Media Center

28-Aug-2006
Press Release

What's Shaped Like a Pear and Has Two Genomes? Check The Pond.

Researchers sequence the macronuclear genome of Tetrahymena thermophila, a model eukaryote

25-Aug-2006
Press Release

Surf's Up — And One Coastal Microbe Has Adapted

With new cyanobacteria genome, scientists find life really does differ at the coast

06-Jun-2006
Press Release

Proteomic analysis of cell envelope-associated proteins in a vancomcyin intermediate resistant Staphylococcus aureus (VISA) strain

Comparative proteomic analysis of Staphylococcus aureus strains of the VISA phenotype with differing resistance to vancomycin

05-Jun-2006
Press Release

Surprising Symbiosis: Glassy-Winged Sharpshooter Eats With Friends

Like a celebrity living on mineral water, the glassy-wingedsharpshooter consumes only the dilute sap of woody plants — including grapevinesin California,which is feverishly working to prevent the insect's flight into prizedvineyards. Now, in a surprising study published in the June 6 issue of PublicLibrary of Science Biology (PLoS Biology), researchers at The Institute forGenomic Research (TIGR), the University of Arizona, and their colleagueshave discovered that the sharpshooter's deprivation diet is sneakilysupplemented by not one, but two co-dependent bacteria living inside its cells.

02-Jun-2006
Press Release

Gut Reaction: Researchers Define The Colon's Genome

For the first time, scientists describe the busy microbial world inside

27-Apr-2006
Collaborator Release

Leading Department of Energy Genome Scientist to Direct Joint Marine Microbial Metagenomics Cyberinfrastructure Initiative

Dr. Paul Gilna Will Lead Moore Foundation-Funded Project Linking UC San Diego and Venter Institute

10-Apr-2006
Collaborator Release

Government of Victoria, Australia and Venter Institute to Survey and Sequence Microbes in Soil and Bovine Digestive System

Environmental genomics approach expected to reveal biological diversity in lesser known ecosystems

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2019 Summer Internship Program

The 2019 Summer Internship Program which wrapped up in August was another rousing success at the J. Craig Venter Institute.  Faculty and staff in both the Rockville (MD) and La Jolla (CA) campuses mentored and trained  25 students (high school, undergraduate, and graduate students)...

Diatoms Have Found a Way to Pirate Bacterial Iron Sources

In large regions of the world’s oceans, photosynthesis struggles to operate because a key ingredient is missing. Many of the proteins involved in harvesting energy from sunlight require iron atoms to function, but iron is hard to find in seawater. Most of the ocean is far removed from...

The JCVI Genomic Frontier Fund

As we complete our 26th year as a private genomic research institution, we are still just as excited as we were in the very beginning to be making new discoveries, potentially ones that will change our society for the better.  The knowledge gained from our study of DNA, or as Dr. Venter...

New Sequencing Technologies Enable Better and Faster Understanding of the Human Microbiome

Humans have trillions of different species of microorganisms living inside and on the human body. These microbes colonize on the skin, gut, oral cavity, vagina, internal organs, and circulating fluids, and are called the human microbiome. The human microbiome plays profound roles in health...

Human Microbiome Research has Massive Potential for Health Applications

Thirteen years ago, a team led by J. Craig Venter Institute President, Karen Nelson, Ph.D., published the first major human microbiome study, radically changing the way we look at human health and the role the microbes that inhabit each of us play in disease.  This seminal publication...

Scientist Spotlight: Lauren Oldfield

Since high school, Lauren Oldfield, PhD found that science was her calling. It started with a love of reading encouraged by her mom and grandmother, both avid readers, and weekly trips to the public library. Books by Michael Crichton and Richard Preston were staples in her grandmother’s...

When Starved, Dangerous Oral Bacteria Hang On

J. Craig Venter Institute (JCVI) postdoctoral fellow, Jonathon Baker, PhD and a team of researchers from JCVI, University of Washington, the University of California, Los Angeles, and The Forsyth Institute recently published their findings from the first study to examine the ecological dynamics...

No More Needles! Using Microbiome and Synthetic Biology Advances to Better Treat Type 1 Diabetes

Learn about exciting advances made by JCVI researchers Yo Suzuki and John Glass who are on a quest to better understand and treat Type 1 Diabetes (T1D). Currently T1D is managed by injecting insulin to manage blood glucose levels. Drs. Suzuki and Glass want to change that by creating a...

How to Bake a (Fungal) Turkey

From the kitchen of Stephanie Mounaud, Scientific Project Manager at JCVI Ingredients Media base (see media recipe) Agar Aspergillus terreus (multiple strains) Aspergillus niger Aspergillus fumigatus Aspergillus oryzae...

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10-Jan-2020
Issues in Science and Tech

Gene Drives: New and Improved

As the science advances, policy-makers and regulators need to develop responses that reflect the latest developments and the diversity of approaches and applications.

13-Nov-2019
The San Diego Union-Tribune

Pink shoes and a lab jacket: Finding your way as a female scientist

Women in science tell high school girls they, too, can change the world

01-Jun-2019
Asia Times

How AI can help us decode immunity

Artificial intelligence and machine learning will be the keys to unraveling how the human immune system prevents and controls disease

30-May-2019
Nature News and Views

Construction of an Escherichia coli genome with fewer codons sets records

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.

30-May-2019
UC San Diego News Center

Public Health is the Next Big Thing at UC San Diego

15-May-2019
MIT Technology Review

Researchers have swapped the genome of gut germ E. coli for an artificial one

By creating a new genome, scientists could create organisms tailored to produce desirable compounds

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