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Twice as Many Predicted Genes in "Finished" Rice Chromosome
The smallest rice chromosome has nearly twice as many predicted genes as the draft DNA sequence had indicated, according to a new study by researchers at TIGR and collaborators. The "finished" sequence and analysis of rice Chromosome 10 confirms that the rice genome is closely similar to that of other grains particularly sorghum and maize. The study also offers a close look at the compacted short arm of the chromosome.
Genomic-Based Prospective Medicine Collaboration Announced by Duke University Medical Center and The Center for the Advancement of Genomics
Groups will work together to create the first genomic-based, prospective medicine practice utilizing correlations between comprehensive genomic and medical data relevant to prediction, early detection and prevention of disease
TIGR International Travel Fellowships
The Institute for Genomic Research is pleased to announce its new International Travel Fellowship. The Fellowship is designed to provide established researchers from developing countries with an interest in computational genomics the unique opportunity to interact with TIGR's faculty as well as participate in one of our scientific conferences. The objective of this program is to foster collaborative relationships between these organizations, TIGR, and other members of the genomic research community.
Anthrax: "A Soil Bug Gone Bad"
Scientists Decipher, Analyze Genome of Bacillus anthracis
Genomic Sequencing and Analysis Conference
Genomic medicine, systems biology and "New Frontiers in Sequencing Technology" are among the hot topics to be discussed at TIGR's 15th International Genome Sequencing and Analysis Conference (GSAC XV), which will gather a wide range of researchers from academia, the government and the private sector to Savannah, GA, on September 21-24, 2003.
Strausberg, Leading Genomic Scientist, to Become TIGR's V.P. for Research
Genomics innovator Robert L. Strausberg, who directs the National Cancer Institute's (NCI) Cancer Genomics Office, has been named as TIGR's Vice President for Research. Strausberg has played an important role in the development of innovative tools and technologies for genome research, both at the NCI - where he helped devise new ways to collect and apply genomic information that is important to cancer research - and previously at the National Institutes of Health's National Center for Human Genome Research, where he headed the Sequencing Technology Branch from 1994-96.
Energy Department Awards $9 Million for Energy Related Genomic Research
Institute for Biological Energy Alternatives to Explore and Develop Clean Energy and Environmental Alternatives
Study Sheds Light on Chlamydial Pathogens
Small Genome Variations Account For Wide Range of Diseases, Victims
"Q Fever" Pathogen's Genome Is Deciphered
Small Genome Variations Account For Wide Range of Diseases, Victims
TIGR Leads New Project to Sequence Tetrahymena Genome
Small Genome Variations Account For Wide Range of Diseases, Victims
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2019 Summer Internship Program
The 2019 Summer Internship Program which wrapped up in August was another rousing success at the J. Craig Venter Institute. Faculty and staff in both the Rockville (MD) and La Jolla (CA) campuses mentored and trained 25 students (high school, undergraduate, and graduate students)...
Diatoms Have Found a Way to Pirate Bacterial Iron Sources
In large regions of the world’s oceans, photosynthesis struggles to operate because a key ingredient is missing. Many of the proteins involved in harvesting energy from sunlight require iron atoms to function, but iron is hard to find in seawater. Most of the ocean is far removed from...
The JCVI Genomic Frontier Fund
As we complete our 26th year as a private genomic research institution, we are still just as excited as we were in the very beginning to be making new discoveries, potentially ones that will change our society for the better. The knowledge gained from our study of DNA, or as Dr. Venter...
New Sequencing Technologies Enable Better and Faster Understanding of the Human Microbiome
Humans have trillions of different species of microorganisms living inside and on the human body. These microbes colonize on the skin, gut, oral cavity, vagina, internal organs, and circulating fluids, and are called the human microbiome. The human microbiome plays profound roles in health...
Human Microbiome Research has Massive Potential for Health Applications
Thirteen years ago, a team led by J. Craig Venter Institute President, Karen Nelson, Ph.D., published the first major human microbiome study, radically changing the way we look at human health and the role the microbes that inhabit each of us play in disease. This seminal publication...
Scientist Spotlight: Lauren Oldfield
Since high school, Lauren Oldfield, PhD found that science was her calling. It started with a love of reading encouraged by her mom and grandmother, both avid readers, and weekly trips to the public library. Books by Michael Crichton and Richard Preston were staples in her grandmother’s...
When Starved, Dangerous Oral Bacteria Hang On
J. Craig Venter Institute (JCVI) postdoctoral fellow, Jonathon Baker, PhD and a team of researchers from JCVI, University of Washington, the University of California, Los Angeles, and The Forsyth Institute recently published their findings from the first study to examine the ecological dynamics...
No More Needles! Using Microbiome and Synthetic Biology Advances to Better Treat Type 1 Diabetes
Learn about exciting advances made by JCVI researchers Yo Suzuki and John Glass who are on a quest to better understand and treat Type 1 Diabetes (T1D). Currently T1D is managed by injecting insulin to manage blood glucose levels. Drs. Suzuki and Glass want to change that by creating a...
How to Bake a (Fungal) Turkey
From the kitchen of Stephanie Mounaud, Scientific Project Manager at JCVI Ingredients Media base (see media recipe) Agar Aspergillus terreus (multiple strains) Aspergillus niger Aspergillus fumigatus Aspergillus oryzae...
Scientist Spotlight: Todd Michael
A love of science began for Todd Michael, PhD when his 7th grade teacher had him write a report on tree leaves. After collecting different leaves and looking up their tree type, he realized that although all of the trees were similar, they grew different types of leaves. He was certain there...
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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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