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TIGR Posts Sequence Data for Parasite that Causes Trichomoniasis
Sexually-Transmitted Trichomonas vaginalis Amplifies HIV Transmission
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
MdBioLab Forms Coalition With Other Mobile Bioscience Labs
TIGR-Supported MdBioLab On Display at BIO Convention
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).
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
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Artificial intelligence and machine learning will be the keys to unraveling how the human immune system prevents and controls disease
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By creating a new genome, scientists could create organisms tailored to produce desirable compounds
Critics, however, argue that this effort is flawed from the beginning
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