needed to fix errors in genome assemblies from days to just minutes. This breakthrough will not only support biodiversity conservation but also contribute to advancements in medical research.
“We are deeply grateful for this recognition from Google.org, and this support will be crucial in advancing our work in genome research,” said Erich Jarvis. “By using AI to scale genome production, we can make a significant impact in conservation and health.”
How AI Will Transform Genome Research
AI will play a vital role in enhancing genome sequencing efficiency, especially in underrepresented species, allowing researchers to tackle complex genomic tasks with greater speed and accuracy. The project also involves collaboration with institutions such as Revive and Restore and the Wellcome Sanger Institute, ensuring global cooperation in genomic science.
“The potential to integrate AI with genomic research will help overcome existing bottlenecks, providing invaluable insights into evolution, medicine, and biodiversity,” added Giulio Formenti, a key project leader.
The project aims to provide free access to its AI tools and genome data, fostering global collaboration and enabling researchers to harness AI’s power for large-scale genome sequencing.
The Broader Impact of AI-Enhanced Genomics
By speeding up the process of genome assembly and making it more accessible, this initiative will contribute to more efficient biodiversity conservation, better disease prevention strategies, and a deeper understanding of the genetic foundations of various species. The long-term goal is to produce high-quality, chromosome-level reference genomes for tens of thousands of species, many of which have never been sequenced before.
This collaboration with Google.org underscores the increasing importance of AI in scientific research, demonstrating how technology can unlock new possibilities in biodiversity preservation and health.








