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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.
Researchers identify bacteria and viruses ejected from the ocean
Certain types of bacteria and viruses are readily ejected into the atmosphere when waves break while others less likely to be transported into the air
JCVI President, Karen Nelson Inducted into the National Academy of Sciences
Variants in non-coding DNA contribute to inherited autism risk
These regulatory elements heighten risk -- and are inherited predominantly from the father
Leading health technology experts to headline Purdue’s Data Science in Life Sciences symposium
Four leading experts in health technology, including JCVI's Todd Michael, will highlight a Data Science in the Life Sciences Symposium on April 20 in the Burton D. Morgan Center for Entrepreneurship.
Key Biological Mechanism is Disrupted by Ocean Acidification
Inability of phytoplankton to acquire iron imperils marine ecosystems
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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...
Fighting Back Against Flu
The 1918 influenza pandemic, which affected 500 million people globally and caused 50-100 million deaths, was the most severe pandemic in recorded history. Over the course of the last 100 years, advances in science and medicine have provided the tools to address influenza much more...
Scientist Spotlight: Marcelo Freire
Marcelo Freire, an associate professor in the Genomic Medicine and Infectious Disease Department at the J. Craig Venter Institute (JCVI), is currently working on decoding immune-microbiome genes and interactions. Growing up in Brazil and a curious person by nature, he often found himself...
Tracking Enterovirus D68, Cause of a Polio-like Illness in Some Patients
The J. Craig Venter Institute (JCVI) has played a vital role in defining the diversity of contemporary strains of human enteroviruses by using state-of-the art sequencing technologies, bioinformatics analyses, and in vitro and in vivo modeling.
Every Day is World Food Day at JCVI
World Food Day is a global initiative of the Food and Agriculture Organization (FAO) of the United Nations to ensure that people have access to enough high-quality food to lead active and healthy lives. After a period of decline, world hunger is on the rise again. Today, over 820 million people...
Mold Is Everywhere and Impacts You
When most people think about mold or fungi, food spoilage, a damp basement, or mushrooms come to mind. What you may not realize is how pervasive this branch of life is. Fungi is everywhere, from the ground you walk on to the air you breathe, and accounts for an estimated 25% of all biomass...
Scientists Discover Genetic Basis for Toxic Algal Blooms
Scientists from the J. Craig Venter Institute (JCVI) and Scripps Institution of Oceanography at the University of California San Diego have discovered how certain types of algal blooms become toxic, producing a harmful substance known as domoic acid. Microscopic view of domoic acid...
Ocean Microplastics Explained
As we wrap up sampling in the waters off of Maine, Dr. Chris Dupont discusses how collections of plastic particles in the water – or “plastisphere” – may be harboring fish or human pathogens. There may also be microbes responsible for degrading plastic, which are being investigated....
JCVI Team Awarded Two Grants Under the NSF’s “Understanding the Rules of Life” Initiative
The first award, led by John Glass, PhD, for $1M, is focused on “Building and Modeling Synthetic Bacterial Cells.” The second award, led by Zaida Luthey-Schulten, PhD, at the University of Illinois, also for $1M, is titled “Balancing the Demands of a Minimal Cell,” and is focused on...
Dr. Venter at Sailors’ Scuttlebutt Lecture Series
Dr. Craig Venter was a guest speaker at the Whaling Museum in partnership with Nantucket Community Sailing as part of the Sailors’ Scuttlebutt Lecture Series. Dr. Venter's lecture was titled, "Oceans, Human Health and the Genomic Future" discussing the Global Ocean...
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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
PEOPLE IN YOUR NEIGHBORHOOD: Jazz piano in La Jolla scientist Clyde Hutchison’s DNA
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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