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Scientists Decipher Genetic Code of Malaria Parasite
In a landmark contribution to the battle against malaria, scientists at TIGR and two other sequencing centers have deciphered the complex genetic code of the Plasmodium falciparum parasite that causes the deadliest form of the disease. In a related paper, a TIGR team also published a comparison of the genome with that of the model rodent malaria parasite, P. yoelii yoelii. And TIGR scientists played a role in sequencing the genome of the malaria-transmitting mosquito, Anophles gambiae.
Fraser Wins Lawrence Award
Secretary of Energy Spencer Abraham announced today that TIGR's president and director, Claire M. Fraser, Ph.D., will receive the E.O. Lawrence Award for her "contributions to genome analysis technology, its extension to the understanding of microbial diversity, and its application to human pathogens."
Towards the $1,000 Genome: "Hot Topic" Added to TIGR Genome Conference
Meeting Kicks Off With Keynote Lecture By Barry Bloom, Dean of Harvard's School of Public Health, Followed by Panel Discussion On New Sequencing Technologies
Genome of Potential Bioterror Agent Sequenced; Highlights Similarities Between Animal, Plant Pathogens
Scientists at TIGR, in collaboration with colleagues at three other research institutes, have determined the complete genomic sequence of Brucella suis, a bacterial pathogen and potential bioterrorism agent that could be targeted against humans or livestock.
Study Identifies Genetic Variation In Tuberculosis Strains
A TIGR comparison of the whole genomes of two strains of the bacterium that causes tuberculosis has found a surprising number of differences, indicating that genetic variation may be more extensive among Mycobacterium tuberculosis isolates than previously thought, and may play an important role in the development of the disease and of human immunity to it.
TIGR Offers Genomics Course
TIGR's genomics course for educators, which is designed to give high school biology teachers a thorough understanding of genomics, will be offered on Saturdays this fall, starting on October 19th.
Sequence Provides Insights Into An Emerging Pathogen's Virulence Mechanism, Allowing for Vaccine Development
An analysis of the whole genome sequence of Streptococcus agalactiae serotype V provides valuable insights into the virulence mechanism of the pathogen, which is a leading cause of pneumonia and meningitis in newborns and the source of life-threatening illnesses in a growing number of adults with deficient immune systems.
TIGR, IBEA, and TCAG to Create New High-Throughput Genomic Sequencing Facility
Center will be test bed for latest DNA sequencing and computing technology
Human sequencing to be conducted to better understand genetic variation
Mapping the Mouse Genome
An international research consortium that includes TIGR has published a comprehensive physical map of the mouse genome that provides an important resource for biomedical researchers. The TIGR team, led by Shaying Zhao, sequenced the BAC ends of the mouse genome.
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Can CRISPR help stop African Swine Fever?
Gene editing could create a successful vaccine to protect against the viral disease that has killed close to 2 million pigs globally since 2021.
Getting Under the Skin
Amid an insulin crisis, one project aims to engineer microscopic insulin pumps out of a skin bacterium.
Planet Microbe
There are more organisms in the sea, a vital producer of oxygen on Earth, than planets and stars in the universe.
The Next Climate Change Calamity?: We’re Ruining the Microbiome, According to Human-Genome-Pioneer Craig Venter
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.
Lessons from the Minimal Cell
“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.”
Even Synthetic Life Forms With a Tiny Genome Can Evolve
By watching “minimal” cells regain the fitness they lost, researchers are testing whether a genome can be too simple to evolve.
Privacy concerns sparked by human DNA accidentally collected in studies of other species
Two research teams warn that human genomic “bycatch” can reveal private information
Scientists Unveil a More Diverse Human Genome
The “pangenome,” which collated genetic sequences from 47 people of diverse ethnic backgrounds, could greatly expand the reach of personalized medicine.
First human ‘pangenome’ aims to catalogue genetic diversity
Researchers release draft results from an ongoing effort to capture the entirety of human genetic variation.
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