Four leading experts in health technology, including JCVI's Todd Michael, will highlight a Data Science in the Life Sciences Symposium on April 20 in the Burton D. Morgan Center for Entrepreneurship.
Inability of phytoplankton to acquire iron imperils marine ecosystems
Human Longevity, Inc. Scientists Publish Paper Diving Deeper into Non-Coding Genome Which Represents 98% of the Human Genome
17 Years Since the First Human Genome Sequence was Released, the Next Frontiers for Clinical Application and Understanding of the Genome are Uncovered
Immune history influences vaccine effectiveness, interacting with other potential problems arising from the manufacturing process
Study co-authors include J. Craig Venter Institute scientists Karen E. Nelson and Derrick E. Fouts
J. Craig Venter Institute-led Team Awarded 5-year, $10.7 M Grant from U.S. Department of Energy to Optimize Metabolic Networks in Diatoms, Enabling Next-Generation Biofuels and Bioproducts
Research builds on a series of recent landmark studies, at JCVI, which have led to transformative new methodology for synthetic biology and functional genomics
For the first time, investigators have looked at the role that genes and the oral microbiome play in the formation of cavities and have found that your mother was right: The condition of your teeth depends on your dietary and oral hygiene habits. The study appears September 13 in Cell Host & Microbe.
Craig Venter: 20 years of decoding the human genome
The human genome is 99% decoded, the American geneticist Craig Venter announced two decades ago. What has the deciphering brought us since then?
As the science advances, policy-makers and regulators need to develop responses that reflect the latest developments and the diversity of approaches and applications.
The biggest synthetic genome so far has been made, with a smaller set of amino-acid-encoding codons than usual — raising the prospect of encoding proteins that contain unnatural amino-acid residues.
By creating a new genome, scientists could create organisms tailored to produce desirable compounds
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