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Oral bacteria 'battle royale' helps explain how a pathogen causes hospital infections
Rainbow Around The Son Book Chronicles a Mother’s Love and the Mutant p53 Gene
New Bestseller Reveals How One Family Discovered They Carried the Gene with over 90% Chance of Developing Cancer
Researchers look beyond BMI to predict obesity-related disease risk
Domoic Acid Decoded: Scientists Discover Genetic Basis for How Harmful Algal Blooms Become Toxic
Research into gene function in microalgae helps determine how toxins are made in oceanic harmful algal blooms
NSF announces new awards for Understanding the Rules of Life
New projects address genetic, environmental causality in biological systems and processes
Scientists identify a new kind of human brain cell
‘Rosehip’ neurons not found in rodents, may be involved in fine-level control between regions of the human brain
Research Schooner Tara in San Diego Calls for Innovative Citizen Science and Oceanography 2.0
For in-depth evaluation of ocean health, biodiversity, and evolution
The highly complex sugarcane genome has finally been sequenced
S2 Genomics Awarded $280,000 Phase I STTR Grant from the National Institutes of Health
S2 Genomics will develop the Singulator™ system for automated preparation of single cells or nuclei from solid tissue samples
Aircraft Microbiome Much Like That of Homes and Offices, Study Finds
The extensive bioinformatics analysis for the study was carried out at the J. Craig Venter Institute.
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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.
Scientists Create the Smallest-Ever Moving Cell
Just two genes get tiny synthetic cells moving, offering clues to life’s evolution.
From Sequencing to Sailing: Three Decades of Adventure with Craig Venter
In a plenary public appearance at the Molecular and Precision Med TRI-CON event in San Diego, a relaxed Venter reflected on his career highlights, controversies and future priorities for genomic medicine.
Synthesizing life on the planet
What’s the smallest number of genes that cells need to grow and reproduce? Is it possible to synthesize minimal genomes and insert them into cells? What do minimal genomes teach us about life? An interview with John Glass, Ph.D.
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