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TIGR to Help Decipher Genome of Model Legume
Sequencing of Medicago truncatula Will Benefit Nutrition, Agricultural Research
TIGR Posts Sequence Data for Parasite that Causes Trichomoniasis
Sexually-Transmitted Trichomonas vaginalis Amplifies HIV Transmission
TIGR, NIAID Sign $65 Million Microbial Sequencing Contract
Genomics Institute Will Sequence Dozens of Genomes per Year for 5 Years
UCSD-TCAG Collaboration to Focus on Transformation of Genome-Based Knowledge Into Health Benefits
Dog Genome Published by Researchers at TIGR, TCAG
New technique, partial shotgun-genome sequencing at 1.5X coverage (6.22 million reads) of genome, provides a useful, cost-effective way to increase number of large genomes analyzed
Analysis reveals that 650 million base pairs of DNA are shared between dog and humans including fragments of putative orthologs for 18,473 of 24,567 annotated human genes; Data provide necessary tools for identifying many human and dog disease genes
J. Craig Venter Science Foundation Announces $500,000 Technology Prize for Advances Leading to the $1,000 Human Genome
Genomics Conference Expands Focus To New Frontiers of Research
GSAC 15 Features Leading Scientists, Hot Topics in Genomics
Scientists Decipher Genome of Model Plant Pathogen
GSAC 15 Features Leading Scientists, Hot Topics in Genomics
Affymetrix, TIGR and NIAID Join Forces to Fight SARS Virus
A new GeneChip® array from Affymetrix, Inc., that aims to catalyze research into the SARS virus is being made available to the research community through an innovative collaboration involving partners in the government, not-for-profit and business sectors. The arrays will be distributed at no cost to qualifying researchers through the Pathogen Functional Genomics Resource Center (PFGRC), which TIGR operates under contract with the National Institute for Allergy and Infectious Diseases (NIAID).
MdBioLab Forms Coalition With Other Mobile Bioscience Labs
TIGR-Supported MdBioLab On Display at BIO Convention
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AGBT, Marco Island 2010
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Influenza H1N1pdm sequencing project overview
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High Impact Science in Antarctica
Big changes in store for the Mertz Polynya: in February 2010 iceberg 9B9 collided with the Mertz Glacier, breaking the 70 km floating glacier off at the base. The Mertz Polynya was extensivley sampled by scientists at the JCVI in the summer of 2007/08, and this metagenomic survey will form an important baseline for evaluating on-going changes in the area.
Rocky Hill MS Explodes with Science
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New ways to analyze metagenomics data
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DNA microarrays vs RNAseq — The winner and new heavyweight champion is?... It’s a draw.
In the past year or so there have been several articles stating that the death of microarray technology is growing near. These proclamations are due to the more recently introduced methodology referred to as RNAseq. At first glance I wrote these claims off as being silly and premature. Over...
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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
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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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