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Venter Institute Scientists Create First Synthetic Bacterial Genome
Publication Represents Largest Chemically Defined Structure Synthesized in the Lab
Team Completes Second Step in Three Step Process to Create Synthetic Organism
NIH Launches Human Microbiome Project
NIH Roadmap Effort to Use Genomic Technologies to Explore Role of Microbes in Human Health and Disease
J. Craig Venter, Ph.D. Delivers the 2007 Dimbleby Lecture on BBC Television
New Policy Report Outlines Options for Governance of Synthetic Genomics
First Individual Diploid Human Genome Published By Researchers at J. Craig Venter Institute
Sequence Reveals that Human to Human Variation is Substantially Greater than Earlier Estimates
Independent sequence and assembly of the six billion base pairs from the genome of one person ushers in the era of individualized genome-based medicine
The J. Craig Venter Institute to Aid Asiatic Centre for Genome Technology to Establish New Genomics Facility
The program will also provide for in-depth training of Malaysian scientists on new tools and techniques of genomics
JCVI Scientists Publish First Bacterial Genome Transplantation Changing One Species to Another
Research is important step in further advancing field of synthetic genomics
Scientists at J. Craig Venter Institute Publish Draft Genome Sequence from Aedes aegypti, Mosquito Responsible for Yellow Fever, Dengue Fever
Genome is Larger and More Complex Compared to Fruit Fly and Mosquito Species that Carries Malaria
J. Craig Venter Institute Announces Management Team and Organizational Structure
J. Craig Venter, Ph.D., Founder, remains as President and Chairman; Robert Strausberg, Ph.D., is named Institute Deputy Director
Antibiotic Resistance in Plague
Will the Plague Pathogen become Resistant to Antibiotics?
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McMurdo Sound
It took another day for the storm to blow itself out, but by Tuesday the wind and driving snow had abated, and we drove our Pisten Bully back out to our temporary shelter near Cape Evans. It took several hours of digging to clear the snow away from our vehicles, but once we started driving away...
Scientist Spotlight: Greg Wanger
Greg Wanger was 3.7 km below the Earth’s surface, trapped not only underground but also in a country distant from his native lands of Canada and Liechtenstein. He looked around him. It was very hot and smelled like rotten eggs. As many people do during their graduate careers, Greg pondered...
Digging out from the storm
The next day offered more snow and wind: we still needed handheld radios anytime we ventured between the warming hut and any of the vehicles. The wind was so strong that snow began drifting up through the dive hole in the warming hut, and the windows completely glazed over with snow. At one...
Out onto the ice
It took an enormous amount of effort, but on Thursday we ventured out onto the sea ice with our train of sleds and snow machines. The tucker is our strongest (and slowest) vehicle, and it is pulling both our yellow research sled and a pair of snowmobiles. The red Pisten-Bully is pulling a...
Around Mac-town
We are now fully packed and our mobile research sled is ready to go. We are waiting for some final repairs on the Pisten-Bully which will pull our supply sled. The mobile laboratory sled will be pulled by the Sno-Cat Tucker, which also has cab space for six (riding in the mobile lab would...
Ice diatoms!
Today has been a day of preparations, as tomorrow we hope to leave McMurdo Station and head out on the sea ice. Our mobile sled is almost ready for deployment: the carpenters who work for the US Antarctic Program are quite amazing, and our sled has filtration racks for separating different...
Sea-ice class
Today Abigail Noble and I took a Hagglund transporter out onto the Ross Sea to learn the basics of sea ice safety and ice dynamics. The sea ice on McMurdo Sound can be 2 meters thick, but this ice is constantly changing, and when you drive along its surface, you can't assume that it is...
Happy Camp
Our project on the Ross Sea will take us far from heated facilities of McMurdo Station, so all members of our team need to attend "Happy Camp", a two day course on snow camping and basic Antarctic survival. Happy Camp is held out on the McMurdo Ice Shelf, and it is an immersion program in...
McMurdo Station
Entering McMurdo is like entering a modern mining town: lots of exposed rock and unpaved streets, above ground utilities and bare-bones architecture. Utilitarian. From the airport we were taken to a briefing room, introduced to our science coordinators, and given our shcedules. Since I am...
Transport to the ice
Wednesday morning started with a 5AM taxi ride to the US Antarctic Program's processing center at the Christchurch airport, where we had to repack our bags and put on our emergency cold weather gear for the flight. Our plane was the C-17 Globemaster III, a large military transport plane more...
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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?
Scientists in La Jolla Make Progress Understanding New Coronavirus Strain
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.
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
PEOPLE IN YOUR NEIGHBORHOOD: Jazz piano in La Jolla scientist Clyde Hutchison’s DNA
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
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.
Public Health is the Next Big Thing at UC San Diego
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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