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First Self-Replicating, Synthetic Bacterial Cell Constructed by J. Craig Venter Institute Researchers
J. Craig Venter Institute Sells Buildings on Rockville Campus to BioMed Realty Trust for $53 Million
Institute to Remain on Campus via 10 Year Renewable Sale-Leaseback
The NIAID Sponsored Pathogen Functional Genomics Resource Center (PFGRC) at the J. Craig Venter Institute (JCVI) announces two day course, Introduction to Microarray Data Analysis
Multiple personal genomes await
JCVI Founder J. Craig Venter to be Honored by ARCS Foundation as Scientist of the Year
The J. Craig Venter Institute receives a $50,000 Donation from Life Technologies Foundation to Support Genomics Professional Development for Teachers in the Washington, DC Metro area
Program gives area teachers in-depth information about exciting advances in genomics
Hydra Genome Sequenced by J. Craig Venter Institute and Multi-National Research Team
Research marks a major step toward understanding the molecular "toolbox" of the animal kingdom's earliest common ancestors
Bacteria seen swimming the electron shuffle
Researchers have captured the bacterium Shewanella's behavior on film
Karen E. Nelson, Ph.D., Named Director of J. Craig Venter Institute Rockville, MD Campus
Nelson Joins Robert M. Friedman, Ph.D., Director of JCVI San Diego, CA Campus, as Senior Leaders Reporting to J. Craig Venter, Ph.D.
An agenda for personalized medicine
For seven diseases, 50% or less of the predictions of two companies agreed across five individuals; Companies should communicate high risks better and test for drug response markers; Community should study markers in all ethnicities and look at behaviour after tests
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Christchurch, New Zealand
Greetings from Christchurch, New Zealand, the anteroom to Antarctica. My colleagues and I have been here for several days now, running last minute errands, getting equipped with cold weather gear, and waiting for a flight south to McMurdo Station. The flight here was remarkable only in it's...
Why Antarctica, and why now?
So why are you going to Antarctica, and why are you going now? A very logical question... basically we are traveling to Antarctica to study microscopic marine plants known as phytoplankton. These organisms range in size from bacteria to diatoms to colonial algae, but all phytoplankton have two...
Trip preparations (inaugural posting!)
Well, we have less than a week left, and we are finalizing and shipping the chemicals and equipment we will need for sampling below the sea ice in the Ross Sea. We have already shipped out several hundred pounds of gear, and more await us in storage down at McMurdo Station in Antarctica....
Going west!
After saying good bye to our new friends in Rostock/Warnemünde I was looking forward to coming back to Swedish waters, this time a bit saltier, on the west coast. There are two marine field stations on the Swedish west coast belonging to The Sven Lovén Center for Marine Sciences. Our first...
In the bloom...almost
Cyanobacterial blooms during the summer are reoccurring phenomena in the Baltic Sea. This summer we have already encountered the two main species responsible the blooms, Aphanizomenon sp. and the toxin producing Nodularia spumigena (see previous posts), but so far not in the abundance that...
In the Deep
After the brief stop in my hometown we continue our journey southward in the Baltic proper. Our first sampling site was the Landsort deep, the very deepest part of the Baltic Sea (459 meters!) and a long-term monitoring and sampling site for various Swedish and international scientists...
The Midnight Sun and Fermented Fish
We returned from Abisko on Thursday July 9th around 10 p.m. The next morning was very busy for the crew as we had to put the science gear back together, prepare the boat, and do local newspaper and radio interviews. Read the interview: paper Like the transect north, our...
ROAD TRIP! Watch Out Arctic Circle...the Sorcerer II Sampling Team is Coming Your Way!
After we arrived in Luleå, Jeremy, Karolina and I started packing for our road sampling trip to Lake Torneträsk, a freshwater lake located in the Arctic Circle. Dr. Erling Norrby had contacted Dr. Christer Jonasson, the deputy director of the Abisko Scientific Research Station, to help...
Sunset at Norrbyskär
It was another beautiful morning in the Gulf of Bothnia as we left Härnösand. We stopped at another sampling site before meeting with a boat from Umeå Marine Research Station (UMF). We were greeted by UMF scientist Dr. Johan Wikner and a television crew. We docked at Norrbyskär, a...
Heading north with more daylight
After spending a couple of days visiting with my family in Stockholm, I boarded a ferry boat to Blidö and rejoined the Sorcerer II crew to head north to the Bothnian Sea. Before departing, we sampled in the bay outside Dr. Norrby’s summer house. The last days of fantastic summer weather had...
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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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