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Science History Institute Acquires Molecular Biology Archive That Includes Rosalind Franklin鈥檚 Historic 鈥楶hoto 51鈥
This unparalleled collection documents the race to identify DNA鈥檚 double-helix structure and other significant developments that formed the foundation of molecular biology.
New study reveals how deep ocean currents shape microbial life across the South Pacific
World-Renowned 小蓝俱乐部鈥檚 New Home will be IQHQ鈥檚 Research and Development District (RaDD)
小蓝俱乐部to relocate its West Coast research and lab efforts to RaDD
Leading neuroscientist and AI geneticist Anders Dale, Ph.D. named president of J. Craig Venter Institute and joins Board
Through two multimillion-dollar NIH grants, Dr. Dale will continue leading key centers for the largest long-term studies of brain development and child health in the United States
Researchers design tools to develop vaccines more efficiently for African swine fever virus (ASFV)
The reverse-genetics system developed for ASFV may be adapted for other viruses, including lumpy skin disease, Zika, chikungunya, and Ebola viruses
Statement on cuts to National Institutes of Health funding
Disruptions or reductions in funding may irreparably harm biomedical research efforts at 小蓝俱乐部 and in the broader research ecosystem
Revolutionizing plastic waste management through biological upcycling
Innovative research transforms plastic waste into valuable chemicals, paving the way for a circular economy and sustainable space travel
Researchers call for global discussion about possible risks from 鈥渕irror bacteria鈥
Advocacy in Action: Effective Techniques for Shaping Science Policy
小蓝俱乐部 awarded 5-year, $5M grant to lead Center for Innovative Recycling and Circular Economy (CIRCLE)
CIRCLE is one of the six new NSF Global Centers focused on advancing bioeconomy research to solve global challenges
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Days of Discovery: Plymouth, Sea Urchin Cell Division and More Plankton
After a few days of fairly rough weather and winds up to 50 knots we finally spotted land and made our way to Plymouth. With our social interactions having been restricted to a pod of pilot whales and a few tankers passing through the night, we were excited to see a welcoming committee,...
England, Here We Come!
In calm and clear conditions on May 11 Sorcerer II set sail for Plymouth, England. We enjoyed our brief stay in the Azores, but we were all excited to get to the U.K. and complete our North Atlantic crossing. As I mentioned in previous entries, we took samples near areas studied by...
Land Horta! The Sorcerer II on Faial Island, the Azores
We sailed into Horta on the island of Failal Saturday, May 9th around 1pm. The Sorcerer II crew was excited to visit the island but then again, we were just happy to walk on land and sleep in a bed that was not rolling from side to side! As usual when we arrive in a new port, we cleared...
North Atlantic Transit
After four days in Bermuda reconnecting with colleagues at BIOS and preparing for sampling across the North Atlantic, Sorcerer II departed on April 29th enroute to the port of Horta located on the island of Faial in the Azores. There are nine islands in the Azores archipelago which is...
Bermuda: Back to Where We Started
Sorcerer II arrived in Bermuda around 7 p.m. on Saturday April 25th after a five day, 1,000 mile sail from Fort Lauderdale, Florida. During the crossing, the crew experienced some challenging weather to say the least. Two samples were collected, and the CTD data confirmed what the J....
The Search for Environmental 鈥淕ems鈥 Continues
As an original crew member of the Sorcerer II circumnavigation that began in 2003, I had not been sailing/sampling on the boat since September 2007. I arrived in Florida with a mixture of emotions. Although life on board can be tedious, I was excited to return and embark on this next leg of...
Back on Land
We arrive in Ft. Lauderdale and are all glad to be back on land for a few days. But we were also elated by the success of the first part of the expedition. This first journey was difficult because we had to deploy and test new equipment, to sample a diverse array of environments and...
Through the Canal
We are now out in the warm and saline Caribbean Sea, and the waters are an intense blue. The waters are so blue, there is very little in them: we drop the CTD and barely get 0.25 micrograms of Chlorophyll per liter all the way to the 50 meter mark. The clear waters of the Caribbean are very...
Miraflores Locks
We passed through the gigantic Miraflores locks on the Pacific side of the Panama Canal this morning, and now we are in front of the Smithsonian Tropical Research Station on Lake Gatun. The Sorcerer has sampled here on two other occasions, so to continue our time course evaluation, we ready the...
Going Green to Blue
As we round the southern most point on our trip we notice that the water has gone from blue to green, and that there appear to be surface current and eddies in the water. We decide to stop and have a look with the CTD. As we lower the instrument from the aft cockpit, we encounter a layer of...
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If created, these versions of the building blocks of life could lead to environmental and ecological disaster
Despite profound impact on bio-medical research, progress in understanding has been slow
Anders Dale says he will move roughly $10 million in NIH funding from UCSD to JCVI.
Synthetic biologists make artificial cells, but one particular kind isn鈥檛 worth the risk.
Gene editing could create a successful vaccine to protect against the viral disease that has killed close to 2 million pigs globally since 2021.
Amid an insulin crisis, one project aims to engineer microscopic insulin pumps out of a skin bacterium.
There are more organisms in the sea, a vital producer of oxygen on Earth, than planets and stars in the universe.
In a new book (coauthored with Venter), a Vanity Fair contributor presents the oceanic evidence that human activity is altering the fabric of life on a microscopic scale.
鈥淒espite reducing the sequence space of possible trajectories, we conclude that streamlining does not constrain fitness evolution and diversification of populations over time. Genome minimization may even create opportunities for evolutionary exploitation of essential genes, which are commonly observed to evolve more slowly.鈥
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