Media Center

27-Mar-2012
Collaborator Release

Major networking opportunity: IMEx Consortium brings interactomes to light

Like people bustling around busy cities, the thousands of molecules inside our cells are constantly interacting with each other: turning each other on or off, working together, splitting up and networking. Understanding the countless ways in which they do so is a major challenge in biology, but it is fundamental to understanding life. Scientists at the European Molecular Biology Laboratory's European Bioinformatics Institute (EMBL-EBI) and colleagues in the International Molecular Exchange (IMEx) consortium are rising to the challenge by offering researchers a freely available set of experimental interaction data that can be queried from a single interface. Reporting in Nature Methods, IMEx partners describe the advantages of their service and invite others to join the effort.

09-Feb-2012
Collaborator Release

NSF Provides Additional $5.9 Million to Support Five New BREAD Program Projects

Scientists at the J. Craig Venter Institute (JCVI), the International Livestock Research Institute (ILRI), and the National Institute for Agronomical Research (INRA) will join forces to use new synthetic biology technologies to create strains of Mycoplasma mycoides subspecies mycoides that can be developed as live vaccine candidates for the prevention of contagious bovine pleuropneumonia, an economically very important livestock disease within Africa.

23-Nov-2011
Collaborator Release

Salmon genome in final phases of completion

16-Nov-2011
Press Release

JCVI Scientists along with International Team of Researchers Sequence the Genome of Model Legume, Medicago

Genome gives clues into legume evolution, and could provide means to better understand and better utilize closely related agricultural crops such as alfalfa

02-Nov-2011
Collaborator Release

Global flu watch: Report of rare flu coinfection in Southeast Asia hot spot

While dual infections in Cambodia did not produce new strain, study cites need for continuous tracking against risk of different influenza viruses combining to create a new pandemic

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Fighting Back Against Flu

The 1918 influenza pandemic, which affected 500 million people globally and caused 50-100 million deaths, was the most severe pandemic in recorded history. Over the course of the last 100 years, advances in science and medicine have provided the tools to address influenza much more...

Scientist Spotlight: Marcelo Freire

Marcelo Freire, an associate professor in the Genomic Medicine and Infectious Disease Department at the J. Craig Venter Institute (JCVI), is currently working on decoding immune-microbiome genes and interactions. Growing up in Brazil and a curious person by nature, he often found himself...

Tracking Enterovirus D68, Cause of a Polio-like Illness in Some Patients

The J. Craig Venter Institute (JCVI) has played a vital role in defining the diversity of contemporary strains of human enteroviruses by using state-of-the art sequencing technologies, bioinformatics analyses, and in vitro and in vivo modeling.

Every Day is World Food Day at JCVI

World Food Day is a global initiative of the Food and Agriculture Organization (FAO) of the United Nations to ensure that people have access to enough high-quality food to lead active and healthy lives. After a period of decline, world hunger is on the rise again. Today, over 820 million people...

Mold Is Everywhere and Impacts You

When most people think about mold or fungi, food spoilage, a damp basement, or mushrooms come to mind. What you may not realize is how pervasive this branch of life is. Fungi is everywhere, from the ground you walk on to the air you breathe, and accounts for an estimated 25% of all biomass...

Scientists Discover Genetic Basis for Toxic Algal Blooms

Scientists from the J. Craig Venter Institute (JCVI) and Scripps Institution of Oceanography at the University of California San Diego have discovered how certain types of algal blooms become toxic, producing a harmful substance known as domoic acid. Microscopic view of domoic acid...

Ocean Microplastics Explained

As we wrap up sampling in the waters off of Maine, Dr. Chris Dupont discusses how collections of plastic particles in the water – or “plastisphere” – may be harboring fish or human pathogens. There may also be microbes responsible for degrading plastic, which are being investigated....

JCVI Team Awarded Two Grants Under the NSF’s “Understanding the Rules of Life” Initiative

The first award, led by John Glass, PhD, for $1M, is focused on “Building and Modeling Synthetic Bacterial Cells.” The second award, led by Zaida Luthey-Schulten, PhD, at the University of Illinois, also for $1M, is titled “Balancing the Demands of a Minimal Cell,” and is focused on...

Dr. Venter at Sailors’ Scuttlebutt Lecture Series

Dr. Craig Venter was a guest speaker at the Whaling Museum in partnership with Nantucket Community Sailing as part of the Sailors’ Scuttlebutt Lecture Series. Dr. Venter's lecture was titled, "Oceans, Human Health and the Genomic Future" discussing the Global Ocean...

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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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