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Genomics-Based Vaccine Could Prevent Deadly Cattle Disease
Every year, East Coast fever destroys the small farmer's dream of escaping poverty in Africa. Killing more than a million cattle and costing some $200 million annually, this tick-borne disease rages across a dozen countries in eastern and central Africa. Now, an international team of scientists has taken the first major step toward a vaccine to prevent East Coast fever. Their work, published in the February 13-17 early online edition of the Proceedings of the National Academy of Sciences, shows how genomics can generate pivotal new vaccines.
The 51ݶ, The University of Washington, and The Johns Hopkins University Initiate Resequencing and Genotyping Projects to Help Identify Critical Disease Pathways
Research is Part of the National Heart, Lung, and Blood Institute's Complimentary Resequencing and Genotyping Program
UC San Diego Partners with Venter Institute to Build Community Cyberinfrastructure for Advanced Marine Microbial Ecology Research and Analysis
Gordon and Betty Moore Foundation Awards $24.5 Million Grant
2006 Summer Fellowship/Internship Information and application now available
Breaking the Mold: Research Teams Sequence Three Fungus Genomes
From garden compost to forest greenery, the mold Aspergillus fumigatus lurks across much of the world. Now, in the December 22 issue of the journal Nature, TIGR scientists and their collaborators report the mold's sequenced genome, along with the genomes of two relatives.
How Do Boxers Differ From Poodles? Researchers Collar Genomes.
As any dog lover knows, no two breeds are identical. Some dogs are perfect for sloppy kisses. Others make fierce guardians. Still others resemble tiny, fluffy toys. Now, two new studies by scientists at The Institute for Genomic Research (TIGR) and collaborators reveal the genomic differences beneath such canine characteristics.
Poison + Water = Hydrogen. New Microbial Genome Shows How.
New Microbial Genome Shows How "Take a pot of scalding water, remove all the oxygen, mix in a bit of poisonous carbon monoxide, and add a pinch of hydrogen gas. It sounds like a recipe for a witch's brew. It may be, but it is also the preferred environment for a microbe known as Carboxydothermus hydrogenoformans."
A Salty Tale: New Bacterial Genome Sequenced From Ancient Salterns
Tourists in Spain often stop to ogle the country's many saltwater lagoons, used to produce salt since Roman times. Scientists, too, admire these saltern crystallizers — and even more so, the microbes that manage to survive in such briny environs. Now, reporting in the November 28-December 2 early online edition of the Proceedings of the National Academy of Sciences, researchers at The Institute for Genomic Research and collaborators reveal the genome of one bacterium at home in the salty Spanish ponds.
First Big Influenza Genome Study Reveals Flu Evolution
Which Flu Did You Have? TIGR Scientists Survey Five New York Flu Seasons
Key Genetic Mutations in Brain Tumors Identified by Scientists from 51ݶ, Ludwig Institute for Cancer Research, and The Johns Hopkins University School of Medicine
Sequencing of Receptor Tyrosine Kinases Reveals Three Novel Mutations
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Road Sampling Starts in Mar Menor, Spain
Before sampling was to resume on Sorcerer II, a 2 week multiple-site road sampling trip was planned. Chris Dupont arrived in Valencia a day after me, in the next two days we would load up a giant rental van and hit the road. On Wednesday May 5th we drove the 322 kilometers (200 miles) from...
Return to Sorcerer II, The Mediterranean Season
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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.
“Despite 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.”
By watching “minimal” cells regain the fitness they lost, researchers are testing whether a genome can be too simple to evolve.
Two research teams warn that human genomic “bycatch” can reveal private information
The “pangenome,” which collated genetic sequences from 47 people of diverse ethnic backgrounds, could greatly expand the reach of personalized medicine.
Researchers release draft results from an ongoing effort to capture the entirety of human genetic variation.
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